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Tender Value
₹75.3 L
EMD Value
₹75,300
Closing Date
25 Aug 2026, 10:00 pmDue tomorrow
Public Works Department
PRAVIN R HULJI
0831246103
8312467103
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
PWD/2026-27/BR/WORK_INDENT38165
PWD/2026-27/BR/WORK_INDENT38165
Reserved
Bridges/Culverts
Two Tender Document System(Two Cover)
PWD Division Office Belagavi
13 documents required · 13 mandatory
To qualify for award of this contract, each Tenderer in his name should have in the last five years i.e., 2021-22, 2022-23, 2023-24 2024-25 and 2025-26 Achieved in at least One financial year a minimum financial turnover (in all classes of civil engineering construction works only) of Rs. 75.30 Lakhs
To qualify for award of this contract, each Tenderer in his name should have in the last five years 2021-22, 2022-23, 2023-24 2024-25 and 2025-26 Satisfactorily completed, as prime contractor, at least one similar work such as Any Civil Work of value not less than Rs.18.82 lakhs
To qualify for award of this contract, each Tenderer in his name should have in the last five years i.e., To qualify for award of this contract, each Tenderer in his name should have in the last five years i.e., 2021-22, 2022-23, 2023-24 2024-25 and 2025-26executed the following minimum quantities of work 1) Earthwork excavation / Embankment / Sub-grade & Earthen Shoulder 320.00Cum, 2) Concrete works (including PCC/RCC) 219.00 Cum and 3) Steel Reinforcement/Structural Steel 13.61 Tonne.
Tenderers who meet the above specified minimum qualifying criteria will only be qualified, if their available tender capacity is more than the total tender value. The available tender capacity will be calculated as under Assessed available tender capacity equal to (AxNx5 - B) A equal to Maximum value of civil engineering works executed in any one year during the last five years (updated to 2026-27 price level) taking into account the completed as well as works in progress. 0.50 Year where B equal to Value at 2026-27 price level, of existing commitments and on-going works to be completed during the next 0.50 Year form the probable date of Award of this contract.
Qualification and experience of the key technical and Management personnel in permanent employment with the Tenderer and those that are proposed to be deployed on this work, if work is awarded.
Assessed Tender Capacity shall be more than the Tendered Amount
Each Tenderer should further demonstrate- liquid assets and/or availability of credit facilities of not less than Rs.22.59 lakhs Credit lines/letter of credit/ certificates from the banks for meeting the fund requirement etc. (Enclosed with this NIT under Forms of Bid qualification information as per Govt. Circular No. FD-CAM/16/2022(P-2), dated. 22.08.2022) (estimated cash flow for 3 months of peak construction period)
As per this note each tenderer should further demonstrate Availability of key equipment/ machinery for execution of the work. However as per Govt Circular no GOFDAE 263EXP122022 dt 11 052022 this clause for owning key equipment for works costing upto Rs 3.00 Crores is exempted.
Report on the financial standing of the Tenderer, such as profit and loss statements and auditors report for the last five years.
The EMD of Rs. 75,300/- shall be paid in full through e payment or in two parts i.e. part (1) Rs, 50,000.00 by e -payment Part (2) Rs.25,300/- EMD shall be in the form of Bank Guarantee and shall be scanned and uploaded along with the technical Bid. The original Bank Guarantee should be handed over to the Executive Engineer before the prescribed date and time of opening of the Bids.
Constitutional and Legal Status of the Tenderer
Principal Place of Business (Full address)
Name and Address Telephone Nos. Fax Nos. and email ID of the Tenderers Bankers
The proposed methodology and program of construction, backed with equipment planning and deployment duly supported with broad calculations and quality control procedures proposed to be adopted, justifying their capability of execution and completion of the work as per technical specifications within the stipulated period of completion
Unique Document Identification Number (UDIN) for Practicing Chartered Account is Preffered
Information on works which are yet to be completed.
Information of the works for which Tender acceptance letters are received.
Information of the works for which Tenderer has submitted Tender
Information on litigation in which the Tenderer is involved:
₹1,890
₹75,300
17 Aug 2026
17 Aug 2026
27 Aug 2026
24 Aug 2026
GOVERNMENT OF KARNATAKA
PUBLIC WORKS DEPARTMENT
OFFICE OF THE CHIEF ENGINEER
PWP (NORTH ZONE) DHARWAD
Name of Work:Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
EXECUTIVE ENGINEER
PWD BELAGAVI DIVISION, BELAGAVI DIST
ESTIMATE COST :Rs: 95.00 Lakhs
Division : Belagavi
Sanctioned Estimate No………………………Date
Fund Head : ಲೆಕ್ಕಶೀರ್ಷಿಕೆ 5054-80-190-0-01-132 ಕರ್ನಾಟಕ ರಸ್ತೆ ಅಭಿವೃದ್ಧಿ ನಿಗಮ ನಿಯಮಿತ - ಬಂಡವಾಳ ವೆಚ್ಚ
Service Head :…………………………………
Departmental Head : …………………………
Estimate framed in the office of the Executive Engineer PWD Belagavi Division Belagavi Division for the probable expenses that will be incurred in
Name of work: Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
Administratively approved under No………………………Date
Technically sanctioned under No………………………Date
Estimate prepared By : Suresh puthani JE
and checked By: Anil M
Assistant Executive Engineer,
PWD Sub Division, Bailhongal
Name of work: Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
PWD CODE PARA -133
C E R T I F I C A T E
This to Certity that I Shri. Anil M Asst. Executive-Engineer, PWD Sub-Division,Bailhongal have personally visited the spot and prepared the estimate using sanctioned schedule of rates provided for the most economical and safe way of executing work.
Assistant-Execuive-Engineer,
C E R T I F I C A T E
(As required vide Government Order No: LOI:421: IFA:2026(Part -1) (E-Office) Bangalore. Date: 27-05-2026)
Certified that, sufficient care has been taken while preparing the estimate in respect of the above mentioned work to see that all necessary items which are technically required for the work are in sufficient quantity are including while preparing the estimate, and specification of items including are completed and correct.
Assistant-Execuive-Engineer, Executive-Engineer,
PWD Sub-Dn,Bailhongal PWD Dn,Belagavi.
C E R T I F I C A T E
Certified that the work proposed in this estimate has not been taken up under any other head/ programme by any agency for the past five years. The said work has not been included / Proposed / over lapped in any proposed or approved programme. The work is not under any maintainence period.
Assistant-Execuive-Engineer, Executive-Engineer,
PWD Sub-Dn,Bailhongal PWD Dn,Belagavi.
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
ಬೆಳಗಾವಿ ಜಿಲ್ಲೆಯ ಬೈಲಹೊಂಗಲ ತಾಲೂಕಿನ ಬೈಲಹೊಂಗಲ ಮತಕ್ಷೇತ್ರದ ದೊಡವಾಡ ಸುತಗಟ್ಟಿ ಜಿಲ್ಲಾ ಮುಖ್ಯ ರಸ್ತೆಯ ಕೀ ಮೀ 0.8 ರಲ್ಲಿ ಸೇತುವೆ ನಿರ್ಮಾಣ, ಸದರಿ ಕಾಮಗಾರಿಯೂ ಸರ್ಕಾರದ ಆದೇಶ ಸಂಖ್ಯೆ : ಲೋ ಇ:421:IFA:2026 (ಭಾಗ-1) (ಇ-ಕಛೇರಿ) ಬೆಂಗಳೂರು, ದಿನಾಂಕ: 24-0.5-0.2026 , ಲೆಕ್ಕಶೀರ್ಷಿಕೆ 5054-80-190-0-01-132 ಕರ್ನಾಟಕ ರಸ್ತೆ ಅಭಿವೃದ್ಧಿ ನಿಗಮ ನಿಯಮಿತ - ಬಂಡವಾಳ ವೆಚ್ಚ ಅಡಿಯಲ್ಲಿನ ಕಾಮಗಾರಿಯಾಗಿದ್ದು ಸದರಿ ಜಿಲ್ಲಾ ರಸ್ತೆಯ ಚೈನೆಜ್ ನಲ್ಲಿಸೇತುವೆಯ U/S ಭಾಗದಲ್ಲಿ ನೀರು ಹರಿದು ಬಂದು ಪ್ರಸ್ತುತ ಇರುವ ಪೈಪ್ ಕಲ್ವೆರ್ಟ್ನಲ್ಲಿ ಮರದ ರೆಂಬೆಗಳು ತುಂಬಿ ವೆಂಟ್ಗಳು ಬ್ಲಾಕ್ ಆಗುತ್ತಿದು ಇದರಿಂದ ನೀರು ಪೈಪ್ ಕಲ್ವೆರ್ಟ್ನ ಮೇಲೇರಿ ಬಂದು ರಸ್ತೆಯನ್ನು ಹಾಳು ಮಾಡುತ್ತಿದ್ದು ಇದರಿಂದ ಸಾರ್ವಜನಿಕರಿಗೆ ಸಂಚಾರಕ್ಕೆ ಅಡೆ - ತಡೆ ಉಂಟಾಗುತ್ತಿದು ಇದನ್ನು ಸಮರ್ಪಕವಾಗಿ ನಿರ್ವಹಿಸಲು 10m ಉದ್ದದ 2 ವೆಂಟನ 4m*2.5m ಸೈಜ್ ಇರುವಂತೆ box culvert ಮತ್ತು ಪ್ರಸ್ತುತ ಇರುವ ಪ್ರದೇಶವು ಕಪ್ಪು ಮಣ್ಣಿನ ಪ್ರದೇಶವಾಗಿದ್ದು ಬಾಕ್ಸ್ ಕಲ್ವರ್ಟ್ ನ ನಾಲ್ಕು ಬದಿಗಳಿಗೆ 23m ಉದ್ದದ ರಿಟೈನಿಂಗ್ ವಾಲ್ ಅನ್ನು ನಿರ್ಮಿಸಲು ಬೇಕಾಗುವ ಅಂಶಗಳನ್ನು ಪರಿಗಣಿಸಿ ಅಂದಾಜು ಪತ್ರಿಕೆಗಳನ್ನು ತಯಾರಿಸಲಾಗಿದೆ
ಸದರಿ ಅಂದಾಜು ಪತ್ರಿಕೆಯನ್ನು 2023-24 ನೇ ಸಾಲಿನ ಹಾಗೂ 2025-26 ನೇ ಸಾಲಿಗೆ ಮುಂದುವರೆದ ಏಕರೂಪ ದರಪಟ್ಟಿಯನ್ನು ಆದರಿಸಿ ತಯಾರಿಸಿ, ಅಂದಾಜು ಪತ್ರಿಕೆಯಲ್ಲಿ ಈ ಕೆಳಗಿನ ಅಂಶಗಳನ್ನು ಅಳವಡಿಸಿ ತಾಂತ್ರಿಕ ಹಾಗೂ ಆಡಳಿತಾತ್ಮಕ ಮಂಜೂರಾತಿಗಾಗಿ ಸಲ್ಲಿಸಲಾಗಿದೆ.
Box culvert and Retaining wall
1 Dismantling of existing structures like culverts, bridges, retaining walls and other structure
2 Earth work excation by Mechanical Means: -In all kinds of soils Depth upto 3m
3 Providing and Filling in foundation with granite / trap broken metal 100mm and down size
4 Providing and Filling in foundation with granite / trap broken metal 100mm and down size
5 Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges,
6 Formwork (Box Culvert 20%))
7 Cement Concrete for all Basement & surface level works, return walls, retaining walls, sunken floors etc
8 Formwork (Retaining Wall-10%)
9 Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges,
10 Formwork (Slabs -20%)
11 Reinforced cement concrete for all Super structures of building , Road works, Water works, Irrigation works & super structure works of bridges
12 Formwork (Slabs -20%)
13 Supplying, Fitting and Placing TMT Fe550 bar Reinforcement in sub-structure / super-structure
14 PCC M15 Grade leveling course below approach slab
15 Reinforced cement concrete M30 grade for approach slab including reinforcement
16 Providing and laying Cement concrete wearing coat M-30 grade including reinforcement
17 Back filling behind abutment, wing wall and return wall complete including compaction
18 Providing and laying of Filter media with granular materials/ stone crushed aggregates satisfying the requirements laid down
19 Construction of RCC railing of M30 Grade in-situ with 20 mm nominal size aggregate,
20 Providing and laying boulders apron on river bed for protection against scour
21 Providing and laying of apron with cement concrete blocks of size 0.3x0.3x0.3 m cast in-situ
22 Drainage Spouts using 100 mm GI pipe
The estimate is submitted for kind approval.
ಸಹಾಯಕ ಕಾರ್ಯನಿರ್ವಾಹಕ ಅಭಿಯಂತರು, ಕಾರ್ಯನಿರ್ವಾಹಕ ಅಭಿಯಂತರು,
ಲೋಕೋಪಯೋಗಿ ಇಲಾಖೆ ಉಪವಿಭಾಗ ಲೋಕೋಪಯೋಗಿ ಇಲಾಖೆ ವಿಭಾಗ
ಬೈಲಹೊಂಗಲ ಬೆಳಗಾವಿ
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
1 Division : PWD Belagavi Kalaburgi
2 Sub-Division : PWD Belagavi
6 Service Head :
7 Departmental Head :
Estimate is framed in the office of the Executive Engineer, Division, Belagavi and the probable expenditure that will be incurred for,
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
Estimated Cost : ₹ 90.00 Lakhs
8 Estimate Administratively Approved under :- :
9 EstimatePrepared By
10 Estimate Checked by :
11 Sanction No.,& date :
Assistant Executive Engineer Executive Engineer
P.W.D. Sub Division, P.W.D. Division,
Belagavi Belagavi
Construction of Box Culvert and Approch Road on Kagwad -Ganeshwadi Road at KM.3.00 in Kagwad Taluka Belagavi District. `
Sl. No. Particulars Pages
2 General Report
3 Soil Investigation Report
6 Structural Designs
7 Benefit Cost Ratio
7 Recapitulations
8 Sub Estimate for Box Culvert
9 Sub Estimate for Approach Road
10 Sub Estimate for Service Road
9 Rate Analysis
P.W.D.CODE PARA - 133
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
This is to certify that,Shri.Shashikant Kolekar., Assistant Executive Engineer,have personally visited spot and prepared the estimate using sanctioned scheduled of rates provided for the most economical and safe way of executing work.
Assistant Executive Engineer, PWD Dept.Sub-Dn Belegavi
C E R T I F I C A T E.
(As required vide G.O.No.PWD SL.CMS.96 Dtd:27/6/1991)
Certified that, sufficient case has been taken while preparaing the estimate in respect of the above mentioned work to see that all necessary items which are technically required for the work in sufficient quantity are included while preparing the estimate,and specification of items included are completed and correct.
Assistant Executive Engineer, PWD Dept.Sub-Dn .Belagavi
C E R T I F I C A T E.
Certified that, the work proposed in this estimate has not been taken up under any other head/programme by any agency. The said work has not been included / proposed / over lapped in any other proposed or approved programme.
Assistant Executive Engineer, PWD Dept.Sub-Dn No. Belagavi
TEST RESULTS OF FOUNDATION SOIL
Name of Work :- #REF!
Name of Clients :- Executive Engineer
Name of Contractors :- 0
Client' Ref No :-
Sl.No Location Depth in Mts Type of soil Specific Gravity Dry Density in gm/cc Cohesion "C"in KN/sqm Angle of Internal Friction in degrees Recommended SBC of soil in T/Sqmts Free Swell Index Remarks
Relevent IS Codes :
■ Soil Properties : IS 2720 (Relevent Sections)
■ Safe Bearing Capacity: IS:6403-1982
Note: 1) Tests are conducted at FMC and the SBC is against shear failure only.
2) Factor of Safety adopted is 3.00
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
Certified that,
1 The required materials are avaible in the sources considered in the estimate.
2 Certified that I have inspected the site of work and is satisfied with the location of the proposed site of work.
3 This estimate amounting to Rs.95 Lakhs has ben scrutinised in this office in all aspects with reference to the D.S.R. of PWD Circle,Kalaburgi for 2018-19 95
Assistant Executive Engineer Executive Engineer
Soil Investigation Report
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
TECHNICAL REPORT
The Box culvert is proposed across nala at km. Muchandi , Belagavi Taluka, Belagavi District.
2) CONNECTIVITY:
Belagavi- Muchandi - Gokak
Since there is increase in traffic the widening of road is necessary , existing stone masonary need to be demolished and it is proposed to construct box culvert, across nala.
As per the preliminary survey it is found that there is existing Stone masonary culvert with road width of 9m. The road is to be wided to 12.5m as the traffic is increasing 9m width is not suffiecent and retainig wall is damaged during mansoon season due to overflooding of water.
5) DESIGN ASPECT:
A New Box Culvert is designed with a span of 3.5m x 3.5m- 2 vents considering the Highest Discharge of Cathment area Method and area velocity Method as per Indian Standard Codes & with Approach road.
6) PROVISION FOR IMPROVEMENTS:
Box culvert of 3.5 x 3.5m-2 vents as per catchment area are provided.
The rates adopted are as per provided SR for the year 2023-24 Belagavi CIRCLE Belegavi.
8) CONSTRUCION MATERIALS:
Locally available materials such as M25 Grade Concrete, Fe550D steel, Gravel, Trap stone, Jelly of good quality are consiidered
9) COST OF PROJECT:
The cost of the improvement of said work is 90.00 lakhs
10) MODE OF EXECUTION:
AS per the norms and procedure of PWD division by calling the Tender and entrusting the work of eligible contractor will be followed.
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
Location Near @ KM 0.80
River/ Nala Local streams
Existing Details
6 HYDRAULIC DATA:
7 Catchment Area (M) 4.00 Sq km.
Skew (a) 0 Degrees
Nala Bed Level (NBL) 544.379 m -2.975
Raft/Sill level of the Bridge/Barrage 544.079 m Details of Ryve's Constant
Ryves Co'efficient ( C) 8.500 Catchment Area Value of C in
In Sq Miles in Sq Km. FPS MKS
Safe Bearing Capacity of Soil (SBC) (as per Dept.) 10.03 t/m2 30 50 77.67 129.44 950 14.25
Unit Weight of Soil 1.80 t/m3 50 75 129.44 194.17 1050 15.75
Silt Factor (f) 1 100 & above 258.89 & above 1250 18.75
NALA PARTICULARS:
Bed slope of Nala 0.0200 Bed slope 0 544.204
Manning's Co-efficient (n) 0.05 0.055
DISCHARGE CALCULATIONS:
i) Discharge calculation by Ryves Method: AHFL = 545.779 m
The flood discahrge is calculated based on catchment area by Ryve's Method Bottom level of the Top Slab = 548.079 m
Vertical Height available = 1.90 m
Discahrge Q= C M 2/3 21.419 Cumecs Road Top Level 548.479 m
Say 21.500 Cumecs
ii) Discharge calculation by Dickens Method:
The flood discahrge is calculated based on catchment area by Ryve's Method
Discahrge Q= C M 3/4 24.042 Cumecs
Say 24.500 Cumecs
iii) Discharge Calculation by A-V Method At Section 1-1:
The flood discharge is calculated based on Area Velocity Method (A-V Method)
Details of Cross Section of Nala:
Sl.No Distance Nala Bed Level HFL Depth Avg. Depth Length Area Wetted Perimeter
Area (A) 10.23 m2
Wetted Perimeter (P) 10.86 m
Hydraulic Mean Depth ( R )= A/P 0.94 m Q
Velocity (v) based on Manning's formula 1/n x R 2/3 x S 1/2 21.500
Discaharge (Q) = AV 25.27 Cumecs HFL to be entered 21.500
Say 25.00 Cumecs 545.779
HYDRAULIC DATA FOR DESIGN:
As per IRC:SP:13-2004, the recommended rule to estimate the Design discharge is " the highest of these values is adopted.
By Ryve's Method 32.25 Cumecs
By A-V Method 25.00 Cumecs 37.5 48.375
Max Discharge 32.25 Cumecs 37.5
Recommended Design Discharge 32.25 Cumecs 32.25
Sill Level 544.079 m 0.00
HYDRAULIC DATA FOR DESIGN:
Design Discharge adopted 32.25 Cumecs 669.6
No. of Cells provided (Nc) 2 Nos.
Size of the Vent provided ( a x b ) 4.00 2.50 32.25 39.287
Earth Cushion ( Ec) 0.00 47.582
No. of cells considered in group 2 Nos.
No. of such groups provided 1 0
Depth of the Top Slab (d) 0.400 0.400
Depth of the Bottom Slab (e) 0.450 0.450
Depth of the Outer Vertical Slab (f) 0.400 0.400
Depth of the Inner Vertical Slab (g) 0.400 0.400
Depth of Flow 1.80 m
Therefore, designed water way (L) 8.00 m
Total length of the Bridge 9.20 m 8.1
Discharge / m width Q/L 3.13 m3/sec/m
Regime width as per Lacey's Formula (W) C x (Q) 1/2
Regime width (W) 27.26 m.
SCOUR DEPTH CALCULATIONS: Condition Normal Scour Depth
Regime width > Linear Water Way
The Linear water way (L) provided is less than Regime width of the stream (W)
(As per Cl. 703 of IRC:78-2000 given in IRC:SP:13-2004, Page No. 27) The Regime width of the stream (W) is equal to the designed waterway (L) 0.473 x ( Q/ f)1/3 Lacey's Formula
Normal Scour depth 'dsm' 1.34 x ( Qm 2/ f)1/3 The Regime width of the stream (W) is less than the designed waterway (L) 1.34 x ( Qm 2/ f)1/3
Where Qm = Discharge in m3/sec per mtr. width 3.13 Cumecs F
f = Lacey's Silt Factor 1.0 0.850
Normal Scour depth 'dsm' 2.86 m 0.233 Silt Factor (f)
Depth of protection curtain wall 1.33 x d sm 3.81 m Material f = 1.76 x dm
Depth of Curtain wall at base of Box culvert 2.11 m
Minimum Depth of Curtain wall at base of Box culvert 3.00 m
Adopted Depth of Curtain wall at base of Box culvert 3.00 m
The bottom slab top level of Box is kept 0.30 m below the Lowest Nala Bed Level Type of bed material dm
Coarse silt 0.04
The Bottom Slab Top Level NBL-0.30 m 544.079 m Silt/Fine sand 0.018 to .158
Medium sand 0.233 to 0.505
Coarse sand 0.725
APRON DETAILS: Fine bajri and sand 0.988
As per IRC:SP:13-2004 2.333 Heavy sand 1.29 to 2.00
Length of D/s Apron = 2 times of Normal Scour Depth = 5.73 m
Length of U/s Apron = 1.50 times of Normal Scour Depth = 4.30 m
REVISED DISCHARGE FOR MODIFIED WATER WAY
Sl.No Distance Nala Bed Bridge/Road HFL/ FRL Depth Avg. Depth Length Area Wetted
Level Level Perimeter
Area (A) 14.40 m
Wetted Perimeter (P) 15.20 m
Hydraulic Mean Depth ( R )= A/P 0.95 m pertaining to revised nala
Velocity (v) based on Manning's formula 1/n x R 2/3 x S 1/2
Discharge (Q) = AV 39.287 Cumecs
Designed Discharge is ok
Height of water is sufficient to discharge floods , Hence O.K.
Vent area provided is Safe Vertical Clearances for Bridge
AFFLUX CALCULATIONS: ( As per IRC:SP:13-2004, Page No. 37))
(As per Moles Worth formula) Discharge (m3/sec Min. vertical clearance in mm
Where V= Velocity 2.471 m/sec Above 0.30 and up to 3.0 450
A= Clear water way (refer Area-Perimeter Table-1) 10.23 m2 Above 3 and up to 30 600
a= Unabstructed water way (refer Area-Perimeter Table-2) 14.40 m2 Above 30 and up to 300 900
Afflux -0.177 m Above 300 and up to 3000 1200
Adopt afflux 0.01 m Above 3000 1500
Required Vertical clearance 0.700 m 97.795 3.5
Bottom level of the Top Slab = 546.579 m
Vertical Height available = 0.300 m 1.3
Road Top Level 547.054 m
DISCHARGE IN VENTWAY IN DUE CONSIDERATION OF AFFLUX:
Sl.No Distance Nala Bed Bridge /Bed Revised Depth Avg. Depth Length Area Wetted 3.455
Level Level HFL (m) (m) (m) (m2) Perimeter (m) 2.975
Wetted Perimeter (P) 15.24
Hydraulic Mean Depth ( R )= A/P 0.95
Velocity (v) based on Manning's formula 1/n x R 2/3 x S 1/2
Discharge (Q) AV
Vent area provided is Safe
Hence the design of bridge with the vent way proposed is acceptable.
PARAGRAPH 130 (A) OF THE KARNATAKA PUBLIC WORKS DEPARTMENTAL CODE
Division. PWD.Dept. Belagavi Division Belagavi
Sub - Division. PWD.Dept.Sub- Dn.Belagavi
Department Head.
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
Estimated Cost Rs :- Lakhs
Administratively sanctioned under No. Date.
Techanically sanctioned under No. Date.
Estimate prepared by
Estimate Checked by
(Call of Authority)
General Description
Separate sheet enclosed
Assistant Executive Engineer, PWD,Dept.Sub-Dn.,Ramadurga Executive Engineer, PWD.Dept. Belagavi Dn Belagavi
Structural Designs
Number of Cells 2
Number of cells considerd in group 1
Number of such group provided 2 0
Clear span= 4.00 m
Clear height= 2.50 m
Top Slab Thickness= 0.400 m
Bottom Slab thickness= 0.450 m
Side outer wall thickness= 0.400 m
Side inner wall thickness= 0.400 m
Height of fill (for live load dispersion)= 0 m
Height of fill (for SIDL, Earth pressure calculation)= 0 m
Top and Bottom haunch= 300 by 300
Width of carriage way= 10.00 m check cw
Total width= 9.20 m
Total Height= 3.35 m
C/C width= 4.40 m
C/C height= 2.93 m 2.1
Extra Offset width for Bottom Slab= 0.45 m
Grade of concrete = M25
Characteristic Strength, fck= 25 N/mm2
Modulus of Elasticity = 28500 N/mm2
Poissons ratio= 0.20
Co-efficient of Thermal Expansion= 1.20E-05 /oC
Weight Density= 25 kN/m3 200000
Grade of steel= Fe550 200000000
Characteristic strength, fy= 550 N/mm2
Modulus of Elasticity= 2.00E+08 kN/m2
SBC= 100.30 kN/m2
Angle of internal friciton= 30
Unit weight of soil fill material= 20 kN/m3
Height of soil above box culvert= 0.2 m
Thickness of wearing coat= 75 mm
Thickness of road crust(conservatively totaol fill ht considered) 0 m
Wearing coat thickness(future overlaying)= 0.1 m 2.625
Weight Density= 22 kN/m3
Modelling of structure
Box culvert is modelled as line model shown in figure below; It is analysed in the STAAD pro and 1m strip of the box culvert is considered for the modelling.Bottom Slab is divided into Equal parts and spring support is provided at the base and soil Sping stiffness is calculated as per "Foundation Analysis and design" by Joseph E. Bowles.
Property calculations
Width considered for the model (1m strip)= 1 m
Area of cross section= 0.45 m2
Moment of Inertia, Izz= 0.0076 m4
Moment of Inertia, Iyy= 0.0375 m4
Area of cross section= 0.4 m2
Moment of Inertia, Izz= 0.0053 m4
Moment of Inertia, Iyy= 0.03333 m4
Area of cross section= 0.4 m2
Moment of Inertia, Izz= 0.005333333333 m4
Moment of Inertia, Iyy= 0.03333333333 m4
Area of cross section= 0.045 m2
e. Concrete Crash Barrier/Railing
Area of cross section= 0.365 m2 Refer (DBR Cl 4.4.2)
Step 4: Idealisation of supports
Refer "Foundation Analysis and Design" by Joseph E. Bowles
Modulus of subgrade reaction, Ks= 40*SF*qa
SF= Factor of safety (as per IRC 78-2000, Cl 706.3.1.1)= 2.5
qa=Allowable Bearing Capacity (SBC)= 100.3 kN/m2
Modulus of subgrade reaction, Ks= 10030 kN/m3
Bottom Slab divided into= 10 parts
Length of one division of bottom slab= 0.44 m
Stiffness at Outer support(Type-1)= 2206.6 kN/m
Stiffness at interior support(Type-2)= 4413.2 kN/m
Load Calculation
The design loading for the bridge has been considered in accordance with IRC:6-2016 (Load and Stresses) so as to sustain the most critical comnination of various loads, forces and Stresses
A. Dead Load(DL)
Self weight of the Top slab= 10 kN/m
Self wt. of the bottom slab= 11.25 kN/m
Self weight of the side slab= 10 kN/m
Self weight of the side slab= kN/m
Self weight of hunches= 0.045 kN/m
Conservatively total fill height is considered as road crust including wearing coat.
Density of wearing coat considered for road crust= 22 kN/m3
Load due to WC = 1.65 kN/m
Weight of Crash Barrier/railing= 9.125 kN/m
C. Earth pressure (EP)
Since the side walls are effectively restrained against movement, At rest earth pressure is considered for design. Co-effecident of earth pressure at rest (ko) is calculated as per below formula (Jaky's equation)
0.175 m this is not there because ht of fill is zero and the /Wc is dircetly on the slab
2 kN/m2 1.333 kN/m2
31 kN/m2 20.67 kN/m2
Co-efficient of Earth pressure at rest, ko= (1-sinφ)= 0.500
Co-efficient of active earth pressure, ka= (1-sinφ)/(1+sinφ)= 0.333
a. Lateral Earth Pressure at Rest
Earth Pressure at top= 2 kN/m2
Earth Pressure at bottom= 31 kN/m2
b. Lateral Earth pressure Active earth pressure condition
Earth Pressure @ top= 1.333 kN/m2 0.33*20*0.125
Earth Pressure @ bottom= 20.67 kN/m2 0.333*20*1.9
D. Live Load Surcharge (LS)
Live load surcharge of 1.2m ht fill considered as per Cl 214.1 of IRC 6-2017.
Surcharge Live Load for EP leading = 1.2 m
Surcharge Live Load(1.2m earth filling) = 12 kN/m2 0.5*20*1.2
Surcharge Live Load for LL leading = 1.2
Surcharge Live Load(1.2m earth filling) = 8.0 kN/m2 0.33*20*1.2
Calculation of effective width of loading
Live Load dispersion has been considered for design as per ANNEX B-3 of IRC 112-2011.
The following Live Load are considered for design
CASE 1: IRC CLASS 70R -Track Load 70T
CASE 2: IRC CLASS 70R -WHEELED VEHICLE -BOGIE LOAD (40T)
CASE 2a: IRC CLASS 70R -WHEELED VEHICLE -BOGIE LOAD (40T) (At support)
CASE 3: IRC CLASS 70R- WHEEELED VEHICLE
CASE 4: IRC CLASS A Vechicle - Single Lane
CASE 5: IRC CLASS A Vechicle - Two Lane
The dispersion of loads through fills and wearing coat shall be assumed at 45 degree both along transverse and longitudinal direction.
Note: IRC CLASS A- Three lane and IRC CLASS A+ IRC 70R are not governing the design, hence not presented in design note.
Case 1: IRC CLASS 70R- Track Laod 70T
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 1 in the direction transverse of traffic direction= 0.99 m
Dispersed width of wheel 2 in the direction transverse of traffic direction = 0.99 m
Direction of Traffic
W=350kN W=350kN
Width of carriage way= 10 m
Calculation of effective width of loading(beff)
Effective width of the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
b1 = 0.99 m For k value
beff = 3.45 m Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.44
OVERLAPPING WILL OCCUR 2.48
If 0.5*beff > 0.5*(C+Kerb width) then there will be 0.1 0 0.3 1.16 1.16 1.3 2.72 2.56
Length of overhanging = 0 m Impact factor 0.5 1.72 1.68 1.5 2.84 2.6
So, the actual dispersed width (B) = 5.514 m 9 10 0.7 2.12 1.96 1.7 2.92
Dispersed length in the direction parallel of traffic direction (L)= 5.52 m 4 -15 0.8 2.24 2.08 1.8 2.96
Actual area of dispersion=L*B= 30.44 m2 0.00 43.75 0.9 2.36 2.16 1.9 3
As per IRC-6-2016, cl:208.6 if fill ht is more than 0.6m, impact factor percentage shall be taken half of the value what specified in cl 208.2 and 208.3 of IRC 06-2016
Impact factor = 25 %
Total Load = 350 kN
Load intensity = (Total load/Actaul area of dispersion)= 11.50 kN/m2
Load intensity after impact = 14.37 kN/m2
Case 2: IRC CLASS 70R - WHEELED VEHICLE - BOGIE LOAD(40T)
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 1 in the direction transverse of traffic direction= 1.01 m
Dispersed width of wheel 2 in the direction transverse of traffic direction = 1.01 m
Direction of Traffic
W=200kN W=200kN
Width of carriage way= 10 m
Calculation of effective width of loading(beff)
Effective width of the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
b1 = 1.01 m For k value
beff = 1.03 m Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.2 - 2.24 0.1 0.4 0.4 1.1 2.6 2.4
THERE IS NO OVERLAPPING -0.4488254545 2.44
Length of overlap = 0 m 2.48
If 0.5*beff > (C+Kerb width) then there will be Over hanging portion 2.3 - 2.24 0.2 0.8 0.8 1.2 2.64 2.52
Length of overhanging = 0 m 2.27 2.24 0.4 1.48 1.44 1.4 2.8 2.6
Impact factor 0.5 1.72 1.68 1.5 2.84 2.6
Actual Dispersed width,B = 2.06 m 5 25 0.6 1.96 1.84 1.6 2.88 2.6
Dispersed length of wheel 3,4 in the direction parallel of traffic direction,L 9 10 0.7 2.12 1.96 1.7 2.92
L=Length of wheel +2*(Wc+Top Slab thickness)= 1.213 m 4 -15 0.8 2.24 2.08 1.8 2.96
Dispersed length of wheel 1,2 in the direction parallel of traffic direction,L = 1.213 m 0.00 43.75 0.9 2.36 2.16 1.9 3
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 1 2.48 2.24 2 3
THERE IS NO OVERLAPPING -0.0035
Length of overlap = 0 m
Actual Dispersed length of wheel parallel to the traffic direction,L=
Actual area of dispersion=B*Lmax= 5.01 m2
As per IRC-6-2010, cl:208.6 if fill ht is more than 0.6m, impact factor percentage shall be taken half of the value what specified in cl 208.2 and 208.3 of IRC 06-2010
Impact factor = 25 %
Total Load = 400 kN
Load intensity = (Total load/Actaul area of dispersion)= 79.86 kN/m2
Load intensity after impact = 99.82 kN/m2
Case 2 a: IRC CLASS 70R - WHEELED VEHICLE - BOGIE LOAD(40T) (At support)
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 1 in the direction transverse of traffic direction= 1.01 m
Dispersed width of wheel 2 in the direction transverse of traffic direction = 1.01 m
Direction of Traffic
W=200kN W=200kN
Width of carriage way= 10 m
Calculation of effective width of loading(beff)
Effective width pf the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for (b/l0) = 2.27 m
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
Since the load W1 and W2 placed unsymmetry about the span, the distance of the load from the nearest support X1 and X2 is calculated separately for W1 and W2
Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.27 2.24 0.4 1.48 1.44 1.4 2.8 2.6
THERE IS NO OVERLAPPING Impact factor 0.5 1.72 1.68 1.5 2.84 2.6
If 0.5*beff > (C+Kerb width) then there will be Over hanging portion 9 10 0.7 2.12 1.96 1.7 2.92
THERE IS NO OVER-HANGING 4 -15 0.8 2.24 2.08 1.8 2.96
beff= min of beff1 & beff2
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap
THERE IS NO OVERLAPPING -0.302
Length of overlap = 0 m
If 0.5*beff > (C+Kerb width) then there will be Over hanging portion
THERE IS NO OVER-HANGING -0.4024287909
Length of overhanging = 0 m
Actual dispersed width (B) = 2.650 m
Dispersed width of wheel 1,3 in the direction parallel of traffic direction. i.e.Length of wheel +2*(Wc+Top Slab thickness)=
Dispersed width of wheel 2,4 in the direction parallel of traffic direction = 1.213 m
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap
THERE IS NO OVERLAPPING -0.003
Length of overlap = 0 m
Actual dispersed length,L = 2.426 m
Actual area of dispersion=B*L 6.43 m2
As per IRC-6-2010, cl:208.6 if fill ht is more than 0.6m, impact factor percentage shall be taken half of the value what specified in cl 208.2 and 208.3 of IRC 06-2010
Impact factor = 25 %
Total Load = 400 kN
Load intensity = (Total load/Actaul area of dispersion)= 62.21 kN/m2
Load intensity after impact = 77.77 kN/m2
Case 3: IRC CLASS 70R - WHEELED VEHICLE why this case? Already max is been considered!!
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 1 in the direction transverse of traffic direction= 1.01 m
Dispersed width of wheel 2 in the direction transverse of traffic direction = 1.01 m
Direction of Traffic
W=170kN W=170kN
Width of carriage way= 10 m
Calculation of effective width of loading(beff)
Effective width of the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
b1 = 1.01 m For k value
beff = 3.24 m Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.2 - 2.24 0.1 0.4 0.4 1.1 2.6 2.4
OVERLAPPING WILL OCCUR 0.6525609091 2.44
Length of overlap = 0.6525609091 m 2.48
If 0.5*beff > (C+Kerb width) then there will be Over hanging portion 2.3 - 2.24 0.2 0.8 0.8 1.2 2.64 2.52
THERE IS NO OVER-HANGING 0.55 0.1 0 0.3 1.16 1.16 1.3 2.72 2.56
Impact factor 0.5 1.72 1.68 1.5 2.84 2.6
Actual Dispersed width,B = 4.61 m 5 25 0.6 1.96 1.84 1.6 2.88 2.6
Dispersed length of wheel 3,4 in the direction parallel of traffic direction,L 9 10 0.7 2.12 1.96 1.7 2.92
L=Length of wheel +2*(Wc+Top Slab thickness)= 1.213 m 4 -15 0.8 2.24 2.08 1.8 2.96
Dispersed length of wheel 1,2 in the direction parallel of traffic direction,L = 1.213 m 0.00 43.75 0.9 2.36 2.16 1.9 3
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 1 2.48 2.24 2 3
OVERLAPPING WILL OCCUR -0.0785
Length of overlap = 0 m
Actual Dispersed length of wheel parallel to the traffic direction,L=
Actual area of dispersion=B*Lmax= 11.19 m2
As per IRC-6-2010, cl:208.6 if fill ht is more than 0.6m, impact factor percentage shall be taken half of the value what specified in cl 208.2 and 208.3 of IRC 06-2010
Impact factor = 25 %
Total Load = 350 kN
Load intensity = (Total load/Actaul area of dispersion)= 31.28 kN/m2
Load intensity after impact = 39.10 kN/m2
Case 4: IRC CLASS A VEHICLE-SINGLE LANE
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 1 in the direction transverse of traffic direction= 0.65 m
Dispersed width of wheel 2 in the direction transverse of traffic direction = 0.65 m
Direction of Traffic
W=114kN W=114kN
Width of carriage way= 10 m
Calculation of effective width of loading(beff)
Effective width of the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
b1 = 0.65 m For k value
beff = 2.93 m Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.2 - 2.24 0.1 0.4 0.4 1.1 2.6 2.4
OVERLAPPING WILL OCCUR 0.5653636364 2.44
Length of overlap = 0.5653636364 m 2.48
If 0.5*beff > (C+Kerb width) then there will be Over hanging portion 2.3 - 2.24 0.2 0.8 0.8 1.2 2.64 2.52
THERE IS OVER-HANGING 0.57 0.1 0 0.3 1.16 1.16 1.3 2.72 2.56
Impact factor 0.5 1.72 1.68 1.5 2.84 2.6
Actual Dispersed width,B = 4.17 m 5 25 0.6 1.96 1.84 1.6 2.88 2.6
Dispersed length of wheel 3,4 in the direction parallel of traffic direction,L 9 10 0.7 2.12 1.96 1.7 2.92
L=Length of wheel +2*(Wc+Top Slab thickness)= 1.2 m 4 -15 0.8 2.24 2.08 1.8 2.96
Dispersed length of wheel 1,2 in the direction parallel of traffic direction,L = 1.2 m 0.00 43.75 0.9 2.36 2.16 1.9 3
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 1 2.48 2.24 2 3
OVERLAPPING WILL OCCUR 1.110223025E-16
Length of overlap = 0.5 * (0.869-1.22) 1.110223025E-16 m
Actual Dispersed length of wheel parallel to the traffic direction,L=
Actual area of dispersion=B*L= 10.00 m2
As per IRC-6-2010, cl:208.6 if fill ht is more than 0.6m, impact factor percentage shall be taken half of the value what specified in cl 208.2 and 208.3 of IRC 06-2010
As per cl:208 of IRC 6, Impact factor for Class A load=
Impact factor for RCC bridge=(4.5/(6+L))
Impact factor = 53.017 %
Total Load = 350 kN
Load intensity = (Total load/Actual area of dispersion)= 35.01 kN/m2
Load intensity after impact = 50.16 kN/m2
Case 5: IRC CLASS A VEHICLE - TWO LANE
Assumption: Dispersion of loads through fill is taken as 1:1
Height of soil fill+wearing coat thicknes= 0.075 m
Dispersed width of wheel 3,7 in the direction transverse of traffic direction= 0.65 m
Dispersed width of wheel 4,8 in the direction transverse of traffic direction = 1.20 m
Direction of Traffic
W=228KN W=228KN
Calculation of effective width of loading(beff)
Effective width of the load is computed using the formula
As per IRC: 112-2011, Annexure B-3,beff = a * α * (1-a/l0) + b1
for continuous type, α = 2.24 CON
As per IRC: 112-2011, Annexure B-3 2.28
b1 = 0.65 m For k value
beff = 0.65 m Interpolation SS CON SS 2.36
If 0.5*beff > 0.5*C/C Distance between wheels there will be Overlap 2.2 - 2.24 0.1 0.4 0.4 1.1 2.6 2.4
THERE IS NO OVERLAPPING 2.44
Length of overlap = 0 m -0.575 2.48
NOTE: Since wheels 1,2,5,6 are in the interior portion there is no need to check for overhanging length 2.3 - 2.24 0.2 0.8 0.8 1.2 2.64 2.52
Dispersed width of wheels 1,2,5,6 in direction transverse to traffic direction= 2.27 2.24 0.4 1.48 1.44 1.4 2.8 2.6
Actual width of dispersion,b= 1.3 m 5 25 0.6 1.96 1.84 1.6 2.88 2.6
0.9 0.9 Actual area of dispersion=B*L= #VALUE! 0.9 2.36 2.16 1.9 3
Check for overlappig lane 1 and lane 2 vehicle
If 0.5*b > 0.5*C/C Distance between 2 vehicles there will be Overlap
THERE IS NO OVERLAPPING -1.425
Length of overlap = 0 m
If 0.5*b >x then there will be Over hanging portion
THERE IS NO OVER-HANGING -2.05
Length of overhanging = 0 m
Actual dispersed width for two lanes combined, (B)= 2.60 m
Dispersed width of wheels 3,4 in direction parallel to traffic direction,l=
Dispersed width of wheels 1,2 in direction parallel to traffic direction,l=
If 0.5*l > 0.5*C/C Distance between wheels there will be Overlap
THERE IS NO OVERLAPPING 1.110223025E-16
Length of overlap = 1.110223025E-16 m
Actual dispersed length for two lanes combined, (L)= 2.4 m
Actual area of dispersion,A=B*L= 6.24 m2
As per cl:208 of IRC 6, Impact factor for Class A load=
Impact factor for RCC bridge=(4.5/(6+L))
Impact factor = 53.017 %
Total Load = 700 kN
Load intensity = (Total load/Actual area of dispersion)= 112.18 kN/m2
Load intensity after impact = 160.72 kN/m2
1 Critical Live load case-with live load surcharge
IRC CLASS 70R-WHEELED VEHICLE-BOGIE LOAD(40T)
Live load intensity considered without impact factor= 79.86 kN/m2
Impact factor considered for Governing case= 25 %
2 Critical Live load case-with live load surcharge
IRC CLASS 70R-WHEELED VEHICLE-BOGIE LOAD(40T) (At Support)
Live load intensity considered without impact factor= 62.21 kN/m2
Impact factor considered for Governing case= 25 %
Braking force is considered as per Cl.211.2 of IRC 6-2010
Note:The effect of Braking force is full for zero earth cushion and it is considered zero for earth cushion of 3, hence for earth cushin 0.6m effect of braking force is interpoated.
Class 70R -Tracked vehicle(70T) = 10.2 kN
Class 70R -BOGIE LOAD(40T)= 38.75 kN
Class 70R -Wheeled vehicle = 15.18 kN
Class A load (1 lane)= 16.81 kN
Class A load (2 lane)= 53.85 kN
udl force on top slab due to Braking
Class 70R -Tracked vehicle(70T) = 1.85 kN/m
Class 70R -BOGIE LOAD(40T)= 18.77 kN/m
Class 70R -Wheeled vehicle = 3.3 kN/m
Class A load (1 lane)= 4.04 kN/m
Class A load (2 lane)= 41.43 kN/m
Temprature Loads
Temperature Rise Forces
Coefficient of thermal expansion of concrete = 0.000012 /°C
Area t αt Eαt Force (kN) x M (kNm)
3.3.5 Temperature Fall Forces
Area t αt Eαt Force (kN) x M (kNm)
Shrinkage effect
Shrinkage strain shall be calculated as per cl 6.4.3.6 of IRC 12-2011 and the same shall be converted to equivalent temprature fall.
Shrikage strain, εcs=εcd+εca
εcd-Drying shrinkage strain
εca-Autogeneous shrinkage strain
Autogeneous shrinakge strain at t day, εca(t) =ßas(t)*εca
εca for grade of concrete, M25= 0.000035
(Refer table 6.6 of IRC 112)
Time considered for autogeneous shrinkage,t= 100 years
Factor ßas(t) at t days, ßas(t) = 1-exp(-0.2*Sqrt(t))
Autogeneous shrinakge strain at t days = 3.499999993E-05
Final vaue of drying shrinkage strain
Kh Coefficient depending on notional size h0
εcd Unrestrained drying shrinakge strain
Notional size, ho=2*Ac/u
Cross sectional area of culvert , Ac= 9.820 m2
Perimeter of structure which is exposed to drying , u= 13 m
Notional size, ho= 1.510769231 m
therefore, Co-efficient Kh= 0.7
(Table 6.7 of IRC 112 -2011)
For reative humidity - 80% (refer DBR Cl 4.1 , Rev A) 80 %
Unrestrained drying shrinkage strain, εcd= 0.000288
(Table 6.8 of IRC 112 -2011)
Final drying shrinkage strain, εcd(t)=ßds(t)*εcd *Kh
ßds(t,ts)= (t-ts)
(t-ts)+0.04*sqrt(h0)3
Age of concrete at the beginning of drying shrinakge,ts= 28 days
ßds (t,ts)= 0.998969
Final drying shrinkage strain= εcd(t)= 0.0002013922374
Total shrinakge strain = 0.0002363922373
Thermal coefficient of concrete = 1.20E-05 /oC
Equivalent temprature fall for shirnkage strain= 19.39 oC
Note:since soil fill is available,temprature effect and shrinakge effect is not considered in design
Check for base pressure
Total base area= 5.7 m2 12.5
Pressure on bottom slab due to DL = 162.125 kN/m
Pressure on bottom slab due to SIDL = 10.78 kN/m 162.125
Pressure on base due to LL (IRC Class 70R-Wheeled Vehicle-B)= 62.21 kN/m 7.5
Total Pressure on base slab = 92.55 kN/m2/m 73.37
Allowable bearing capacity = 100.3 kN/m2 235.1173552
Load Combination
Load Combination for limit state shall be as per annex B of IRC 6-2016. The following Limit statea are considered below.
1) Ultimate limit state - ULS
2) Serviceability limit state - SLS
A) Ultimate Limit State Combination :- (ULS) (Verification of Structural Strength)
1 Basic Combination
Comb-1 = DL +WC +SIDL+EP+LLS One Side + Temp Rise
Comb-2 = DL +WC +SIDL+EP+LLS One Side+ Temp Fall
Comb-3 = DL +WC +SIDL+EP+LLS Both Side + Temp Rise
Comb-4 = DL +WC +SIDL+EP+LLS Both Side + Temp Fall
Comb-5 = DL +WC+SIDL +EP+LLS One Side+ WP + Temp Rise
Comb-6 = DL +WC+SIDL +EP+LLS One Side +WP + Temp Fall
Comb-7 = DL +WC +SIDL+EP+LLS Both Side +WP + Temp Rise
Comb-8 = DL +WC+SIDL +EP+LLS Both Side +WP + Temp Fall
As per IRC6:2017, the load factors for varies load combinarion are as under
Ultimate limit state load combination shall be calculated as per table 3.2 of IRC 6-2017.
SL. No Combination DL SIDL WC LL WITH IF BF
1 G1(live load leading) 1.35 1.35 1.75 1.5 1.15
4 G3(LS on one side & LL leading) 1.35 1.35 1.75 1.5 1.5
5 G4(LS on one side & EP leading) 1.35 1.35 1.75 1.5 1.15
SL. No Combination EP LS Temp Rise Temp fall
1 G1(live load leading) 1.5 1.2 1 1
2 G2(EP leading) 1.5 1.2
3 G2a(EP leading) 1.5 1.2
4 G3(LS on one side & LL leading) 1.5 1.2
5 G4(LS on one side & EP leading) 1.5 1.2
ULS Load Combinations
SL. No Combination DL (KN/M) SIDL(KN/M) WC (KN/M) LL WITH IF (KN/M) BF (KN/M)
1 G1(live load leading) 55.94 12.32 2.89 116.65 47.65
SL. No Combination EP (KN/M) at rest top EP (KN/M) at rest bottom Active EP (KN/M) @ top Active EP (KN/M) @ bottom LS (kn/m)
1 G1(live load leading) 3 46.5 2 31 14.4
SL. No Combination Temp Rise Temp Fall
1 G1(live load leading) 17.09 2.59
Maximum intensity on each members with factors
Top slab (udl on top slab) 210.353 Kn/m
side outer walls at top 17.4 Kn/m 116.65
side outer walls at Bottom 60.9 Kn/m 302.0325
Bottom slab 187.80 Kn/m 314.5325
Maximum intensity on each members without factors
Top slab (udl on top slab) 115.83 Kn/m
side walls at top 14 Kn/m 151.36
side walls at Bottom 43 Kn/m 324.065
Bottom slab 129.99 Kn/m 336.565
MOMENT CALCULATIONS
DL of the top slab = 6250 N/m2 l = 2.37 m
Total load intensity on the culvert LL = 58500 N/m2 0
Total Design load on top slab 3 = 64750 N/m2
Number of such group provided 0 0
Weight of each wall = 6250 N/m2
DL of the Bottom Slab slab = 6250 N/m3
Upward soil reaction @ base (Base Pressure) = 83500 N/m2
Lateral pressure
Lateral pressure owing to DL & LL = 19500 N/m2
Lateral pressure owing to Soil = Ka*w*h
Lateral Intensity at top = 19500 N/m2 10500
Lateral Intensity at bottom = 30000 N/m2
MOMENT CALCULATIONS
Relative stiffness of member are
KAD = 1 KAE = KDF = 0.5
Distribution factors are
DAD = DDA = 0.67
DAB = DDC = 0.33
Fixed end moments are
FMAB = - wl2/12 = -339.37 Kn-m
FMDC = wl2/12 = 302.99 Kn-m
FMAD = (Pl2/12)+(wl/15) = 12.41 Kn-m
Moment distribution table
Joint member D A
Carry over 108.99 -88.18
Carry over 29.39 -36.33
Carry over 12.11 -9.80
Carry over 3.27 -4.04
Kn/m 17.4 Kn/m Kn/m 17.4 Kn/m
Kn/m Kn/m 61.8778125
For horizontal slab AB, carrying udl @ 210.35 Kn/m
The vertical reactions @ A & B are 462.78 kn
For bottom slab DC carrying udl @ 187.80 Kn/m
The vertical reactions @ D & C are 413.16 kn
For vertical member AD the horizontal reaction hA @ A is found by taking moments about D
For vertical member E1F1 the horizontal reaction hE1 @ E is found by taking moments about F1
Therefore, the horizontal reaction @ the other end D is
From B.M @ mid point E = 509.05 Kn-m
Net B.M @ E = 324.78 Kn-m 1
For the critical condition Net B.M @ E = 509.05 Kn-m
For the design Net B.M @ E = 324.78 Kn-m
From B.M @ F= 454.48 Kn-m
Net bending moment @ F = 290.91 Kn-m 1
For vertical member AD, S.S B.M @ mid span is = 42.11 Kn-m
Net B.M = 173.92 Kn-m
Top slab Design
B.M @ centre B.M @ ends Shear Force
Bottom slab Design
B.M @ centre B.M @ ends Shear Force
Outer Side walls
B.M @ centre B.M @ ends Shear Force
Inner Side walls
B.M @ centre B.M @ ends Shear Force
MOMENT CALCULATIONS
DL of the top slab = 6250 N/m2 l = 2.37 m
Total load intensity on the culvert LL = 58500 N/m2 0
Total Design load on top slab 3 = 64750 N/m2
Number of such group provided 0 0
Weight of each wall = 6250 N/m2
DL of the Bottom Slab slab = 6250 N/m3
Upward soil reaction @ base (Base Pressure) = 83500 N/m2
Lateral pressure
Lateral pressure owing to DL & LL = 19500 N/m2
Lateral pressure owing to Soil = Ka*w*h
Lateral Intensity at top = 19500 N/m2 10500
Lateral Intensity at bottom = 30000 N/m2
UNFACTORED MOMENT CALCULATIONS
Relative stiffness of member are
KAD = 1 KAE = KDF = 0.5
Distribution factors are
DAD = DDA = 0.67
DAB = DDC = 0.33
Fixed end moments are
FMAB = - wl2/12 = -186.88 Kn-m
FMDC = wl2/12 = 209.72 Kn-m
FMAD = (Pl2/12)+(wl/15) = 9.99 Kn-m
Moment distribution table
Joint member D A
Carry over 58.96 -60.45
Carry over 20.15 -19.65
Carry over 6.55 -6.72
Carry over 2.24 -2.18
Kn/m 14 Kn/m Kn/m 14 Kn/m
Kn/m Kn/m 61.8778125
For horizontal slab AB, carrying udl @ 115.83 Kn/m
The vertical reactions @ A & B are 254.83 kn
For bottom slab DC carrying udl @ 129.99 Kn/m
The vertical reactions @ D & C are 285.98 kn
For vertical member AD the horizontal reaction hA @ A is found by taking moments about D
For vertical member E1F1 the horizontal reaction hE1 @ E is found by taking moments about F1
Therefore, the horizontal reaction @ the other end D is
From B.M @ mid point E = 280.31 Kn-m
Net B.M @ E = 132.93 Kn-m 1.5
For the critical condition Net B.M @ E = 280.31 Kn-m
For the design Net B.M @ E = 132.93 Kn-m
From B.M @ F= 314.58 Kn-m
Net bending moment @ F = 194.60 Kn-m 1
For vertical member AD, S.S B.M @ mid span is = 42.11 Kn-m
Net B.M = 67.00 Kn-m
Top slab Design
B.M @ centre B.M @ ends Shear Force
Bottom slab Design
B.M @ centre B.M @ ends Shear Force
B.M @ centre B.M @ ends Shear Force
Inner Side walls
B.M @ centre B.M @ ends Shear Force
REINFORCEMENT FOR TOP SLAB
DESIGN PARAMETERS
Grade of concrete fck= M25
Grade of steel fyk= Fe 550
Tensile strength of concrete fctm= 2.2 MPa 112 250
Partial safty factor for concrete for basic & seismic comb. ym= 1.5 415
Partial safty factor for reinforcement ys= 1.15 500
Design compressive strength of concrete fcd= α*fck/ym 550
Factor CI 6.4.2.8 of IRC 112-2011 α= 0.67 600
Design compressive strength of steel fcd= 11.17 MPa
Design compressive strength of concrete fyd= 478.27 MPa
Secant modulus elasticity of concrete Ecm= 30 GPa
Elastic modulus of steel Es= 200 GPa
Ultimate compressive strain in concrete Table 6.5 of IRC 112-2011 εcu3= 0.0035
Ultimate tensile strain in steel εst= 0.00217
Factor CI A2.9 of IRC 112-2011 λ= 0.8
Factor CI A2.9 of IRC 112-2011 η= 1
limiting neutral axia to depth ratio = Xu, max = εcu3
Limiting Moment Of Resistence Ru= 3.33 N/mm2
DESIGN OF TOP SLAB
Clear cover to main reinforcement = 40 mm
Overall depth provided at mid span = 400 mm
Overall depth provided at support = 400 mm
Effective depth provided at mid span = 360 mm
Effective depth provided at support = 360 mm
Grade of concrete= M 25
Grade of steel= 550 N/mm2
Limiting Moment Of Resistence Ru= = 3.33 N/mm2
Max support bending moment = 184.270 kN-m
Effective depth required = 235.24 mm 363.2953312 3.325
Effective depth available = 360 mm
Max midspan bending moment = 324.78 kN-m
Effective depth required = 312.30 mm 482.3128944
Effective depth available = 360 mm
Design of reinforcement
Support section (horizontal reinforcement @slab both perdendicular to wall)
Bending moment at support section = 184.270 kN-m
Area of steel required = 918.96 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 374.40 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel #REF! #REF! mm
EXTR ST 2 8 Provided spacing= #REF! mm
Dia of Bar 0 mm 16 mm 16 10 #REF! #REF! mm
Spacing of Bar 200 mm 150 mm 200 200
Area of Steel Provided 0.00 mm2 1341.01 mm2
Total Area of Steel Provided= 1341.01 mm2
Provide 0 mm bars at 200 mm c/c For Top extra at support
Provide 16 mm bars at 150 mm c/c for Top full length
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 268.21 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 200 mm
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.90 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Midspan section (Horizontal reinforcement @slab both perdendicular to wall)
Bending moment at Center section = = 324.783 kN-m
Area of steel required = = 1832.08 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 374.40 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel Provided spacing= #REF! mm
ST CURT 6 7 #REF! #REF! mm
Dia of Bar 20 mm 0 mm 16 0
Spacing of Bar 150 mm 200 mm 200 0
Area of Steel Provided 2095.33 mm2 0.00 mm2
Total Area of Steel Provided= 2095.33 mm2
Provide 20 mm bars at 150 mm c/c For Bottom full length
Provide 0 mm bars at 200 mm c/c for Bottom extra at mid span
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 419.07 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 200 mm
Spacing of reinforcement provided = 175 mm
Area of steel reinforcement provided = 449.03 mm2
Provide 10 mm bars at 175 mm c/c at perpendicular to main reinforcement
Check For Shear:
Max. ultimate Shear force = 75.05 KN
C/s area Ac = 360000.00 mm2
Concrete comp fcd= 11.17 Mpa
So VRD,C= 217.99 Kn
Shear Reinforcement Not Required
Check For Deflection:
Load intensity on top slab= w= 210.35 Kn/m
Effective span= l= 4400.00 mm
Effective depth of slab= d= 360.00 mm
Moment of Inertia= I= 30000000000 mm4 30000000000
Elastic modulus of steel E= 200.00 GPa
Actual Deflection= 5wl4/384EI = 0.1711 mm
Alloweble Deflection= span/1000 = 4.4 mm
Satisfies deflection Criterion
Check for Stress Limitation
Stress limitation shall be checked for Rare combination as per CI 12.2 of IRC 112-2011
Allowable compressive stress in concrete under Rare combination= = 0.48fck
Allowable compressive stress in concrete under quai permanent loads = = 0.36fck
Allowable tensile stress in reinforcement= = 0.8fyk
Check for Stress at maximum sagging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6298
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 360.00 mm
Unfactored Sagging Moment = 132.93 Kn-m
The depth of concrete in compression is= = 128.77 mm
The cracked second moment of area in steel units is= = 242801552.6 mm4
The concrete stress at the top of the section is = 8.58 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 126.6 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.951
Elastic modulus of steel = 200 GPa
Effective depth available = 360.00 mm
Unfactored Sagging Moment = 132.93 Kn-m
The depth of concrete in compression is= = 154.45 mm
The cracked second moment of area in steel units is= = 242291731.4 mm4
The concrete stress at the top of the section is = 9.31 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 112.78 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Stress at maximum hogging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6469
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 360.00 mm
Unfactored Hogging Moment = 98.25 Kn-m
The depth of concrete in compression is= = 103.52 mm
The cracked second moment of area in steel units is= = 169528307 mm4
The concrete stress at the top of the section is = = 9 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 148.65 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.89
Elastic modulus of steel = 200 GPa
Effective depth available = 360.00 mm
Unfactored Hogging Moment = 98.25 Kn-m
The depth of concrete in compression is= = 123.82 mm
The cracked second moment of area in steel units is= = 165973703.8 mm4
The concrete stress at the top of the section is = 8.03 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 139.81 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Crack width
Maximum permissible value of crack width for moderate exposure= 0.3 mm
Check for crackwidth at maximun sagging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 123.82 mm
Effective heigth of concrete in tension= hceff 92.06 mm
Area of concrete effective in tension= Aceff 92060 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.50
Diameter of reinforcement bar 1 ø1 20
Number of bar 1 per m width n1 6.666666667
Diameter of reinforcement bar 2 ø2
Number of bar 2 per m width n2
Equivalent diameter of reinforcement ø
maximum crack spacing= S r,max 249.33 mm
minimum value of reinfocement stress 0.6σs/Es 0.00041943
Maximum Crack width,wk= 0.12 mm
Crack width is within the permissible limit.
Check for crackwidth at maximun Hogging moment
Tensile strength of concrete= fct,eff 2.20 MPa
Depth of neutral axis= X 123.82 mm
Effective heigth of concrete in tension= hceff 92.06 mm
Area of concrete effective in tension= Aceff 92060 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.50
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.50
Diameter of reinforcement bar 1 ø1 0
Number of bar 1 per m width n1 5
Diameter of reinforcement bar 2 ø2 16
Number of bar 2 per m width n2 6.666666667
Equivalent diameter of reinforcement ø 8
maximum crack spacing= S r,max 136.00 mm
minimum value of reinfocement stress 0.6σs/Es 0.00041943
Maximum Crack width,wk= 0.06 mm
Crack width is within the permissible limit.
REINFORCEMENT FOR BOTTOM SLAB
DESIGN PARAMETERS
Grade of concrete fck= M25 250
Grade of steel fyk= Fe 550 415
Tensile strength of concrete fctm= 2.2 MPa 112 500
Partial safty factor for concrete for basic & seismic comb. ym= 1.5 550
Partial safty factor for reinforcement ys= 1.15 600
Design compressive strength of concrete fcd= α*fck/ym
Factor CI 6.4.2.8 of IRC 112-2011 α= 0.67
Design compressive strength of steel fcd= 11.17 MPa
Design compressive strength of concrete fyd= 478.27 MPa
Secant modulus elasticity of concrete Ecm= 30 GPa
Elastic modulus of steel Es= 200 GPa
Ultimate compressive strain in concrete Table 6.5 of IRC 112-2011 εcu3= 0.0035
Ultimate tensile strain in steel εst= 0.00217
Factor CI A2.9 of IRC 112-2011 λ= 0.8
Factor CI A2.9 of IRC 112-2011 η= 1
limiting neutral axia to depth ratio = Xu, max = εcu3
Limiting Moment Of Resistence Ru= 3.33 N/mm2
DESIGN OF BOTTOM SLAB
Clear cover to main reinforcement = 40 mm
Overall depth provided at mid span = 450 mm
Overall depth provided at support = 450 mm
Effective depth provided at mid span = 410 mm
Effective depth provided at support = 410 mm
Grade of concrete= M 25
Grade of steel= 550 N/mm2
Limiting Moment Of Resistence Ru= = 3.33 N/mm2
Max support bending moment = 163.562 kN-m
Effective depth required = 221.63 mm 342.2735734 3.325
Effective depth available = 410 mm
Max midspan bending moment = 290.91 kN-m
Effective depth required = 295.57 mm 456.4725807
Effective depth available = 410 mm
Design of reinforcement
Support section (horizontal reinforcement @slab both perdendicular to wall)
Bending moment at support section = 163.562 kN-m
Area of steel required = 699.20 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 426.40 mm2
Max area of reinf 0.025Ac = 11250.00 mm2
Distribution of steel #REF! #REF! mm
CURT ST 2 8 Provided spacing= #REF! mm
Dia of Bar 0 mm 16 mm 16 10 #REF! #REF! mm
Spacing of Bar 200 mm 150 mm 200 200
Area of Steel Provided 0.00 mm2 1341.01 mm2
Total Area of Steel Provided= 1341.01 mm2
Provide 0 mm bars at 200 mm c/c For Bottom extra at support
Provide 16 mm bars at 150 mm c/c for bottom full length
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 268.21 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 200 mm
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.9 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Midspan section (Horizontal reinforcement @slab both perdendicular to wall)
Bending moment at Center section = = 290.914107 kN-m
Area of steel required = = 1296.58 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 426.40 mm2
Max area of reinf 0.025Ac = 11250.00 mm2
Distribution of steel Provided spacing= #REF! mm
CURT ST 6 7 #REF! #REF! mm
Dia of Bar 0 mm 20 mm 16 0 -1296.58
Spacing of Bar 150 mm 150 mm 200 0
Area of Steel Provided 0.00 mm2 2095.33 mm2
Total Area of Steel Provided= 2095.33 mm2
Provide 20 mm bars at 150 mm c/c For Top full length
Provide 0 mm bars at 150 mm c/c for Top extra at mid span
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 419.07 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 200 mm
Spacing of reinforcement provided = 175 mm
Area of steel reinforcement provided = 449.03 mm2
Provide 10 mm bars at 175 mm c/c at perpendicular to main reinforcement
Check For Shear:
Max. ultimate Shear force = 89.07 Kn
C/s area Ac = 410000.00 mm2
Concrete comp fcd= 11.17 Mpa
VRD,C= 317.30 Kn
VRD,C MIN= 245.29 Kn
So VRD,C= 245.29 Kn
Shear Reinforcement Not Required
Check For Deflection:
Load intensity on top slab= w= 187.80 Kn/m
Effective span= l= 4400.00 mm
Effective depth of slab= d= 410.00 mm
Moment of Inertia= I= 34166666666.67 mm4 3.416666667E+10
Elastic modulus of steel E= 200.00 GPa
Actual Deflection= 5wl4/384EI = 0.1342 mm
Alloweble Deflection= span/1000 = 4.40 mm
Satisfies deflection Criterion
Check for Stress Limitation
Stress limitation shall be checked for Rare combination as per CI 12.2 of IRC 112-2011
Allowable compressive stress in concrete under Rare combination= 0.48fck
Allowable compressive stress in concrete under quai permanent loads = 0.36fck
Allowable tensile stress in reinforcement= 0.8fyk
Check for Stress at maximum sagging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6428
Depth of Neutral axis= = 225 mm 740.75
Second moment of area= = 7593750000 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 410.00 mm
Unfactored Sagging Moment = 194.60 Kn-m
The depth of concrete in compression is= = 136.12 mm
The cracked second moment of area in steel units is= = 316959255.6 mm4
The concrete stress at the top of the section is = 10.54 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 168.16 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 225
Second moment of area= = 7593750000
long term modulus elasticity of concrete= = 21.90372582
Elastic modulus of steel = 200 GPa
Effective depth available = 410.00 mm
Unfactored Sagging Moment = 194.60 Kn-m
The depth of concrete in compression is= = 163.2 mm
The cracked second moment of area in steel units is= = 313659526.9 mm4
The concrete stress at the top of the section is = 11.09 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 153.13 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Stress at maximum hogging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6298
Depth of Neutral axis= = 225 mm 740.75
Second moment of area= = 7593750000 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 410.00 mm
Unfactored Hogging Moment = 119.97 Kn-m
The depth of concrete in compression is= = 109.61 mm
The cracked second moment of area in steel units is= = 222302856.1 mm4
The concrete stress at the top of the section is = = 8.88 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 162.12 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 225
Second moment of area= = 7593750000
long term modulus elasticity of concrete= = 21.95060382
Elastic modulus of steel = 200 GPa
Effective depth available = 410.00 mm
Unfactored Hogging Moment = 119.97 Kn-m
The depth of concrete in compression is= = 130.71 mm
The cracked second moment of area in steel units is= = 216950201.8 mm4
The concrete stress at the top of the section is = 7.94 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 154.45 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Crack width
Maximum permissible value of crack width for moderate exposure= 0.3 mm
Check for crackwidth at maximun sagging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 130.71 mm
Effective heigth of concrete in tension= hceff 100 mm
Area of concrete effective in tension= Aceff 100000 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.5
Diameter of reinforcement bar 1 ø1 20
Number of bar 1 per m width n1 6.666666667
Diameter of reinforcement bar 2 ø2
Number of bar 2 per m width n2
Equivalent diameter of reinforcement ø
maximum crack spacing= S r,max 249.3333333 mm
minimum value of reinfocement stress 0.6σs/Es 0.00046335
Maximum Crack width,wk= 0.14 mm
Crack width is within the permissible limit.
Check for crackwidth at maximun Hogging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 130.71 mm
Effective heigth of concrete in tension= hceff 100 mm
Area of concrete effective in tension= Aceff 100000 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.50
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.50
Diameter of reinforcement bar 1 ø1 0
Number of bar 1 per m width n1 5
Diameter of reinforcement bar 2 ø2 16
Number of bar 2 per m width n2 6.666666667
Equivalent diameter of reinforcement ø 8
maximum crack spacing= S r,max 136 mm
minimum value of reinfocement stress 0.6σs/Es 0.00046335
Maximum Crack width,wk= 0.07 mm
Crack width is within the permissible limit.
REINFORCEMENT FOR OUTER SIDE WALLS
DESIGN PARAMETERS
Grade of concrete fck= M25
Grade of steel fyk= Fe 550
Tensile strength of concrete fctm= 2.2 MPa 112 250
Partial safty factor for concrete for basic & seismic comb. ym= 1.5 415
Partial safty factor for reinforcement ys= 1.15 500
Design compressive strength of concrete fcd= α*fck/ym 550
Factor CI 6.4.2.8 of IRC 112-2011 α= 0.67 600
Design compressive strength of steel fcd= 11.17 MPa
Design compressive strength of concrete fyd= 478.27 MPa
Secant modulus elasticity of concrete Ecm= 30 GPa
Elastic modulus of steel Es= 200 GPa
Ultimate compressive strain in concrete Table 6.5 of IRC 112-2011 εcu3= 0.0035
Ultimate tensile strain in steel εst= 0.00217
Factor CI A2.9 of IRC 112-2011 λ= 0.8
Factor CI A2.9 of IRC 112-2011 η= 1
limiting neutral axia to depth ratio = Xu, max = εcu3
Limiting Moment Of Resistence Ru= 3.33 N/mm2
DESIGN OF SIDE WALLS
Clear cover to main reinforcement = 40 mm
Overall depth provided at mid span = 400 mm
Overall depth provided at support = 400 mm
Effective depth provided at mid span = 352 mm
Effective depth provided at support = 352 mm
Grade of concrete= M 25
Grade of steel= 550 N/mm2
Limiting Moment Of Resistence Ru= = 3.33 N/mm2
Max support bending moment = 173.916 kN-m
Effective depth required = 352.94 mm 228.5323515 3.325
Effective depth available = 352 mm
Max midspan bending moment = 42.11 kN-m
Effective depth required = 112.45 mm 173.6659242 0.94
Effective depth available = 352 mm
Design of reinforcement
Support section (horizontal reinforcement @slab both perdendicular to wall)
Bending moment at support section = 173.916 kN-m
Area of steel required = 886.14 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 366.08 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel #REF! #REF! mm
ST CURT 2 8 Provided spacing= #REF! mm
Dia of Bar 16 mm 0 mm 16 10 #REF! #REF! mm
Spacing of Bar 150 mm 200 mm 200 200
Area of Steel Provided 1341.01 mm2 0.00 mm2
Total Area of Steel Provided= 1341.01 mm2
Provide 0 mm bars at 200 mm c/c For extra at support
Provide 16 mm bars at 150 mm c/c for Outer side full length
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 268.21 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 175 mm
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.9 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Midspan section (Horizontal reinforcement @slab both perdendicular to wall)
Bending moment at Center section = = 42.108 kN-m
Area of steel required = = 203.24 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 366.08 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel Provided spacing= #REF! mm
ST 6 7 #REF! #REF! mm
Dia of Bar 16 mm 0 mm 16 0
Spacing of Bar 150 mm 200 mm 200 0
Area of Steel Provided 1341.01 mm2 0.00 mm2
Total Area of Steel Provided= 1341.01 mm2
Provide 16 mm bars at 150 mm c/c For outer side wall full length
Provide 0 mm bars at 200 mm c/c for Bottom extra at mid span
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 268.21 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 175 mm
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.90 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Check For Shear:
Max. ultimate Shear force = 82.06 Kn
C/s area Ac = 352000.00 mm2
Concrete comp fcd= 11.17 Mpa
VRD,C= 262.71 Kn
VRD,C MIN= 213.61 Kn
So VRD,C= 213.61 Kn
Shear Reinforcement Not Required
Check for Stress Limitation
Stress limitation shall be checked for Rare combination as per CI 12.2 of IRC 112-2011
Allowable compressive stress in concrete under Rare combination= 0.48fck
Allowable compressive stress in concrete under quai permanent loads = 0.36fck
Allowable tensile stress in reinforcement= 0.8fyk
Check for Stress at maximum sagging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.696
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 352.00 mm
Unfactored Sagging Moment = 42.11 Kn-m
The depth of concrete in compression is= = 102.51 mm
The cracked second moment of area in steel units is= = 161788178.6 mm4
The concrete stress at the top of the section is = 4.01 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 64.94 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.71395483
Elastic modulus of steel = 200 GPa
Effective depth available = 352.00 mm
Unfactored Sagging Moment = 42.11 Kn-m
The depth of concrete in compression is= = 123.21 mm
The cracked second moment of area in steel units is= = 158451619.6 mm4
The concrete stress at the top of the section is = 3.56 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 60.81 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Stress at maximum hogging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6298
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 352.00 mm
Unfactored Hogging Moment = 67.00 Kn-m
The depth of concrete in compression is= = 102.51 mm
The cracked second moment of area in steel units is= = 161788178.6 mm4
The concrete stress at the top of the section is = = 6.37 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 103.33 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.95060382
Elastic modulus of steel = 200 GPa
Effective depth available = 352.00 mm
Unfactored Hogging Moment = 67.00 Kn-m
The depth of concrete in compression is= = 122.44 mm
The cracked second moment of area in steel units is= = 158526370.6 mm4
The concrete stress at the top of the section is = 5.68 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 97.03 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Crack width
Maximum permissible value of crack width for moderate exposure= 0.3 mm
Check for crackwidth at maximun sagging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 122.44 mm
Effective heigth of concrete in tension= hceff 92.52 mm
Area of concrete effective in tension= Aceff 92520 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.5
Diameter of reinforcement bar 1 ø1 16
Number of bar 1 per m width n1 6.666666667
Diameter of reinforcement bar 2 ø2
Number of bar 2 per m width n2
Equivalent diameter of reinforcement ø
maximum crack spacing= S r,max 272 mm
minimum value of reinfocement stress 0.6σs/Es 0.00029109
Maximum Crack width,wk= 0.08 mm
Crack width is within the permissible limit.
Check for crackwidth at maximun Hogging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 122.44 mm
Effective heigth of concrete in tension= hceff 92.52 mm
Area of concrete effective in tension= Aceff 92520 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.5
Diameter of reinforcement bar 1 ø1 16
Number of bar 1 per m width n1 6.666666667
Diameter of reinforcement bar 2 ø2 0
Number of bar 2 per m width n2 5
Equivalent diameter of reinforcement ø 8
maximum crack spacing= S r,max 272 mm
minimum value of reinfocement stress 0.6σs/Es 0.00029109
Maximum Crack width,wk= 0.08 mm
Crack width is within the permissible limit.
Inner Face of Side wall
Bending Moment on Inner face is not present, hence minimum Reinforcement Provided
On inner face of side wall
Clause 16.5.1.1 of IRC 112-2011
Clear cover to Reinforcement on inner face = 200 GPa
Effective Depth = 352 mm
Minimum area of Reinforcement 0.26*(fctm/fyk)*bt*d > 0.0013btd = 366.08 mm2
Diameter of reinforcement = 16 mm
Area of reinforcement = 201.152 mm2
Spacing of reinforcement = 215 mm
Area of reinforcement provided = 935.6 mm2
Provide 16 mm bars at 215 mm c/c at Inner face of Vertical Wall
REINFORCEMENT FOR INNER WALLS
DESIGN PARAMETERS
Grade of concrete fck= M25
Grade of steel fyk= Fe 550 250
Tensile strength of concrete fctm= 2.2 MPa 112 415
Partial safty factor for concrete for basic & seismic comb. ym= 1.5 500
Partial safty factor for reinforcement ys= 1.15 550
Design compressive strength of concrete fcd= α*fck/ym
Factor CI 6.4.2.8 of IRC 112-2011 α= 0.67
Design compressive strength of steel fcd= 11.17 MPa
Design compressive strength of concrete fyd= 478.27 MPa
Secant modulus elasticity of concrete Ecm= 30 GPa
Elastic modulus of steel Es= 200 GPa
Ultimate compressive strain in concrete Table 6.5 of IRC 112-2011 εcu3= 0.0035
Ultimate tensile strain in steel εst= 0.00217
Factor CI A2.9 of IRC 112-2011 λ= 0.8
Factor CI A2.9 of IRC 112-2011 η= 1
limiting neutral axia to depth ratio = Xu, max = εcu3
Limiting Moment Of Resistence Ru= 3.33 N/mm2
DESIGN OF INNER WALLS
Clear cover to main reinforcement = 40 mm
Overall depth provided at mid span = 400 mm
Overall depth provided at support = 400 mm
Effective depth provided at mid span = 352 mm
Effective depth provided at support = 352 mm
Grade of concrete= M 25
Grade of steel= 550 N/mm2
Limiting Moment Of Resistence Ru= = 3.33 N/mm2
Max support bending moment = 155.898 kN-m 216.3708422
Effective depth required = 284.16 mm 334.1589957 3.325
Effective depth available = 352 mm
Max midspan bending moment = 42.11 kN-m
Effective depth required = 112.45 mm 173.6659242
Effective depth available = 352 mm
Design of reinforcement
Support section (horizontal reinforcement @slab both perdendicular to wall)
Bending moment at support section = 155.898 kN-m
Area of steel required = 888.04 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 366.08 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel #REF! #REF! mm
2 0 2 8 Provided spacing= #REF! mm
Dia of Bar 16 mm 0 mm 16 10 #REF! #REF! mm
Spacing of Bar 125 mm 200 mm 200 200
Area of Steel Provided 1609.22 mm2 0.00 mm2
Total Area of Steel Provided= 1609.22 mm2
Provide 0 mm bars at 200 mm c/c For extra at support
Provide 16 mm bars at 125 mm c/c for full length
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 321.85 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 160 mm 1.2
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.9 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Midspan section (Horizontal reinforcement @slab both perdendicular to wall)
Bending moment at Center section = = 42.108 kN-m
Area of steel required = = 203.24 mm2
Check for min. reinforcement
Clause 16.5.1.1 of IRC 112-2011
Min area of reinf 0.26*(fctm/fyk)*bt*d>0.0013btd = 366.08 mm2
Max area of reinf 0.025Ac = 10000.00 mm2
Distribution of steel Provided spacing= #REF! mm
Outer side 2 6 7 #REF! #REF! mm
Dia of Bar 16 mm 0 mm 16 0
Spacing of Bar 125 mm 200 mm 200 0
Area of Steel Provided 1609.22 mm2 0.00 mm2
Total Area of Steel Provided= 1609.22 mm2
Provide 16 mm bars at 125 mm c/c For outer side extra
Provide 0 mm bars at 200 mm c/c for Bottom extra at mid span
Distribution Reinforcement
20% of Main Reinforcement, IRC: 112-2011, clause 16.6.1.1 = 321.85 mm2
Diameter of Secondary Reinforcement = 10
Area of reinforcement = 78.58 mm2
Maximum spacing of distribution reinforcement = 160 mm
Spacing of reinforcement provided = 200 mm
Area of steel reinforcement provided = 392.90 mm2
Provide 10 mm bars at 200 mm c/c at perpendicular to main reinforcement
Check For Shear:
Max. ultimate Shear force = 172.75 Kn
C/s area Ac = 352000.00 mm2
Concrete comp fcd= 11.17 Mpa
VRD,C= 271.69 Kn
VRD,C MIN= 213.61 Kn
So VRD,C= 213.61 Kn
VED = 172.75 Kn
Shear Reinforcement Not Required
Check for Stress Limitation
Stress limitation shall be checked for Rare combination as per CI 12.2 of IRC 112-2011
Allowable compressive stress in concrete under Rare combination= 0.48fck
Allowable compressive stress in concrete under quai permanent loads = 0.36fck
Allowable tensile stress in reinforcement= 0.8fyk
Check for Stress at maximum sagging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.696
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 352.00 mm
Unfactored Sagging Moment = 42.11 Kn-m
The depth of concrete in compression is= = 111.2 mm
The cracked second moment of area in steel units is= = 184843821.9 mm4
The concrete stress at the top of the section is = 3.8 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 54.86 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.71395483
Elastic modulus of steel = 200 GPa
Effective depth available = 352.00 mm
Unfactored Sagging Moment = 42.11 Kn-m
The depth of concrete in compression is= = 133.87 mm
The cracked second moment of area in steel units is= = 182085610.7 mm4
The concrete stress at the top of the section is = 3.37 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 50.45 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Stress at maximum hogging moment 150 1.7
Stress calculation for short term effect 600 1.5
Notinal size= = 740.75 mm
Creep coefficient at 28 days= RH80% = 1.6298
Depth of Neutral axis= = 200 mm 740.75
Second moment of area= = 5333333333 mm4
Secant modulus elasticity of concrete = 30 GPa -3.197158082 -0.2
Elastic modulus of steel = 200 GPa 0.06255555556
Effective depth available = 352.00 mm
Unfactored Hogging Moment = 95.58 Kn-m
The depth of concrete in compression is= = 111.2 mm
The cracked second moment of area in steel units is= = 184843821.9 mm4
The concrete stress at the top of the section is = = 6.63 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 124.52 Mpa
The reinforcement Stress is within the limit, Hence OK.
Stress calculation for long term effect
Depth of Neutral axis= = 200
Second moment of area= = 5333333333
long term modulus elasticity of concrete= = 21.95060382
Elastic modulus of steel = 200 GPa
Effective depth available = 352.00 mm
Unfactored Hogging Moment = 95.58 Kn-m
The depth of concrete in compression is= = 133.03 mm
The cracked second moment of area in steel units is= = 182125106.5 mm4
The concrete stress at the top of the section is = 7.67 Mpa
The concrete Stress is within the limit, Hence OK.
The reinforcement stress at the top of the section is = 114.92 Mpa
The reinforcement Stress is within the limit, Hence OK.
Check for Crack width
Maximum permissible value of crack width for moderate exposure= 0.3 mm
Check for crackwidth at maximun sagging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 133.03 mm
Effective heigth of concrete in tension= hceff 88.99 mm
Area of concrete effective in tension= Aceff 88990 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.5
Diameter of reinforcement bar 1 ø1 16
Number of bar 1 per m width n1 8.000
Diameter of reinforcement bar 2 ø2
Number of bar 2 per m width n2
Equivalent diameter of reinforcement ø
maximum crack spacing= S r,max 226.6666667 mm
minimum value of reinfocement stress 0.6σs/Es 0.00034476
Maximum Crack width,wk= 0.09 mm
Crack width is within the permissible limit.
Check for crackwidth at maximun Hogging moment
Tensile strength of concrete= fct,eff 2.2 MPa
Depth of neutral axis= X 133.03 mm
Effective heigth of concrete in tension= hceff 88.99 mm
Area of concrete effective in tension= Aceff 88990 mm2/m
Modular ratio= αe 6.67
Factor dependent on duration of load= kt 0.5
Coefficient which takes account of bond properties of bonded reinforcement
Coefficient which takes account of distribution of strain k2 0.5
Diameter of reinforcement bar 1 ø1 16
Number of bar 1 per m width n1 8
Diameter of reinforcement bar 2 ø2 0
Number of bar 2 per m width n2 5
Equivalent diameter of reinforcement ø 8
maximum crack spacing= S r,max 226.6666667 mm
minimum value of reinfocement stress 0.6σs/Es 0.00034476
Maximum Crack width,wk= 0.09 mm
Crack width is within the permissible limit.
Inner Face of Side wall
Bending Moment on Inner face is not present, hence minimum Reinforcement Provided
On inner face of side wall
Clause 16.5.1.1 of IRC 112-2011
Clear cover to Reinforcement on inner face = 200 GPa
Effective Depth = 352 mm
Minimum area of Reinforcement 0.26*(fctm/fyk)*bt*d > 0.0013btd = 366.08 mm2
Diameter of reinforcement = 16 mm
Area of reinforcement = 201.152 mm2
Spacing of reinforcement = 150 mm
Area of reinforcement provided = 1341.02 mm2
Provide 16 mm bars at 150 mm c/c at Inner face of Vertical Wall
0 HEIGHT OF WALL 2.995 m
THICKNESS OF BASE SLAB 8% HT OF WALL + SURCGARGE
CLEAR COVER FOR BASE 75 MM
CLEAR COVER FOR WALL 50 MM
DISTR BARS 0.12%
BASE 1.5 HEEL+STEM
BACK FILL Angle of slope of bank Ф(deg) to horizontal, (max Ф=θ) 0
Angle of repose θ (deg) = 30
Density of back fill (kN/m3) = 18
Density of saturated back fill (kN/m3) = 20.8
Surcharge Uniform Surcharge load (kN/m2) = 21.6
Base Soil Safe Bearing Capacity of Soil (kN/m2) = 100.3
Coefficient of base friction between soil and concrete 0.55 3.375
Wall Height of Wall, H (m) 2.995 95.75 2x2
Profile Depth of Water Table below GL, H1 (m) 3.995 15.55
Depth of soil above toe slab, H2 (m) 2.995
Wall thickness at top of base slab, T1 (m) 0.380 0.2495833333 0.3686868687
Wall thickness at top, T2 (m) 0.300
Base slab width, B (m) 2.600 1.797
Base slab toe dimension, B1 (m) 1.600 0.599 0.3649889205
Base slab thickness, D1 (m) 0.380
Base Heel slab dimension, B2 (m) 0.620 1.60
Base Heel slab thickness, D2 (m) 0.380
Shear key depth, D3 (m) 0.000 M
Shear key thickness, T3 (m) 0.000
Material Concrete Grade, fck M 25
Data Steel Reinforcement Grade, fy (N/mm2) = 550
Concrete In base slab (mm) = 50
Cover In earth face of wall (mm) = 50
In front face of wall (mm) = 50
Active Coefficient of earth pressure 0.33 0.599
Passive Coefficient of earth pressure 3.00
Concrete density kN/m3 25
Water density kN/m3 10
Horizontal Pressures, Moments and Shears on Wall (Service Load Condn.)
Depth of wall Horizontal Pressure on wall (kN/m2) Bending Moment Shear on Bending Moment(-Surcharge) Shear on(-surcharge)
from top (m) Soil Pressure Grd Water Pr Surcharge Pr. on wall (kNm/m) wall (kN/m) on wall (kNm/m) wall (kN/m)
Value at max depth neglecting surcharge pressure = 3.0 79.45 58.47 38.44 34.17
Passive Resistance Considered
Passive pressure at top, (kN/m2) = 161.73
Passive pressure at bottom, (kN/m2) = 182.25
Depth of passive resistance (m) = 0.38
Passive Force (kN/m) = 65.36
Passive Moment about Toe (kNm/m) = -8.08
Vertical Loads per metre length (Service Load condition)
Load case Vertical load (kN) Lever arm to Toe (m) B.M. (kNm)
Wall (Rectangle) 22.463 1.830 41.106
Wall (Triangle) 2.995 1.653 4.952
Soil load over Toe Slab 53.910 0.800 43.128
Soil +sub-soil water(if any) over Heel Slab 33.424 2.290 76.541
Surcharge load 7.200 2.290 16.488
Maximum Total = 144.692 - 214.326
Total neglecting surcharge load = 137.492 - 197.838
Total for 0.9 x (wall+base+soil over toe) & no surcharge = 137.492 - 197.838 1
C.G. of vertical loads from Toe: Case: Total load = 214.326 /144.692 1.481 m
Case: Total neglecting surcharge load = 197.838 /137.492 1.439 m
Eccentricity= 0.181 < B/6 0.43 Hence OK
Moment on C.L. of Base:
Soil Pressure under Base Slab (Service Load Condition)
Safe Bearing capacity of soil= 100.30 kN/m2
Case: Total load including soil load over toe slab
Case: Total including soil load over toe slab, but neglecting surcharge load: . Soil Pressures O.K.
Soil Pressures O.K.
SBC of soil is more than the design pressures, hence base width is O.K
Stability Calculations (Service Load Condition)
Case: Total load including soil load over toe slab & Surchrage
Over Turning Moment about Toe = 79.45 kNm
Resisting Moment = 214.326 kNm
Factor of safety against over turning = 2.70 > 1.5, Section O.K.
Horizontal Sliding Force = 58.47 kN
Resisting Force = 137.492 x 0.55 +65.3562 140.9768 kN
Factor of safety against sliding = 2.41 > 1.5, Section O.K.
Total for 0.9 x (wall+base+soil over toe) & no surcharge:
Over Turning Moment about Toe = 38.44 kNm
Resisting Moment = 197.838 kNm
Factor of safety against over turning = 5.146 > 1.5, Section O.K.
Horizontal Sliding Force = 34.17
Resisting Force = 137.492 x 0.55 +65.3562 140.977 (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd
Factor of safety against sliding = 4.13 > 1.5 Section O.K.
Design of Wall by Limit State Method (Partial Safety Factor, γf = 1.5)
Depth of wall Ult. Moment Eff. Depth (mm) Sqrt(Mu*1000/3.33) Bar ф (mm) Ast (mm2) Vertical Reinf't Horizontal Reinf't
from top (m) Mu, kNm Reqd. Provided Vertl. Horzl. Reqd. Provided Main Reinf't Distr Reinf't
Ru= 3.33 (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd Max c/c Adopted c/c Dia/Spacing Max c/c Adopted c/c Dia/Spacing
Check for Shear in Wall by Limit State Method (Partial Safety Factor, γf = 1.5)
Depth of wall Ult. Shear Shear Stress 100 Ast Perm. Shear Stress Design Status 2.43 R P
from top (m) Vu, kN τv, N/mm2 bd τc, N/mm2 of Wall 12.0558375 18.08375625 324 129.67 904.7786842
0.00 0.000 0.000 0.371 8.317 0.421 Section is OK One way shear stress at d = 0.190 #DIV/0!
0.60 8.084 0.040 0.444 6.954 0.454 Section is OK Percentage Steel provided = 0.430 #REF!
1.80 33.939 0.144 0.383 8.045 0.427 Section is OK Permissible Shear Stress, Tcp = 0.439 #REF!
Design of Base Slab
Case: Total load including soil load over toe slab 95.75 46.40 34.68 15.55
Soil Pressure at P = 95.75 kN/m2 TOE/HEEL 53.91 53.91 53.91 53.91
Soil Pressure at Q = 46.40 kN/m2 41.84 -7.51 -19.23 -38.36
Soil Pressure at R = 34.68 kN/m2
Soil Pressure at S = 15.55 kN/m2
Designing the base slab by limit-state method, Partial load factor, γf = 1.5
Case: Total including soil load over toe slab, but neglecting surcharge load:
Soil Pressure at P = 62.865 kN/m2
Soil Pressure at Q = 50.58 kN/m2
Soil Pressure at R = 47.66 kN/m2
Soil Pressure at S = 42.898 kN/m2
Designing the base slab by limit-state method, Partial load factor, γf = 1.5
Areas of Reinforcement in Base Slab
Location Mu Eff. Depth(mm) Bar Ф (mm) Ast (mm2) Main steel Distribn.Steel
(kNm) Reqd. Provided Main Distbn. Reqd. Provided Ф - Crs (mm) Ф - Crs (mm)
Sqrt(Mu*1000/3.33) (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd Adopted c/c Dia/Spacing Spacing Reqd (0.12%) Adopted c/c Dia/Spacing
Q 3.33 Steel req Req spacing, C/C Steel Provided
Check for Shear in Base Slab
Case: Total load including soil load over toe slab
Soil Pressure at P = 95.75 kN/m2 TOE/HEEL #REF! #REF! #REF! #REF!
Soil Pressure at Q = 46.40 kN/m2 #REF! #REF! #REF! #REF!
Soil Pressure at R = 34.68 kN/m2
Soil Pressure at S = 15.55 kN/m2
Ultimate Shear (Partial lad factor, γf = 1.5: soil thk
Case: Total including soil load over toe slab, but neglecting surcharge load:
Soil Pressure at P = 62.87 kN/m2 TOE/HEEL 0 0 0 0
Soil Pressure at Q = 50.58 kN/m2 0.00 0.00 0.00 0.00
Soil Pressure at R = 47.66 kN/m2
Soil Pressure at S = 42.90 kN/m2
Ultimate Shear (Partial lad factor, γf = 1.5:
Check for Shear in Base Slab by Limit State Method (Partial Safety Factor, γf = 1.5)
Location Ult. Shear Shear Stress 100 Ast Perm. Shear Stress Design Status
Vu-max, kN τv, N/mm2 bd τc, N/mm2 of Base
Toe Slab 0.846 0.003 0.465 0.463 Section is OK 6.627
Heel Slab 24.699 0.076 0.465 0.463 Section is OK 6.627
GOVT. OF KARNATAKA
PUBLIC WORKS DEPARTMENT
OFFICE OF ASSISTANT EXECUTIVE ENGINEER PWD SUB DIVISION NO.1 BELAGAVI
NAME OF WORK: PROPOSED CONSTRUCTION OF PROTECTION WALL FROM KM. 4.60 TO 5.25 OF SHINDOLLI MUTAGA MUCHANDI ROAD IN BELAGAVI TALUKA(MDR).
ESTIMATED COST : 150.00 Lakhs.
HEAD OF ACCOUNT : 3054 FLOOD RELIEF
0 HEIGHT OF WALL 2.000 m
THICKNESS OF BASE SLAB 8% HT OF WALL + SURCGARGE
CLEAR COVER FOR BASE 75 MM
CLEAR COVER FOR WALL 50 MM
DISTR BARS 0.12%
BASE 1.5 HEEL+STEM
BACK FILL Angle of slope of bank Ф(deg) to horizontal, (max Ф=θ) 0
Angle of repose θ (deg) = 30
Density of back fill (kN/m3) = 18
Density of saturated back fill (kN/m3) = 20.8
Surcharge Uniform Surcharge load (kN/m2) = 10.8
Base Soil Safe Bearing Capacity of Soil (kN/m2) = 100
Coefficient of base friction between soil and concrete 0.6
Wall Height of Wall, H (m) 2.000 88.91 2x2
Profile Depth of Water Table below GL, H1 (m) 3.000 1.35
Depth of soil above toe slab, H2 (m) 1.000
Wall thickness at top of base slab, T1 (m) 0.300 0.1666666667 0.3686868687
Wall thickness at top, T2 (m) 0.230
Base slab width, B (m) 1.500 1.2
Base slab toe dimension, B1 (m) 0.600 0.4 0.07097733185
Base slab thickness, D1 (m) 0.300
Base Heel slab dimension, B2 (m) 0.600 0.1
Base Heel slab thickness, D2 (m) 0.300
Shear key depth, D3 (m) 0.000 M
Shear key thickness, T3 (m) 0.000
Material Concrete Grade, fck M 25
Data Steel Reinforcement Grade, fy (N/mm2) = 500
Concrete In base slab (mm) = 50
Cover In earth face of wall (mm) = 50
In front face of wall (mm) = 50
Active Coefficient of earth pressure 0.33 0.4
Passive Coefficient of earth pressure 3.00
Concrete density kN/m3 25
Water density kN/m3 10
Horizontal Pressures, Moments and Shears on Wall (Service Load Condn.)
Depth of wall Horizontal Pressure on wall (kN/m2) Bending Moment Shear on Bending Moment(-Surcharge) Shear on(-surcharge)
from top (m) Soil Pressure Grd Water Pr Surcharge Pr. on wall (kNm/m) wall (kN/m) on wall (kNm/m) wall (kN/m)
Value at max depth neglecting surcharge pressure = 2.0 21.69 24.15 15.87 15.87
Passive Resistance Considered
Passive pressure at top, (kN/m2) = 54.00
Passive pressure at bottom, (kN/m2) = 70.20
Depth of passive resistance (m) = 0.30
Passive Force (kN/m) = 18.63
Passive Moment about Toe (kNm/m) = -1.82
Vertical Loads per metre length (Service Load condition)
Load case Vertical load (kN) Lever arm to Toe (m) B.M. (kNm)
Wall (Rectangle) 11.500 0.785 9.028
Wall (Triangle) 1.750 0.647 1.132
Soil load over Toe Slab 18.000 0.300 5.400
Soil +sub-soil water(if any) over Heel Slab 21.600 1.200 25.920
Surcharge load 3.600 1.200 4.320
Maximum Total = 67.700 - 54.237
Total neglecting surcharge load = 64.100 - 49.917
Total for 0.9 x (wall+base+soil over toe) & no surcharge = 64.100 - 49.917 1
C.G. of vertical loads from Toe: Case: Total load = 54.237 /67.7 0.801 m
Case: Total neglecting surcharge load = 49.917 /64.1 0.779 m
Eccentricity= 0.051 < B/6 0.25 Hence OK
Moment on C.L. of Base:
Case: Total neglecting surcharge load = = 15.87+ (-1.819)+64.1 x ( 0.75 -0.779) 12.19 kNm 15.87 -1.82 64.100 0.750 0.779
Soil Pressure under Base Slab (Service Load Condition)
Safe Bearing capacity of soil= 100.00 kN/m2
Case: Total load including soil load over toe slab
Case: Total including soil load over toe slab, but neglecting surcharge load: Soil Pressures O.K.
Soil Pressures O.K.
SBC of soil is more than the design pressures, hence base width is O.K
Stability Calculations (Service Load Condition)
Case: Total load including soil load over toe slab & Surchrage
Over Turning Moment about Toe = 21.69 kNm
Resisting Moment = 54.237 kNm
Factor of safety against over turning = 2.50 > 1.5, Section O.K.
Horizontal Sliding Force = 24.15 kN
Resisting Force = 64.1 x 0.6 +18.63 57.09 kN
Factor of safety against sliding = 2.36 > 1.5, Section O.K.
Total for 0.9 x (wall+base+soil over toe) & no surcharge:
Over Turning Moment about Toe = 15.87 kNm
Resisting Moment = 49.917 kNm
Factor of safety against over turning = 3.145 > 1.5, Section O.K.
Horizontal Sliding Force = 15.87
Resisting Force = 64.1 x 0.6 +18.63 57.09 (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd
Factor of safety against sliding = 3.60 > 1.5 Section O.K.
Design of Wall by Limit State Method (Partial Safety Factor, γf = 1.5)
Depth of wall Ult. Moment Eff. Depth (mm) Sqrt(Mu*1000/3.33) Bar ф (mm) Ast (mm2) Vertical Reinf't Horizontal Reinf't
from top (m) Mu, kNm Reqd. Provided Vertl. Horzl. Reqd. Provided Main Reinf't Distr Reinf't
Ru= 3.33 (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd Max c/c Adopted c/c Dia/Spacing Max c/c Adopted c/c Dia/Spacing
Check for Shear in Wall by Limit State Method (Partial Safety Factor, γf = 1.5)
Depth of wall Ult. Shear Shear Stress 100 Ast Perm. Shear Stress Design Status 2.43 R P
from top (m) Vu, kN τv, N/mm2 bd τc, N/mm2 of Wall 12.0558375 18.08375625 244 173.548 565.4866776
0.00 0.000 0.000 0.325 9.490 0.398 Section is OK One way shear stress at d = 0.190 #DIV/0!
0.40 2.880 0.022 0.428 7.199 0.447 Section is OK Percentage Steel provided = 0.430 #REF!
1.20 12.960 0.081 0.353 8.726 0.412 Section is OK Permissible Shear Stress, Tcp = 0.439 #REF!
Design of Base Slab
Case: Total load including soil load over toe slab 88.91 53.89 36.38 1.36
Soil Pressure at P = 88.91 kN/m2 TOE/HEEL 18 18 36 36
Soil Pressure at Q = 53.89 kN/m2 70.91 35.89 0.38 -34.65
Soil Pressure at R = 36.38 kN/m2
Soil Pressure at S = 1.36 kN/m2
Designing the base slab by limit-state method, Partial load factor, γf = 1.5
Case: Total including soil load over toe slab, but neglecting surcharge load:
Soil Pressure at P = 75.245 kN/m2
Soil Pressure at Q = 49.24 kN/m2
Soil Pressure at R = 36.23 kN/m2
Soil Pressure at S = 10.221 kN/m2
Designing the base slab by limit-state method, Partial load factor, γf = 1.5
Areas of Reinforcement in Base Slab
Location Mu Eff. Depth(mm) Bar Ф (mm) Ast (mm2) Main steel Distribn.Steel
(kNm) Reqd. Provided Main Distbn. Reqd. Provided Ф - Crs (mm) Ф - Crs (mm)
Sqrt(Mu*1000/3.33) (0.5 fck/fy)*(1-sqrt(1-(4.6*Mu/fck*bd*d))bd Adopted c/c Dia/Spacing Spacing Reqd (0.12%) Adopted c/c Dia/Spacing
Q 3.33 Steel req Req spacing, C/C Steel Provided
Check for Shear in Base Slab
Case: Total load including soil load over toe slab
Soil Pressure at P = 88.91 kN/m2 TOE/HEEL #REF! #REF! #REF! #REF!
Soil Pressure at Q = 53.89 kN/m2 #REF! #REF! #REF! #REF!
Soil Pressure at R = 36.38 kN/m2
Soil Pressure at S = 1.36 kN/m2
Ultimate Shear (Partial lad factor, γf = 1.5: soil thk
Case: Total including soil load over toe slab, but neglecting surcharge load:
Soil Pressure at P = 75.25 kN/m2 TOE/HEEL 0 0 0 0
Soil Pressure at Q = 49.24 kN/m2 0.00 0.00 0.00 0.00
Soil Pressure at R = 36.23 kN/m2
Soil Pressure at S = 10.22 kN/m2
Ultimate Shear (Partial lad factor, γf = 1.5:
Check for Shear in Base Slab by Limit State Method (Partial Safety Factor, γf = 1.5)
Location Ult. Shear Shear Stress 100 Ast Perm. Shear Stress Design Status
Vu-max, kN τv, N/mm2 bd τc, N/mm2 of Base
Toe Slab 26.933 0.110 0.464 0.462 Section is OK 6.654
Heel Slab 16.627 0.068 0.464 0.462 Section is OK 6.654
STABILITY ANALYSIS OF PROTECTON WALL
Road Top Level (RTL) 100.000 m
Top level of Wall 100.000 m
Top width of wall (b) 0.30 m
Ground Level ( Typ.) 99.200 m
Height of Vertical Face of wall (h1) 0.00 m
Depth of Foundation provided for wall 0.80 m
Top level of levelling course 98.400 m 1.38 0.18 6.12 1.47
Height of wall (h) (from top level of wall to fdn. Level ) 1.60 m
Slope of wall at Back side 0.85 :1
Slope of wall at Front Side 0.50 :1
Tring. width of wall at Back side (b1) 0.68 m
Tring. width of wall at Front side side (b2) 0.40 m
Total bottom width of wall (B) 1.38 m
Unit weight of Concrete (Wc) 2.40 t/m3
Unit Weight of Soil 1.80 t/m3
S.B.C. of Strata 25.00 t/m2
Angle of repose (b) 30 0 0.52 radians
Traffic (Indicate "Yes" or "No") Yes
Slope of Embankment 2.00 :1
Height of surcharge (x)= 0.60 m
Angle of Surcharge (a)= 0.00 0 0.00 radians
Super imposed Load due to Traffic 0.60 t/m2
The equivalent additional height of soil corresponding to super-imposed load 0.33 m
100.000 0.30 0.60 Pressure diagram due
a Super imposed load (traffic)
1.60 Outside Earth side (inside) P
0.40 PCC 1:2:4/ M15 Cp wh
The Earth Pressure per unit run (P) = Cp wh2 1.93 t-m
where, Cp = Co-efficient of earth pressure
= cos a cos a - ( cos2a-cos2b)1/2 0.334
cos a + ( cos2a-cos2b)1/2
The Hzl. Earth Pr. per unit run (Ph) = Cp wh2 cos a 1.93 t-m
The Vtl. Earth Pr. per unit run (Pv) = Cp wh2 sin a 0.00 t-m
Sl. Particulars Vertical Hzl. Lever Moment Moment
No. Force(V) Force(H) arm (M+) (M-)
(tonne) (tonne) (m) (t-m) (t-m)
Tringular - Inside 0.653 0.927 0.605
Rectangular - Inside 1.306 1.040 1.358
Tringular - Out side 0.384 0.267 0.102
Rectangular - Center 1.152 0.550 0.634
Tringular-1 0.490 1.153 0.565
Rectangular-2 0.000 1.040 0.000
Tringular-3 0.367 1.153 0.424
3 Hzl. Earth Pressure (Active) 1.93 0.84 1.627
4 Vtl. Earth Pressure (Active) 0.000 1.38 0.000
Net Moment 2.06 t-m
Resultant Load X = M/ V 0.47 m
Eccentricity e B/2 - X 0.22 m
e is less than B/6, hence O.K.
Max.Pressure Pmax V/ B ( 1+ 6 e /B) 6.12 t / m2
Min.Pressure Pmin V/ B ( 1- 6 e /B) 0.18 t / m2
No negative pressure develops
FACTOR OF SAFETY :
Factor of Safety against Sliding Cf V/H
where Cf Co-efficient of friction between the material above 0.65
and below the horizontal generally varies from 0.65 to 0.75
generally varies from 0.65 to 0.75 1.47 > 1.50
Factor of Safety against Overturning + M / - M
STEEL DETAILS :
10 mm Dia. Bars @ 175 Cm C/c ( Both ways and both faces)
Weep Holes 100 mm Dia pipe @ 1.50 m. C/c staggered
RECAPITULATION SHEET
Sl.No Description Amount in Rs:
1 Construction of Ground floor 1785494.41
Total Rs :- 1785494.41
7 Contigencies, change in SR, Miscelleneous & rounding off 0.00
Grand Total 1999753.74
Asst. Executive Engineer, Executive Engineer,
MEASUREMENT SHEET FOR SUPPORTING STRUCTURE
It.No. Description of items. Qty. Unit
1 KSRRB M200-12.3. Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts complete as per specifications. -do- C. Prestressed I Reinforced cement concrete grade M-20 above.MORTH Specification No. 202
Existing Bridge 1 20.00 2.10 2.00 = 84.00
2 "KSRRB M2100-3.2. Earth work excavation in all kinds of ordinary rock I soft rock not requiring blasting for foundation of bridges and allied works as per drawing and technical specifications, including setting out, providing shoring and bracing, removal of stumps and other deleterious matter, dressing of sides and bottom and filling back with approved material including cost of all materials, labour, HOM complete as per specifications. -do- (v) 3 m to 6 m depth by Mechanical means (S.R.2018-19 Page No. 220, I.No. 27.7.5) MORTH Specification No. 304
For Footing & Curtain Wall 2 3.85 3.85 3.50 = 103.76
3 KSRB 2.8 : Providing and Filling in foundation with granite I trap broken metal 1OOmm. and down size & with approved sand including hand packing, ramming, watering, including cost of all materials and labour with all lead and lift. complete as per specifications. specification. No. KBS 2.10.2 (S.R.2018-19 Page No. 7, I.No. 2.15)
For Curtain Wall Foundation 2 4.70 1.60 0.15 = 2.26
4 KSRRB M2100-10. Providing and laying Plain cement concrete of mix 1:3:6 with OPC @ 220kgs, with crushed 40mm and down size graded granite metal coarse aggregates @0.89cum and fine aggregates @ 0.46cum, in foundation mechanically mixed, placed in foundation and compacted by vibration including curing for 14 days including cost of all materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. (S.R.2018-19 Page No. 222, I.No. 27.18) MORTH Specification No. 2100
For Curtain Wall Foundation 2 4.40 1.60 0.15 = 2.11
5 K8RRB M2200-5.9. Providing and laying Design mix M20 with OPC @ 320kgs, with 20mm and down size graded granite metal coarse aggregates @0.69cum and fine aggregates @ 0.46cum, with superplastisiser @31ts confirming to 189103-1999 Reaffirmed-2008 including cost of materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. - i) Upto 5m height
Curtain Wall Foundation 2 4.10 1.30 0.30 = 3.20
Column up to Ground Level 2 1.00 1.00 1.55 = 3.10
Column Above Ground Level 2 1.00 1.00 2.00 = 4.00
Curtain Wall up to Ground Level 2 3.00 0.20 3.05 = 3.66
Total upto Date Quantity :- = 19.24 Cum
6 KSRRB M2200-6 : Supplying, fitting and placing TMT bar reinforcement in sub structure complete as per drawing and technical specification complete as per specifications. MORTH Specification No. 1600 & 2200. (S.R.2018-19 Page No. 229, I.No. 28.8.2)
Footing 3.60 60.00 Kgs Per Cum = 0.00
Column 7.10 200.00 Kgs Per Cum = 0.00
Curtain Wall 8.54 150.00 Kgs Per Cum = 0.00
Separate sheet attached = 3.44 Tone
7 KSRRB M2200-8.1. Back filling behind abutment, wing wall and return wall complete as per drawing and Technical Specification including cost of materials, labour, HOM of machineries, complete as per specifications. A. Granular material MORTH Specification No. 2204 & 304 (S.R.2018-19 Page No. 229, I.No. 28.11)
Quantity Vide as Per Item No 1 = 103.76
Broken metal Filling Quantity = 9.06
PCC Bed Concrete Quantity = 4.63
RCC Bottom Slab/Raft Quantity = 3.60
Total up to date Quantity after Ded :- = 86.47 Cum
8 Fabricating, supplying & erecting M.S. Angular Truss for all spans as per approved designs and drawing. The entire truss is anchored suitably by using 4 Nos. of M.S. anchor bolts at each support, with base plate and shoe plate. The work includes cutting, straightening, placing in position of M.S angle and welding wherever necessary, and applying one coat of red oxide primer coat to all the members including cost of all materials, labour charges, & hire charges of machineries for cutting, welding, grinding & erection equipments, etc., complete as per specification (P.no.43, I.no.7.30)
Separate sheet attached = 8630.50 Kgs 8630.5
9 KSRRB M2500-4.1. Providing and laying Pitching stones of size 0.3x0.3x0.3 m on slopes laid over prepared filter media including boulder apron laid dry in front of toe of embankment complete as per drawing and Technical specifications including cost of materials, labour, HOM complete as per specifications. A. Stone I Boulder MORTH Specification No. 2504
Total Quantity after Deduction :- = 3.19 Cum
Assistant Executive Engineer, PWD,Dept.Sub-Dn.,Belagavi Executive Engineer, PWD.Dept. Belagavi Dn Belagavi
It.No. Description of items. Unit Qty Rate Amount
1 KSRRB M200-12.3. Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts complete as per specifications. -do- C. Prestressed I Reinforced cement concrete grade M-20 above.MORTH Specification No. 202 Cum 84.00 1684.34 141484.56
2 "KSRRB M2100-3.2. Earth work excavation in all kinds of ordinary rock I soft rock not requiring blasting for foundation of bridges and allied works as per drawing and technical specifications, including setting out, providing shoring and bracing, removal of stumps and other deleterious matter, dressing of sides and bottom and filling back with approved material including cost of all materials, labour, HOM complete as per specifications. -do- (v) 3 m to 6 m depth by Mechanical means (S.R.2018-19 Page No. 220, I.No. 27.7.5) MORTH Specification No. 304 Cum 103.76 73.14 7588.82
3 KSRB 2.8 : Providing and Filling in foundation with granite I trap broken metal 1OOmm. and down size & with approved sand including hand packing, ramming, watering, including cost of all materials and labour with all lead and lift. complete as per specifications. specification. No. KBS 2.10.2 (S.R.2018-19 Page No. 7, I.No. 2.15) Cum 9.06 2265.22 20522.89
4 KSRRB M2100-10. Providing and laying Plain cement concrete of mix 1:3:6 with OPC @ 220kgs, with crushed 40mm and down size graded granite metal coarse aggregates @0.89cum and fine aggregates @ 0.46cum, in foundation mechanically mixed, placed in foundation and compacted by vibration including curing for 14 days including cost of all materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. (S.R.2018-19 Page No. 222, I.No. 27.18) MORTH Specification No. 2100 Cum 4.63 5605.49 25931.01
5 K8RRB M2200-5.9. Providing and laying Design mix M20 with OPC @ 320kgs, with 20mm and down size graded granite metal coarse aggregates @0.69cum and fine aggregates @ 0.46cum, with superplastisiser @31ts confirming to 189103-1999 Reaffirmed-2008 including cost of materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. - i) Upto 5m height Cum 19.24 5703.01 109725.95
6 KSRRB M2200-6 : Supplying, fitting and placing TMT bar reinforcement in sub structure complete as per drawing and technical specification complete as per specifications. MORTH Specification No. 1600 & 2200. (S.R.2018-19 Page No. 229, I.No. 28.8.2) Tonne 3.44 65893.68 226344.79
7 KSRRB M2200-8.1. Back filling behind abutment, wing wall and return wall complete as per drawing and Technical Specification including cost of materials, labour, HOM of machineries, complete as per specifications. A. Granular material MORTH Specification No. 2204 & 304 (S.R.2018-19 Page No. 229, I.No. 28.11) Cum 86.47 895.70 77452.52
8 Fabricating, supplying & erecting M.S. Angular Truss for all spans as per approved designs and drawing. The entire truss is anchored suitably by using 4 Nos. of M.S. anchor bolts at each support, with base plate and shoe plate. The work includes cutting, straightening, placing in position of M.S angle and welding wherever necessary, and applying one coat of red oxide primer coat to all the members including cost of all materials, labour charges, & hire charges of machineries for cutting, welding, grinding & erection equipments, etc., complete as per specification (P.no.43, I.no.7.30) Kgs 8630.50 135.68 1170986.24
9 KSRRB M2500-4.1. Providing and laying Pitching stones of size 0.3x0.3x0.3 m on slopes laid over prepared filter media including boulder apron laid dry in front of toe of embankment complete as per drawing and Technical specifications including cost of materials, labour, HOM complete as per specifications. A. Stone I Boulder MORTH Specification No. 2504 Cum 3.19 1709.78 5457.62
Assistant Executive Engineer, PWD,Dept.Sub-Dn.,Belagavi Executive Engineer, PWD.Dept. Belagavi Dn Belagavi
Diffrence in cost
Cement/Qtl Steel
Store issue rate 470.00 45645.00
Diffrence 46.00 -5123.00
It.No. Description of items. Unit Page No Item No Basic Rate S.R 2018-19 Diffrence in cost Total - 1 Area Weightage 6 % Total - 2 10 + 11
Const Rate Amount
1 KSRRB M200-12.3. Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts complete as per specifications. -do- C. Prestressed I Reinforced cement concrete grade M-20 above.MORTH Specification No. 202 Cum 139 18.19 1589.00 1589.00 95.34 1684.34
2 "KSRRB M2100-3.2. Earth work excavation in all kinds of ordinary rock I soft rock not requiring blasting for foundation of bridges and allied works as per drawing and technical specifications, including setting out, providing shoring and bracing, removal of stumps and other deleterious matter, dressing of sides and bottom and filling back with approved material including cost of all materials, labour, HOM complete as per specifications. -do- (v) 3 m to 6 m depth by Mechanical means (S.R.2018-19 Page No. 220, I.No. 27.7.5) MORTH Specification No. 304 Cum 220 27.7.5 69.00 69.00 4.14 73.14
3 KSRB 2.8 : Providing and Filling in foundation with granite I trap broken metal 1OOmm. and down size & with approved sand including hand packing, ramming, watering, including cost of all materials and labour with all lead and lift. complete as per specifications. specification. No. KBS 2.10.2 (S.R.2018-19 Page No. 7, I.No. 2.15) Cum 7 2.15 2137.00 2137.00 128.22 2265.22
4 KSRRB M2100-10. Providing and laying Plain cement concrete of mix 1:3:6 with OPC @ 220kgs, with crushed 40mm and down size graded granite metal coarse aggregates @0.89cum and fine aggregates @ 0.46cum, in foundation mechanically mixed, placed in foundation and compacted by vibration including curing for 14 days including cost of all materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. (S.R.2018-19 Page No. 222, I.No. 27.18) MORTH Specification No. 2100 Cum 222 27.18 5187.00 2.20 46.00 101.20 5288.20 317.29 5605.49
5 K8RRB M2200-5.9. Providing and laying Design mix M20 with OPC @ 320kgs, with 20mm and down size graded granite metal coarse aggregates @0.69cum and fine aggregates @ 0.46cum, with superplastisiser @31ts confirming to 189103-1999 Reaffirmed-2008 including cost of materials, labour, HOM curing, form works, scaffolding and centering complete as per specifications. - i) Upto 5m height Cum 227 28.7.9 5233.00 3.20 46.00 147.20 5380.20 322.81 5703.01
6 KSRRB M2200-6 : Supplying, fitting and placing TMT bar reinforcement in sub structure complete as per drawing and technical specification complete as per specifications. MORTH Specification No. 1600 & 2200. (S.R.2018-19 Page No. 229, I.No. 28.8.2) Tonne 229 28.8.2 67543.00 1.050 -5123.00 -5379.15 62163.85 3729.83 65893.68
7 KSRRB M2200-8.1. Back filling behind abutment, wing wall and return wall complete as per drawing and Technical Specification including cost of materials, labour, HOM of machineries, complete as per specifications. A. Granular material MORTH Specification No. 2204 & 304 (S.R.2018-19 Page No. 229, I.No. 28.11) Cum 229 28.11 845.00 845.00 50.70 895.70
8 Fabricating, supplying & erecting M.S. Angular Truss for all spans as per approved designs and drawing. The entire truss is anchored suitably by using 4 Nos. of M.S. anchor bolts at each support, with base plate and shoe plate. The work includes cutting, straightening, placing in position of M.S angle and welding wherever necessary, and applying one coat of red oxide primer coat to all the members including cost of all materials, labour charges, & hire charges of machineries for cutting, welding, grinding & erection equipments, etc., complete as per specification (P.no.43, I.no.7.30) Kgs 43 7.29 128.00 128.00 7.68 135.68
9 KSRRB M2500-4.1. Providing and laying Pitching stones of size 0.3x0.3x0.3 m on slopes laid over prepared filter media including boulder apron laid dry in front of toe of embankment complete as per drawing and Technical specifications including cost of materials, labour, HOM complete as per specifications. A. Stone I Boulder MORTH Specification No. 2504 Cum 241 30.5 1613.00 1613.00 96.78 1709.78
Assistant Executive Engineer, PWD,Dept.Sub-Dn.,Belagavi Executive Engineer, PWD.Dept. Belagavi Dn Belagavi
Sub Estimate for Box Culvert
Width Height Vents/Cells CW STEEL DENSITY
Box Width, a 4.00
End Walls, f 0.40 2
Middle Walls, g 0.40 1
Top Slab, d 0.40
Bottom Slab, e 0.45
Extra offset, c 0.45
BAR BENDING SCHEDULE
Nos Shape Of Bars Bar dia, mm Spacing M1, mm M2, mm Length, mm No of Bars Total Length, m UNIT WT (KG) Wieght, Kgs
Total steel, Kgs 13946.7
Total steel for single group, Tonne 13.95
Total Steel for 1 groups,Tonne 13.95 13946.67
TOTAL CONCRETE QUANTITY
SL.NO. COMPONENTS NO'S L B D QUANTITY (CUM)
5 KEY WALL (RECTANGULAR PORTION) 2 9.20 0.75 0.3 4.14
6 KEY WALL (TRIANGLE PORTION) 2 9.20 0.28125 5.18
7 HAUNCH(TRIANGLE PORTION) 8 10.00 0.01125 0.9
8 Brackets Square Portion 2 10.00 0.3 0.3 1.8
9 Brackets Triangle Portion 2 10.00 0.045 0.9
Total quantity of concret (CUM) for single group 125.17
No of group 2 111.4218263
Total Quantity of Concrete (Cum) for 2 group 250.34
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
RECAPULATION SHEET KPPP
1 Estimate of Protection Wall Rs. 0 770
2 QA/Plantation 1 percent 75,291.77 75,295.36
3 Consultancy+ DPR ( 1.0%+18%gst) Rs. 88,844.29 88,848.52
4 Tender Premium 5% Rs. 444,221.44 444,242.60
5 Misc. Rounding off , Consultancy Charges Rs. 7,213.64 6,761.62 -452.02
IN LAKHS Rs. 95.00 0.00
Assistant Executive Engineer, PWD.Sub-Dn, Bailhongal Executive Engineer, PWD, Dn Belagavi
Width Curtain Wall
Approach Slab length #REF! 3.00 X 3.00 B D
Wing Wall CD Size 3 x 3 Vent M-10 0.9 0.15
Sides 4.0 Road Width 10 m M-20 0.6 0.3
Length 3.0 Width 3.00 m 2 M-20 0.3 0.6
Length 384 H 1 1.0 Height 3.00 m Sides 4
Protection Wall H2 3.47 PCC Thk & off 0.15 m Curtian Wall / App slab Length 3
5 Top Width Bottom Width Ht Width 1 Low End 0.5 Nos Bot 0.45 m App slab Thickness 0.3
6 Top Rectangal Portion 0.30 0.30 0.80 Width 2Low End 0.85 2 End Sides 0.42 m M-15 0.15
7 Triangle Portion 0.00 0.68 0.80 1 Middle Sides 0.35
Bottom Rectangal Portion 0.68 0.68 0.60 Width 1 High End 0.5 0.745 Slab 0.47 m
Bottom Triangle Portion 0.00 0.40 0.40 Width 2 High End 1.13 No 1
Extra Bottom width 0.3 m
M15 offset 0.10 m
Under Box Curtain Wall
Return Wall BOX CULVERT: 2 V, (4 m x 2.5 m) Approach Slab 3.00 Curtain Wall D/S
Length 23 Width Road Width 10.00 Thickness 0.30 Ht Width offset
M-15 0.15 Box Width 4.00 Vent 2 Levelling Course M-15 0.150 M-15 Thick 0.150 1.200 0.100 0.15
2.85 Up to GL 0.02 0.30 Box Ht 2.50 Footing 1st 0.450 0.900 0.200
Above GL 2.900 0.38 End Walls (F) 0.400 No Of Walls 2 Footing 2nd 0.600 0.400 0.250
Base Slab 0.38 2.60 Middle Walls (g) 0.400 1 Length D width Footing 3rd 0.450 0.300 0.300
Murrum 0.30 Top Slab (d) 0.400 Excavation Depth 1.35 Floor Apron D/S 4 0.45 10.40 Wall 0.380 0.050 0.125
2.92 Murrum Off 0.30 Bottom Slab, e 0.450 Floor Apron U/S 3 0.45 10.40 Curtain Wall U/S
2.54 Murrum Offset 0.30 Flexible Apron D/S 0 0.45 10.40 Ht Width offest
M-15 Offset 0.15 Flexible Apron U/S 0 0.45 10.40 M-15 Thick 0.150 1.200 0.100 0.3
Curtain Wall PCC Thick 0.15 . Footing 1st 0.300 0.600
Width 0.25 Extra offset 0.45 Wall 0.450 0.300 0.050
M-15 0.15 Murrum 0.45
Depth of the Top Slab (d)
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District. Depth of the Bottom Slab (e)
Estimate of Box Culvert: 2 V, (4 m x 2.5 m) Depth of the Outer Vertical Slab (f)
ch.no. nala Depth of the Inner Vertical Slab (g)
SN Description of Work Unit Box No L B D Qty Rate Amount
1 Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts and lead MORTH Specification 202.
(I) Lime /Cement Concrete (ii). By Mechanical means A. Cement Concrete Grade M-15 & M-20
2 Mechanical Means: -In all kinds of soils Depth upto 3m Earth work excavation for Foundation by mechanical means for all works & depth upto 3 m, as per drawing and technical specifications, including setting out, shoring, strutting, barricading, caution lights, including dressing of excavated surfaces, disposing off or levelling the excavated earth or sorting & stacking the selected earth for reuse in a radius of 50 m and lift upto 1.5 m including cost of labour, tools, usage of machinery & other appurtenaces required to complete the work
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:8, Item No:1.14.1
Retaining wall 4 23.00 2.90 0.85 226.78
cuttoff Wall/shear key 2 10.40 1.00 0.70 14.56
Floor Apron D/S 1 4.00 10.40 0.45 18.72
Floor Apron U/S 1 3.00 10.40 0.45 14.04
Flexible Apron D/S 1 0.00 10.40 0.45 0.00
Flexible Apron U/S 1 0.00 10.40 0.45 0.00 2.20
Curtain Wall Type-1 1 18.40 1.20 1.80 39.74
Curtain Wall Type-2 1 16.40 1.20 1.35 26.57
Nala triming - U/S 2 10.00 2.00 2.00 80.00
3 Providing and Filling in foundation with granite / trap broken metal 100mm and down size with approved M-Sand including hand packing, ramming, watering including cost of all materials and labour with all lead and lift complete as per specifications. CHECK OR REMOVE
PWD Schedule of Rates 2023-2024 Vol No.4, Page No:64, Item No:A130A
Retaining wall 4 23.00 2.90 0.30 80.04
Curtain Wall Type-1 1 18.40 1.20 0.30 6.62
Curtain Wall Type-2 1 16.40 1.20 0.30 5.90
Floor Apron D/S 1 4.00 10.40 0.30 12.48
Flexible Apron U/S 1 3.00 10.40 0.30 9.36
4 Providing and laying in position plain cement concrete for levelling course for all works in foundation. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed, laid in layers not exceeding 150 mm thickness, well compacted using plate vibrators, including all lead & lifts, cost of all materials of quality, labour, Usage charges of machineries, curing, and all the other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork shall be paid separately) Mix 1:3:6 (M15) Using 40 mm nominal size graded crushed coarse aggregates
PWD Common SR 2023-24 Vol-1 Pg.No.15 It.No.2.1.4
Retaining wall 4 23.00 2.90 0.150 40.02
cuttoff Wall/shear key 2 10.40 1.00 0.150 3.12
Curtain Wall Type-1 1 18.40 0.90 0.450 7.45
Curtain Wall Type-2 1 16.40 0.60 0.300 2.95
Floor Apron D/S 1 10.40 4.00 0.250 10.40
Floor Apron U/S 1 10.40 3.00 0.250 7.80
5 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work.
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:17, Item No:2.4.3
BOX CULVERT: 2 V, (4 m x 2.5 m)
Key Slab( cutwall) 2 10.40 0.300 0.300 1.870
5a ADD FOR FORMWORK (BOX CULVER 20%)) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work.
6 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:16, Item No:2.3.2
Retaining wall Raft 4 23.00 2.60 0.380 90.90
Retaining wall -stem 4 23.00 0.340 2.920 91.34
6a ADD FOR FORMWORK (Retaining Wall-10%) Cum 182.24 637.10 116,105.10
7 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work.
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:17, Item No: 2.4.3
BOX CULVERT: 2 V, (4 m x 2.5 m)
Haunch Portion (0.50x0.3x0.3) 8 10.00 0.045 3.600
STEPS MAINTANCE 1 1 5.00 1.000 0.200 1.000
7a ADD FOR FORMWORK (SLABS -20%) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work.
8 Providing and laying in position Reinforced cement concrete for all Super structures of building , Road works, Water works, Irrigation works & super structure works of bridges upto 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers laid in layers, well compacted using needle vibrators. The cost includes all lead & lifts, cost of all materials, quality confirming to the requirements of relevant IS codes , labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement, dowel bars & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates.
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:17, Item No:2.5.2
BOX CULVERT: 2 V, (4 m x 2.5 m)
8a ADD FOR FORMWORK (SLABS -20%) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work.
9 Supplying, Fitting and Placing TMT Fe550 bar Reinforcement in sub-structure complete as per Drawing and Technical Specifications. MORTH Specification No. 1600 & 2200. AS PER DEISGN
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:99, Item No:13.1
AS PER CALCULATION SHEET 22.96 0.00
cuttoff Wall/shear key 1 3.12 0.01 0.03
Curtain wall 1 39.93 0.00 0.00
10 Supplying fitting & placing TMT Fe550 bar reinforcement to super-structure complete as per Specifications MORTH Specification No. 1600. AS PER DEISGN 27.22
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.1 22.99
AS PER CALCULATION SHEET 4.23 4.23
SLAB t 1 4.23 87532.00 369,922.95 AS PER DEISGN 27.22
11 PCC M15 Grade leveling course below approach slab complete as per drawing and Technical specification MORTH Specification No. 2700
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.9 27.22
Below Approach Slab 2 3.00 10.00 0.150 9.00
12 Reinforced cement concrete M30 grade for approach slab including reinforcement and formwork complete as per drawing and Technical specification (Batching Plant). MORTH Specification No. 1500,1600 1700 & 2704.
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:104, Item No:14.1
For Approach slab 2 3.00 10.00 0.30 18.00
13 Providing and laying Cement concrete wearing coat M-30 grade including reinforcement complete as per drawing and Technical Specifications. (Batching Plant) MORTH Specification No. 2702
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.3
For Approach slab 0 3.00 10.00 0.075 0.00 CHECK
14 Back filling behind abutment, wing wall and return wall complete including compaction as per drawing and Technical Specification A. Granular materialc Reference to MORTH Specification No. 710.1.4 of IRC:78 & 2200
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:99, Item No:13.5
Retaining wall and abutmrnt back side 2 10.00 2.00 2.92 116.80
Curtain Wall Type-1 1 18.40 0.10 0.600 1.10
Curtain Wall Type-2 1 18.40 0.20 0.300 1.10
Deduct for Filter media 196.22
15 Providing and laying of Filter media with granular materials/ stone crushed aggregates satisfying the requirements laid down in clause 2504.2.2. of MORTH specifications to a thickness of not less than 600 mm with smaller size towards the soil and bigger size towards the wall and provided over the entire surface behind abutment, wing wall and return wall to the full height compacted to a firm condition complete as per drawing and Technical Specification. Reference to MORTH Spection 710.1.4 of IRC:78 and 2200
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:99, Item No:13.7
Behind walls 2 10.00 0.60 2.92 35.04
Behind Retaining wall 4 23.00 0.60 2.92 161.18
16 Construction of RCC railing of M30 Grade in-situ with 20 mm nominal size aggregate, true to line and grade, tolerance of vertical RCC post not to exceed 1 in 500, centre to centre spacing between vertical post not to exceed 2000 mm, leaving adequate space between vertical post for expansion, complete as per approved drawings and technical specifications. MORTH Specification No.2703,1500,1600and 1700.
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.6
17 Providing and laying boulders apron on river bed for protection against scour with stone boulders weighing not less than 40kg each complete as per drawing and Technical specification. A. Boulder Laid Dry Without Wire Crates. MORTH Specification No. 2503
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:111, Item No:16.1
Flexible Apron D/S 1 0.00 10.40 0.45 0.00
Flexible Apron U/S 1 0.00 10.40 0.45 0.00
18 Providing and laying of apron with cement concrete blocks of size 0.3x0.3x0.3 m cast in-situ and made with nominal mix of M-15 grade cement concrete with a minimum cement content of 250 kg/m3 as per IRC: 21-2000. MORTH Specification No.2503.
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:111, Item No:16.3
Floor Apron D/S 1 4.00 10.40 0.00 0.00
Floor Apron U/S 1 3.00 10.40 0.00 0.00
17 Filler Joint (ii) Providing & fixing 20 mm thick compressible fibre board in expansion joint complete as per drawing & Technical Specification.
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:105, Item No:14.16
18 Drainage Spouts using 100 mm GI pipe complete as per drawing and Technical specificationMORTH Specification No. 2705
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.8
19 Providing weep holes in Brick masonry/Plain/ Reinforced concrete abutment, wing wall/ return wall with 100 mm dia AC pipe, extending through the full width of the structure with slope of 1V :20H towards drawing foce. Complete as per drawing and Technical Specifications -2706 & 2200
Assistant Executive Engineer, PWD.Sub-Dn, Bailhongal Executive Engineer, PWD, Dn Belagavi
Sub Estimate for Service Road
GSB GSB WMM DBM/BC Road width Built Slope Open Slope
#REF! 23.0 19.6 19.0 19.0 23.00 0.0 1.5 Widening Shoulder adj to each Layer Reconstruction
Sl.No From To Type Chainage Side Slope Length CBR Eff CBR with 500 Subgrade Road width GSB WMM BM / SDBC Side Slope Existing Crust Extra Crust Required Proposed Crust Total Thickness (m) Subgrade Bottom Width (m) Subgrade Widening (m) Subgrade Centre Width (m) GSB C/C Full Width (m) GSB Carriage Width C/C (m) WMM C/C (m) DBM & BC (m) Shoulder adj to GSB (C/C) Shoulder adj to WMM (C/C) Shoulder adj to BT (C/C) paved Shoulder Median Subgrade Bottom Width (m) Subgrade Widening Width (m) Subgrade Centre Width (m) GSB C/C Full Width (m) GSB Carriage Width C/C (m) WMM C/C (m) DBM & BC (m)
Avg Crust Subgrade GSB WMM/WBM Asphalt Subgrade CBR not less than 10 Subgrade Widening Subgrade Full width Granular sub base WMM, m DLC, m BM, m SDBC, m PQC, m
Proposed Existing BT Gravel Existing Median GSB Total Thickness (m) GSB Full Width Thickness (m) GSB Carriage Width Thicknes (m)
Construction of Bridge on KM 48.85 near Wadarhatti on Sankeshwar Sangam Road SH44, Gokak Taluk, Belagavi District.
ESTIMATE FOR DIVERSION WORK
ABSTRACT AND MEASUREMENTS
SN Description of Work Unit No L B D Quantity Rate Amount
Deduction for voids 40% 40% -120
Ha 0.05 #REF! #REF!
2 KSRRB M200-6.1 Cutting of trees girth from 300mm to 600mm including cutting of trunks, branches and removal of stumps stacking of serviceable materials with all lifts and upto a lead of 1000 metres and earth filling in the depressions / pit, complete as per specifications. for 600 to 900 mm
PWD SR 2016-17 Dharwad Circle I.No 18.7. P.No.136
i) Girth from 300 mm to 600mm Each 10 10 0.00 0.00 6632
3 KSRRB M200-32. Removal of Telephone / Electric poles including excavation and dismantling of foundation concrete and lines under the supervision of concerned department, disposal with all lifts and up to a lead of 1000 metres and stacking the serviceable and unserviceable material separately complete as per specifications.
PWD SR 2016-17 Dharwad Circle I.No 18.57. P.No.139
4 KSRRB M 300-11.Excavation for roadways in all type of soil by mechanical means including cutting and pushing the earth to site of embankment including trimmimg bottom and side slopes in accordance wih requirements of lines, grades and cross sections complete as per specification.
PWD SR 2016-17 Dharwad Circle I.No 19.11. P.No.143
From Cut Fill Statement-Cutting quantity
Sub Total 265.27
Total Cum 265.27 0.00 0.00
5 KSRRB M300-54. Construction of embankment with approved material deposited at site from roadway cutting and excavation from drain and foundation of other structures graded and compacted to meet requirement of Table 300-2 complete as per specifications. which includes , watering charges & compaction by vibratory roller.
PWD SR 2016-17 Dharwad Circle I.No 19.61. P.No.148
Quantity from barrow statement (S.No 10)
Total Cum 300.00 #REF! #REF!
Total Cum 76.50 #REF! #REF!
3 KSRRB M400-6.2. Construction of granular sub-base by providing close graded material, spreading in uniform layers with motor grader on prepared surface, mixing by mix in place method with rotavator at OMC, and compacting with vibratory power roller to achieve the desired density, complete as per specifications. B.By Mix in Place Method . For Grading II Material
PWD SR 2016-17 Dharwad Circle I.No 20.5.2. P.No.155
For Approach roads Avg
4 KSRRB M400-17. Providing, laying, spreading and compacting graded stones aggregate to wet mix macadam specifications including pre mixing the material with water at OMC in mechanical mix plant carriage of mixed method of tipper to site, laying in uniforms layers with paver in sub-base/base course on well prepared surface and compacting with vibratory roller to achieve the desired density complete as per specifications.
PWD SR 2016-17 Dharwad Circle I.No 20.18. P.No.158
For Approach roads Avg
5 KSRRB M500-6. Providing and applying primer coat with S.S.bitumen emulsion on prepared surface of granular base such as WBM, WMM including clearing of road surface and spraying primer at the rate of 0.60 kg / sqm using mechanical means complete as per specifications.
PWD SR 2016-17 Dharwad Circle I.No 21.6. P.No.161
For Approach roads
6 KSRRB M500-10. Tack Coat:- Providing and applying tack coat using 80/100 grade bitumem(VG 10) in boiler fitted with spray set distributer at the rate of 0.2 kg/sqm on primed surfaces cleaned with mechanical broom, complete as per specifications.
PWD SR 2016-17 Dharwad Circle I.No 21.10.2. P.No.162
PWP & IWT 2015-16 N H Dharwad Circle I.No 8.02. A P.No 75 1.475
Between Drain & Shoulder 0 3000.00 0.00
PWP & IWT 2015-16 N H Dharwad Circle I.No 4.13. P.No 35, MORTH 407
Material Filling in median 0 0.00 1.00 0.20 0.00
For Islands area
7 KSRRB M500-11. Providing and laying bituminous macadam on prepared surface with crushed coarse aggregates as per design mix formula for base / binding course including loading of aggregates with F.E. loader,hot mixing of stone aggregates and bitumen in hot mix plant ,transporting the mixed material in tipper to paver and laying mixed materials with paver finisher to the required level and grade ,rolling by power roller to achieve the desired density,but excluding cost of primer /tack coat including lead,lift and cost of all materials,labour,HOM of machineries complete as per specifications. using 100/120 TPH capacity H.M.P. with sensor paver Gr-II (50mm to 75mm) with 3.3% VG-30 Bitumen.
PWD SR 2016-17 Dharwad Circle I.No 21.11.2. P.No.162
For Approach Roads
Total Cum 846.75 0.00 0.00
8 KSRRB M500-18. Providing and laying semi dense bituminous concrete using crushed aggegates of specified grading, premixed with bituminous binder and filler, transporting the hot mix to work site, laying with a paver finisher to the required grade, level and alignment, rolling with smooth wheeled, vibratory and tandem rollers to achieve the desired compaction as per MORTH table 508 complete in all respects complete as per specifications. using 100/120 TPH capacity H.M.P. with Sensor Paver Gr-II (25mm TO 30mm) with 5% VG-30 Bitumen.
PWD SR 2016-17 Dharwad Circle I.No 21.20.2. P.No.163
For Approach Roads
22 Earth work excavation for foundation structures as per drawing and technical specification, inlcuding setting out, constructionn of shoring and bracing, removal of stumps and other deleterious matter, dressing of sides and bottom, backfilling the excavation earth to the extent required and utilising the remaining earth locally for road work including all lead, lifts, labour, spreading etc., complete. Up to 3 m
PWP & IWT 2015-16 N H Dharwad Circle I.No 3.13.ii B P.No.16
excavation for street light cum 0 0.30 0.30 0.60 0.00 35.50 0.00
23 Providing & laying Plain / Reinforced Cement Concrete M 15 [1:2:4] in open foundaton using Granite/Basalt/Trap crushed stone aggregate 20 mm nominal size, clean seived approved sand, mechanically mixed in concrete mixer, placed in foundation and compacted by vibrator, curing for 14 days, including cost of all materials, labour, hire charges of machinery, loading, unloading, lead lift, transporting etc., complete
PWP & IWT 2015-16 N H Dharwad Circle I.No 9.04 P.No 96
for pole foundation 0 0.30 0.30 0.60 0.00 5320.32 0.00
24 Street Lighting Providing and erecting street light mounted on a steel circular hollow pole of standard specifications for street lighting, 9 m high spaced 40 m apart, 1.8 m overhang on both sides if fixed in the median and on one side if fixed on the footpath, fitted with sodium vapour lamp 70 Watts and fixed firmly in concrete foundation including cost of all materials, labour, loading, unloading, lead, lift, transporting etc., complete. For fixing in Median
PWP & IWT 2015-16 N H Dharwad Circle I.No 8.27.i. P.No 86
PWP & IWT 2015-16 N H Dharwad Circle I.No 8.27.ii. P.No 86
No of street lights 0 12249.00 0.00
#REF! Painting Two Coats on New Concrete Surfaces Painting two coats after filling the surface with synthetic enamel paint in all shades on new plastered concrete surfaces, including cost of all materials, labour, loading, unloading, lead, lift, transporting etc., complete
PWP & IWT 2015-16 N H Dharwad Circle I.No 8.08. P.No 79 (MORTH 803)
Between Drain & Shoulder 0 3000.00 0.020 0.00
Deduction of length for junctions (30%) 0 0.00 0.020 0.00
PWP & IWT 2015-16 N H Dharwad Circle I.No 8.20. P.No 83 (MORTH 808)
Between Drain and CW 0 3000.00 0.00
Provision for Opening (40%) 0 1200.00 0.00
9 KSRRB M800-4. Direction and Place Identification Signs with size more than 0.9 sqm Size Board: Providing and erecting direction and place identification retro-reflectorised sign as per IRC 67 made of high intensity grade sheeting vide clause 800.1.3, fixed over aluminium sheeting 2 mm thick with area exceeding 0.9 sqm supported on a mild steel angle iron post 75 mm x 75 mm x 6 mm, 2 Nos, firmly fixed to the ground by means of properly designed foundation with M-15 grade cement concrete 45cm x 45 cm x 60 cm 60 cm below ground level as per approved drawing complete as per specifications. Using Type IV sheeting.
PWD SR 2016-17 Dharwad Circle I.No 24.4. P.No.183
2 Legged junctions 2 2 0.75 0.75 2.25 Villages Cross
10 KSSRB M800-2- Retro-Reflectorised Traffic Signs: Providing and fixing of retro-reflectorised cautionary mandatory, and informatory sign as per IRC 67 made of high intensity grade sheeting vide clause 800.1.3, fixed over Aluminium sheeting, 1.5 mm thick supported on a mild steel angle iron post 75 mm x 75mm x 6 mm firmly fixed to the ground by means of properly designed foundation with M15 grade cement concrete 45 cm x 45 cm x 60 cm 60 cm below ground level as per approved drawing complete as per specifications. MORTH Specification No. 801.
PWD SR 2016-17 Dharwad Circle I.No.24.2.1. P.No.182
For 90 cm equilateral triangle Each 4 0.00 0.00
For 60 cm equilateral triangle Each 0 3771.00 0.00
PWD SR 2016-17 Dharwad Circle I.No 24.2.3. P.No.182
For 60 cm circular Each 3 0.00 0.00
For 80 cm x 60 cm rectangular Each 0 5732.00 0.00
For 60 cm x 45 cm rectangular Each 0 4461.00 0.00
For 60 cm x 60 cm square Each 0 5006.00 0.00
PWD SR 2016-17 Dharwad Circle I.No 24.2.6. P.No.182
For 90 cm high octagon Each 4 0.00 0.00 0.00
11 KSRRB M800-13.Road Marking with Hot Applied Thermoplastic Compound with Reflectorising Glass Beads on Bituminous Surface:- Providing and laying of hot applied thermoplastic compound 2.5 mm thick including reflectorising glass beads at 250 gms per sqm area, thickness of 2.5 mm is exclusive of surface applied glass beads as per IRC:35. The finished surface to be level, uniform and free from streaks and holes complete as per specifications.
PWD SR 2016-17 Dharwad Circle I.No 24.15. P.No.185
For Centre line (3 m length)
Shoulder Edge Marking 100% 0 3000 0.10 0.00
For approach roads
Shoulder Edge Marking
12 KSRRB-M-800-11-1.Painting lines, dashes, arrows etc., on Roads in two coats on new work: painting lines, dashes, arrows etc on roads in two coats on new work with ready mixed road marking paint conforming to IS:164 on bituminous surface, including cleaning the surface of all dirt, dust and other foreign matter, demarcation at site and traffic control complete as per specifications. i) Over 10cm in width. MORTHN Specification No 803
PWD SR 2016-17 Dharwad Circle I.No 24.11. P.No.184
at Junctions As per IRC 35 (P No 34)
Left right strip 4 0 3.5 0.75 0.00
Straight strip 2 0 3.5 0.5 0.00
13 KSRRB M800-14.3. Reinforced cement concrete M-15 Grade kilometre stone of standard design as per IRC:8-1980, fixing in position including painting and printing etc complete as per specifications. including additional M-15 concrete pedestal of 0.2mt. height above G.L. MORTH Specification No. 804
PWD SR 2016-17 Dharwad Circle I.No 24.175. P.No.184
Ordinary kilometer stone (precast). Each 2 2 0.00 0.00
KSRRB M800-14.3. Reinforced cement concrete M-15 Grade 5th kilometre stone of standard design as per IRC:8-1980, fixing in position including painting and printing etc complete as per specifications. including additional M-15 concrete pedestal of 0.2mt. height above G.L. MORTH Specification No. 804
PWD SR 2016-17 Dharwad Circle I.No 24.16 P.No.185 Each 1 1 0.00 0.00
KSRRB M800-14.3. Reinforced cement concrete M-15 Grade Hectometer stone of standard design as per IRC:8-1980, fixing in position including painting and printing etc complete as per specifications. including additional M-15 concrete pedestal of 0.2mt. height above G.L. MORTH Specification No. 804
Hectometer stone (precast) Each 12 12 0.00 0.00
14 Supplying and fixing in position new guard stones of granite/trap/sand stone/shahabad roughly dressed, of size 700mm x 200mm x 200mm including excavation, painting with white and black paint 15cm wide strip alternatively etc., complete.
PWD SR 2016-17 Dharwad Circle I.No 24.50. P.No.191 Each Side Nos
6 culverts Each 6 4 10 240 0.00 0.00
15 KSSRB-M-800-15.Road Delineators: Supplying and installation of delineators (road way indicators, hazard markers, object markers), 80-100cm high above ground level, painted black and white in 15cm wide strips, fitted with 80x100mm rectangular or 75mm dia circluar reflectorised panels at the top, buried or pressed into the ground and conforming to IRC: 79 and the drawings complete as per specifications. MORTH Specification No 805
PWD SR 2016-17 Dharwad Circle I.No 24.19. P.No.185
LAYOUT LIMITS 0 5 30 0
For culverts 30
For Junctions 28
Rmtr 4 10.00 80.00 #REF! #REF!
Total #REF! 0.21
Grand Total #REF!
Width Curtain Wall
Approach Slab length #REF! 3.00 X 3.00 B D
Wing Wall CD Size 3 x 3 Vent M-10 0.9 0.15
Sides 4.0 Road Width 20 m M-20 0.6 0.3
Length 3.0 Width 3.00 m 2 M-20 0.3 0.6
Length 278 H 1 1.0 Height 3.00 m Sides 4
Protection Wall H2 3.47 PCC Thk & off 0.15 m Curtian Wall / App slab Length 3
5 Top Width Bottom Width Ht Width 1 Low End 0.5 Nos Bot 0.45 m App slab Thickness 0.3
6 Top Rectangal Portion 0.30 0.30 0.80 Width 2Low End 0.85 2 End Sides 0.42 m M-15 0.15
7 Triangle Portion 0.00 0.68 0.80 1 Middle Sides 0.35
Bottom Rectangal Portion 0.68 0.68 0.80 Width 1 High End 0.5 0.745 Slab 0.47 m
Bottom Triangle Portion 0.00 0.40 0.80 Width 2 High End 1.13 No 1
Extra Bottom width 0.3 m
M15 offset 0.10 m
Under Box Curtain Wall
Return Wall BOX CULVERT: 1 V, (3 m x 2.5 m) Approach Slab 3.50 Curtain Wall D/S
Length 3.5 Width Road Width 10.00 Thickness 0.30 Ht Width offset
M-15 0.15 Box Width 3.00 Vent 1 Levelling Course M-15 0.150 M-15 Thick 0.150 1.850 0.100
Up to GL 1.12 0.30 Box Ht 2.50 Footing 1st 0.550 1.650
Above GL 2.900 0.38 End Walls (F) 0.400 No Of Walls 2 Footing 2nd 0.750 0.750 0.450
Base Slab 0.38 2.60 Middle Walls (g) 0.40 0 Length D width Footing 3rd 0.750 0.450 0.150
Murrum 0.30 Top Slab (d) 0.40 Excavation Depth 1.20 Floor Apron D/S 0 0.45 3.80 Wall 0.450 0.200 0.125
4.02 Murrum Off 0.10 Bottom Slab, e 0.45 Floor Apron U/S 0 0.45 3.80 Curtain Wall U/S
3.64 Murrum Offset 0.30 Flexible Apron D/S 0 0.75 3.80 Ht Width offest
M-15 Offset 0.15 Flexible Apron U/S 0 0.75 3.80 M-15 Thick 0.150 1.500 0.100
Curtain Wall PCC Thick 0.15 Footing 1st 0.800 1.300
Width 0.25 Extra offset 0.50 Wall 0.450 0.200 0.125
M-15 0.15 Murrum 0.30
Depth of the Top Slab (d)
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District. Depth of the Bottom Slab (e)
Esimate of Protection Wall Depth of the Outer Vertical Slab (f)
Depth of the Inner Vertical Slab (g)
SN Description of Work Unit Box No L B D Qty Rate Amount
Existing CD (Head wall) 0 2 7.50 0.65 2.00 0.00
Deduction for Vents (0.90M Dia) 0 1 0.64 0.00
#REF! 0.00 #REF! #REF!
Retaining wall 0 3.50 2.60 1.90 0.00
Protection Wall 2 278.00 1.80 1.15 1150.92
#REF! 1 1150.92 #REF! #REF!
2 #REF! ADD BULDER SOILING AT BELOW PCC
Protection Wall 2 278.00 2.10 0.35 408.66
#REF! 1 408.66 #REF! #REF!
Retaining wall 0 3.50 2.60 0.15 0.00
Protection Wall 2 278.00 1.80 0.15 150.12
Side Slop Protection 2 278.00 2.00 0.075 83.40
Curtain Wall Type-1 0 5.10 1.85 0.15 0.00
Curtain Wall Type-2 0 5.10 1.50 0.15 0.00
#REF! 1 233.52 #REF! #REF!
BOX CULVERT: 1 V, (3 m x 2.5 m)
Retaining wall Raft 0 3.5 2.60 0.38 0.00
#REF! 1 250.20 #REF! #REF!
BOX CULVERT: 1 V, (3 m x 2.5 m)
Middle Sides 0 10.0 2.50 0.40 0.00
Retaining wall 0 3.5 4.02000 0.34 0.00
Protection Wall 2 278.0 2.00 0.27 294.68
#REF! 1 294.68 #REF! #REF!
BOX CULVERT: 1 V, (3 m x 2.5 m)
#REF! 1 0.00 #REF! #REF!
6 #REF! AS PER DESIGN
Protection Wall AS PER CALCULATION SHEET #REF!
Curtain wall 1 0.00 0.08 0.00
#REF! 1 #REF! #REF! #REF!
#REF! 1 0.00 #REF! #REF!
Below Approach Slab #REF! 0 3.50 10.00 0.150 0.00
1 0.00 #REF! #REF!
For Approach slab 0 3.50 10.00 0.30 0.00
#REF! 1 0.00 #REF! #REF!
For Approach slab 0 3.50 10.00 0.075 0.00
#REF! 1 0.00 #REF! #REF!
Retaining wall and abutmrnt back side 0 10.00 3.5 4.020 0.00
Deduct for Filter media 667.20
Cum 1 -667.20 #REF! #REF!
7 #REF! CHECK HIEGHT
Behind walls 0 10.00 0.60 2.90 0.00
Behind Retaining wall 0 3.50 0.60 4.02 0.00
Behind Protection Wall 2 278.00 0.60 2.00 667.20
#REF! 1 667.20 #REF! #REF!
Behind end walls 0 2.00 7.00 0.00
Behind retaining wall 0 2.00 2.34 0.00
Behind Protection Wall 2 185.33 0.27 98.23
1 98.23 #REF! #REF!
1 0.00 #REF! #REF!
Side Slop Protection 2 278.00 2.00 0.075 83.40
#REF! 1 83.40 #REF! #REF!
Floor Apron D/S 1 0.00 3.80 0.45 0.00
Floor Apron U/S 1 0.00 3.80 0.45 0.00
#REF! 1 0.00 #REF! #REF!
Assistant Executive Engineer, PWD,Dept.Sub-Dn.,Belagavi Executive Engineer, PWD.Dept. Belagavi Dn Belagavi
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti MDR in Bailhongal Taluka of Belagavi District
RATE ANALYSIS FOR BRIDGE
SL. No Description of Work Vol No. Page No Item No Per Basic Rate (Rs.) Total Rate ( Rs.) Additional Over-Head Charges AW ( Rs.) % of Finished Rate of Conc. G. Total Rate ( Rs.) For Eath Work and Concrete Works considered from Vol-I Common Sr with necessary Overheads to be added in the rate analysis.
Mat Const AMOUNT
1 Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts and lead MORTH Specification 202. 3 10 2.7(A) Cum 785.00 785.00 - 0.00 - 785.00
(I) Lime /Cement Concrete (ii). By Mechanical means A. Cement Concrete Grade M-15 & M-20
Vol No.3, Page No:10, Item No:2.7(A)
2 Dismantling of existing structures like culverts, bridges, retaining walls and other structure comprising of masonry, cement concrete, wood work, steel work, including T&P and scaffolding wherever necessary, sorting the dismantled material, disposal of unserviceable material and stacking the serviceable material with all lifts and lead MORTH Specification 202. 3 8 2.10 Cum 481.00 481.00 - 14.43 - 495.43
(IV) Dismantling Stone Masonry B. Rubble Sotne masonry In Cement Mortar.
Vol No.3, Page No:8, Item No:2.1
3 Removing all type of Hume Pipes and Stacking including Earthwork and Dismantling of Masonry Works. C. Above 900 mm dia. 3 9 2.17 Rmtr 1026.00 1026.00 - 30.78 - 1056.78
Vol No.3, Page No:9, Item No:2.17
2 Mechanical Means: -In all kinds of soils Depth upto 3m Earth work excavation for Foundation by mechanical means for all works & depth upto 3 m, as per drawing and technical specifications, including setting out, shoring, strutting, barricading, caution lights, including dressing of excavated surfaces, disposing off or levelling the excavated earth or sorting & stacking the selected earth for reuse in a radius of 50 m and lift upto 1.5 m including cost of labour, tools, usage of machinery & other appurtenaces required to complete the work 1 8 1.14.1 Cum 102.00 102.00 9.27 0.000 - 111.27
Vol No.1, Page No:8, Item No:1.14.1 134.10
3 Providing and Filling in foundation with granite / trap broken metal 100mm and down size with approved M-Sand including hand packing, ramming, watering including cost of all materials and labour with all lead and lift complete as per specifications. 1 11 1.23 Cum 2682.00 2682.00 0.000 2682.00
Vol No.1, Page No:11, Item No:1.23
4 Providing and laying in position plain cement concrete for levelling course for all works in foundation. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed, laid in layers not exceeding 150 mm thickness, well compacted using plate vibrators, including all lead & lifts, cost of all materials of quality, labour, Usage charges of machineries, curing, and all the other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork shall be paid separately) Mix 1:3:6 (M15) Using 40 mm nominal size graded crushed coarse aggregates 1 15 2.1.3 Cum 5918 5918 537.95 0.000 6455.95
PWD Common SR 2021-22 Vol-1 Pg.No.15 It.No.2.1 .3
5 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work. 1 16 2. 4. 3 Cum 6227 6227.00 566.03 0.000 6793.03 1245.40
PWD Common SR 2023-24 Vol-1 Pg.No.17 It.No.(2.4.3)
5a ADD FOR FORMWORK (BOX CULVERT 4%)) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work. 1 111 Cum 6227.00 ADD BOX CULVERT-4% FOR FORMWORK 249.08 249.08 0.000 249.08
6 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates 1 16 2.3.2 Cum 6371 6371.00 579.12 0.000 6950.12
PWD Schedule of Rates 2023-2024 Vol No.1, Page No:16, Item No:2.3.2
6a ADD FOR FORMWORK (Retaining Wall-10%) 1 112 Cum 6371.00 ADD BOX CULVERT-10% FOR FORMWORK 637.1 637.10 0.000 637.10
7 Providing and laying in position Reinforced cement concrete for all Sub structures of building, Irrigation works, Sub structure works of bridges, Drain works & other parallel works from 0.50m to 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers, laid in layers, well compacted using needle vibrators, providing weep holes wherever necesary, including all lead & lifts, cost of all materials of quality, confirming to the requirements of relevant IS codes, labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work. 1 16 2.4.3 Cum 6227.00 6227.00 566.03 0.000 6793.03
Vol No.1, Page No:16, Item No:2.4.3
7a ADD FOR FORMWORK (SLABS -20%) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work. Cum 6227.00 ADD BOX CULVERT-20% FOR FORMWORK 1245.4 1245.40 0.000 1245.400
8 Providing and laying in position Reinforced cement concrete for all Super structures of building , Road works, Water works, Irrigation works & super structure works of bridges upto 3.50 m height. The granite/trap/basalt crushed graded coarse aggregates and fine aggregates as per relevant IS Codes machine mixed with super plasticisers laid in layers, well compacted using needle vibrators. The cost includes all lead & lifts, cost of all materials, quality confirming to the requirements of relevant IS codes , labour, Usage charges of machinery, curing and all other appurtenances required to complete the work as per technical specifications. (The cost of steel reinforcement, dowel bars & formwork to be paid separately) M25 Design Mix Using 20 mm nominal size graded crushed coarse aggregates. 1 16 2.5.2 Cum 6734.00 6734.00 612.12 0.000 7346.12
Vol No.1, Page No:16, Item No:2.5.2
8a ADD FOR FORMWORK (SLABS -20%) including cost of all materials, labor ,HOM,l & UL, curing with all leads and lifts etc. complete as per specifications & as directed by Engineer-in-charge of the work. Cum 6734.00 ADD BOX CULVERT-20% FOR FORMWORK 1346.8 1346.80 0.000 1346.80
9 Supplying, Fitting and Placing TMT Fe550 bar Reinforcement in sub-structure complete as per Drawing and Technical Specifications. MORTH Specification No. 1600 & 2200. 1 17 2.11 b t 87305.0 87305.00 0.00 - 87305.00
Vol No.1, Page No:17, Item No:2.11 b
10 Supplying fitting & placing TMT Fe550 bar reinforcement to super-structure complete as per Specifications MORTH Specification No. 1600. 1 17 2.11 c t 87532.0 87532.00 0.00 - 87532.00
Vol No.1, Page No:17, Item No:2.11 c
11 PCC M15 Grade leveling course below approach slab complete as per drawing and Technical specification MORTH Specification No. 2700 3 121 13.8 Cum 6727.00 6727.00 0.00 6727.00
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.9
12 Reinforced cement concrete M30 grade for approach slab including reinforcement and formwork complete as per drawing and Technical specification (Batching Plant). MORTH Specification No. 1500,1600 1700 & 2704. 3 122 13.90 Cum 11201.00 11201.00 0.00 11201.00
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:104, Item No:14.1
13 Providing and laying Cement concrete wearing coat M-30 grade including reinforcement complete as per drawing and Technical Specifications. (Batching Plant) MORTH Specification No. 2702 3 125 13.2 Cum 13087.00 13087.00 0.00 - 13087.00
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:103, Item No:14.3.a
14 Back filling behind abutment, wing wall and return wall complete including compaction as per drawing and Technical Specification A. Granular materialc Reference to MORTH Specification No. 710.1.4 of IRC:78 & 2200 3 121 13.5 Cum 944.00 944.00 0.00 - 944.00
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:99, Item No:13.5.a
15 Providing and laying of Filter media with granular materials/ stone crushed aggregates satisfying the requirements laid down in clause 2504.2.2. of MORTH specifications to a thickness of not less than 600 mm with smaller size towards the soil and bigger size towards the wall and provided over the entire surface behind abutment, wing wall and return wall to the full height compacted to a firm condition complete as per drawing and Technical Specification. Reference to MORTH Spection 710.1.4 of IRC:78 and 2200 3 117 12.4 Cum 2677.00 2677.00 0.00 - 2677.00
PWD Schedule of Rates 2023-2024 Vol No.3, Page No:99, Item No:12.4
16 Construction of RCC railing of M30 Grade in-situ with 20 mm nominal size aggregate, true to line and grade, tolerance of vertical RCC post not to exceed 1 in 500, centre to centre spacing between vertical post not to exceed 2000 mm, leaving adequate space between vertical post for expansion, complete as per approved drawings and technical specifications. MORTH Specification No.2703,1500,1600and 1700. 3 121 13.5 m 2070.00 2070.00 0.00 - 2070.00
Vol No.3, Page No:121, Item No:13.5
17 Providing and laying boulders apron on river bed for protection against scour with stone boulders weighing not less than 40kg each complete as per drawing and Technical specification. A. Boulder Laid Dry Without Wire Crates. MORTH Specification No. 2503 3 111 16.1 Cum. 1637.00 1637.00 0.00 1637.00
Vol No.3, Page No:111, Item No:16.1
18 Providing and laying of apron with cement concrete blocks of size 0.3x0.3x0.3 m cast in-situ and made with nominal mix of M-15 grade cement concrete with a minimum cement content of 250 kg/m3 as per IRC: 21-2000. MORTH Specification No.2503. 3 111 16.3 Cum 6218.00 6218.00 0.00 6218.00
Vol No.3, Page No:111, Item No:16.3
17 Filler Joint (ii) Providing & fixing 20 mm thick compressible fibre board in expansion joint complete as per drawing & Technical Specification. 3 123 13.15(ii) m 137.00 137.00 0.00 137.00
Vol No.3, Page No:123, Item No:13.15(ii)
18 Drainage Spouts using 100 mm GI pipe complete as per drawing and Technical specificationMORTH Specification No. 2705 3 121 13.7 m 3271.00 3271.00 0.00 3271.00
Vol No.3, Page No:121, Item No:13.7
19 Providing weep holes in Brick masonry/Plain/ Reinforced concrete abutment, wing wall/ return wall with 100 mm dia AC pipe, extending through the full width of the structure with slope of 1V :20H towards drawing foce. Complete as per drawing and Technical Specifications -2706 & 2200 3 117 12.1 m 138.00 138.00 0.00 138.00
Vol No.3, Page No:117, Item No:12.1
Assistant Executive Engineer, PWD.Sub-Dn, Bailhongal Executive Engineer, PWD, Dn Belagavi
Box.no/vent B D Nos. Thickness
2.00 4.00 2.50 Top 1.00 0.400 No of outer wall 2
Side wall 2.00 0.400 No of inner wall 1
Steel density 7850.0 Middle wall 1.00 0.400
Bottom 1.00 0.450
Road width 10.00
Haunch 0.045 Extra offset 0.45
STEEL QUANTITY Returns
MAIN DIST Total WT Top width 0.30
Sl.no Type Nos L B D Quantity No of sides DIA C/C LENGTH NO UNIT WT WT DIA C/C LENGTH NO UNIT WT WT Bottom width 0.35
RETAINING WALL Belove GL wall 200 0.33 0.00
PROTECTION WALL
Estimated Qty Concrete 36.79 Steel 2940 Kg/cum
Diff qty -260.42 Diff qty -56495
In tonne -56 80.00
Sub Estimate for Approach Road
GSB GSB WMM DBM/BC Road width Built Slope Open Slope
#REF! 23.0 19.6 19.0 19.0 23.00 0.0 1.5 Widening Shoulder adj to each Layer Reconstruction
Sl.No From To Type Chainage Side Slope Length CBR Eff CBR with 500 Subgrade Road width GSB WMM BM / SDBC Side Slope Existing Crust Extra Crust Required Proposed Crust Total Thickness (m) Subgrade Bottom Width (m) Subgrade Widening (m) Subgrade Centre Width (m) GSB C/C Full Width (m) GSB Carriage Width C/C (m) WMM C/C (m) DBM & BC (m) Shoulder adj to GSB (C/C) Shoulder adj to WMM (C/C) Shoulder adj to BT (C/C) paved Shoulder Median Subgrade Bottom Width (m) Subgrade Widening Width (m) Subgrade Centre Width (m) GSB C/C Full Width (m) GSB Carriage Width C/C (m) WMM C/C (m) DBM & BC (m)
Avg Crust Subgrade GSB WMM/WBM Asphalt Subgrade CBR not less than 10 Subgrade Widening Subgrade Full width Granular sub base WMM, m DLC, m BM, m SDBC, m PQC, m
Proposed Existing BT Gravel Existing Median GSB Total Thickness (m) GSB Full Width Thickness (m) GSB Carriage Width Thicknes (m)
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
APPROACH ROAD ESTIMATE
ABSTRACT AND MEASUREMENTS
SN Description of Work Unit No L B D Quantity Rate Amount
1 2.5 Clearing and grubbing road land including uprooting rank vegetation, grass, bushes, shrubs, saplings and trees girth up to 300 mm, removal of stumps of trees cut earlier and disposal of unserviceable materials and stacking of serviceable material to be used or auctioned, including removal and disposal of top organic soil not exceeding 150 mm in thickness.. MORTH Specification No:201 (i). By Mechanical Means A. In area of light jungle.
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:9, Item No:2.5
Deduction for voids 40% 40% -2160
2 Scarifying the existing bituminous road surface to a depth of 50 mm and disposal of scarified material by Mechanical Means using Hydraulic excavator with in all lifts and lead MORTH Specification No. 305.4.3 (i) By Mechanical Means Using Hydraulic excavator
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:17, Item No:3.5
3 Construction of Embankment by excavating the available approved Gravel/Murrum deposited at a place or borrow pits during or prior excavation with all lifts and lead, transportation to site, spreading, grading to required slope and compacting to meet the requirement complete as per specifications, including cost of labour,rolling,water,all materials,usage& all other appurtenaces required to complete the work. If the height of embankment construction is more than 1.50 m add 5% per m³ for every 1.50 m height or part there off. Deduct 5% per m³ if rollers are not used and tamping is done manually. Add 8% per m³ for works under foul & sullage situation 1.00
PWD Schedule of Rates 2023-2024 , Vol No.1, Page No:7, Item No:1.8
Embankment 1.57 3600.00
as per survey qnty 2000.00 -7068.00 9.00 3
4 Construction of sub-grade and earthen shoulders with approved material obtained from borrow pits with all lifts & leads, transporting to site, spreading, grading to required slope and compacted to meet requirement of table No. 300-2 MORTH Specification No. 305
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:17, Item No:3.6
SUBGRADE FULL WIDTH 10.50
FOR EARTHEN SHOULDER 1.88
5 Granular Sub-Base B: By Mix in Place Method Construction of Granular Sub-Base of required grading as per design spreading in uniform layers with motor grader on prepared surface mixing by mix in place method with front end loader at OMC and compacting with vibratory roller to achieve the desired density, complete as per clause 401 MORTH Specification No. 401-B (V)For Grading-V Material. 8,229,167.49
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:23, Item No:4.2
6 406-A Wet Mix Macadam (Plant mix method) Providing, laying, spreading and compacting graded stone aggregate to wet mix macadam specification including premixing the Material with water at OMC in mechanical mix plant carriage of mixed Material by tipper to site, laying in uniform layers with paver/grader in sub-base / base course on well prepared surface and compacting with vibratory roller to achieve the desired density. MORTH Specification No. 406
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:26, Item No:4.27
7 502-A (i) Prime Coat Over WMM/WBM Providing and applying primer coat with SS1 grade Bitumen Emulsion on prepared surface of granular base including cleaning of road surface and spraying primer at the rate of 0.70 kg per m2 using mechanical means. MORTH Specification No. 502
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:31, Item No:5.1(i)
8 Providing and applying tack coat with VG-10 Bitumen using pressure distributor at the rate of 0.25 kg/m2 on Granular Surface. MORTH Specification No. 503
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:43, Item No:5.33
9 504( iA) Providing and laying Bituminous Macadam with 120 tph capacity hot mix plant batch type using crushed aggregates of specified grading premixed with bituminous binder VG-30 @ 3.3% by weight of mix, transported to site, laid over a previously prepared surface with mechanical paver finisher to the required grade, level and alignment and rolled as per clauses 501.6 and 501.7 to achieve the desired compaction MORTH Specification No. 504
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:31, Item No:5.6 iA
10 Semi Dense Bituminous Concrete Providing and laying Semi Dense Bituminous Concrete with 40/60 TPH capacity hot mix plant batch type using crushed aggregates of specified grading premixed with bituminous binder VG-30 @ 5% by weight of mix and filler, transported to site, laid over a previously prepared surface with mechanical paver finisher to the required grade, level and alignment and rolled as per MoRTH V revision.IRC-37: 2018
PWD Schedule of Rates 2023-2024 , Vol No.3, Page No:43, Item No:5.31
11 8.25 B Providing and erecting a "W" metal beam crash barrier system comprising of 3 mm thick corrugated sheet metal beam rail, 70 cm above road/ground level, fixed on ISMC series channel vertical post, 150 x 75 x 5 mm spaced 2m centre to centre, 1.8 m high, 1.1 m below ground/road level, all steel parts and fitments to be galvanised by hot dip process, all fittings to conform to IS:1367 and IS:1364, metal beam rail to be fixed on the vertical post with a spacer of channel section
12 Providing and laying Pitching on slopes laid over prepared filter media including boulder apron laid dry in front of toe of embankment complete as per drawing and Technical specifications. A.Stone/Boulder MORTH Specification No. 2504
13 guard stones - 2490.00
Grand Total 11,945,450.00
Construction of Box Culvert at km 0.80 on Doddawad-Sutgatti Main Road in Bailhongal Taluka of Belagavi District.
RATE ANALYSIS FOR APPROACH ROAD
Area Weightage (A.W) 5 %
Sl. No Discrition of Items Vol No. Page no Item No. Unit Basic Rate Material Cost difference Sub Total A.W Gross Rate
Mat Const Per Unit Diff Cost Diff 3%
Sub-Estimate No -1 (For Road Work)
1 2.5 Clearing and grubbing road land including uprooting rank vegetation, grass, bushes, shrubs, saplings and trees girth up to 300 mm, removal of stumps of trees cut earlier and disposal of unserviceable materials and stacking of serviceable material to be used or auctioned, including removal and disposal of top organic soil not exceeding 150 mm in thickness.. MORTH Specification No:201 (i). By Mechanical Means A. In area of light jungle. 3 9 2.5 Ha 393 393.00 11.79 404.79
, Vol No.3, Page No:9, Item No:2.5
2 Scarifying the existing bituminous road surface to a depth of 50 mm and disposal of scarified material by Mechanical Means using Hydraulic excavator with in all lifts and lead MORTH Specification No. 305.4.3 (i) By Mechanical Means Using Hydraulic excavator 3 17 3.5 Sqm 6.00 6.00 0.18 6.180
, Vol No.3, Page No:17, Item No:3.5
3 Construction of Embankment by excavating the available approved Gravel/Murrum deposited at a place or borrow pits during or prior excavation with all lifts and lead, transportation to site, spreading, grading to required slope and compacting to meet the requirement complete as per specifications, including cost of labour,rolling,water,all materials,usage& all other appurtenaces required to complete the work. If the height of embankment construction is more than 1.50 m add 5% per m³ for every 1.50 m height or part there off. Deduct 5% per m³ if rollers are not used and tamping is done manually. Add 8% per m³ for works under foul & sullage situation 1 7 1.80 Cum 474 474.00 14.22 488.220
, Vol No.1, Page No:7, Item No:1.8
4 Construction of sub-grade and earthen shoulders with approved material obtained from borrow pits with all lifts & leads, transporting to site, spreading, grading to required slope and compacted to meet requirement of table No. 300-2 MORTH Specification No. 305 3 17 3.6 Cum 413 413.00 12.39 425.39
, Vol No.3, Page No:17, Item No:3.6
5 Construction of sub-grade and earthen shoulders with approved material obtained from borrow pits with all lifts & leads, transporting to site, spreading, grading to required slope and compacted to meet requirement of table No. 300-2 MORTH Specification No. 305 3 23 4.2(V) Cum 2359 70.77 2429.77
, Vol No.3, Page No:23, Item No:4.2(V)
6 Granular Sub-Base B: By Mix in Place Method Construction of Granular Sub-Base of required grading as per design spreading in uniform layers with motor grader on prepared surface mixing by mix in place method with front end loader at OMC and compacting with vibratory roller to achieve the desired density, complete as per clause 401 MORTH Specification No. 401-B (V)For Grading-V Material. 3 26 4.27 Cum 2559 76.77 2635.77
, Vol No.3, Page No:26, Item No:4.27
7 502-A (i) Prime Coat Over WMM/WBM Providing and applying primer coat with SS1 grade Bitumen Emulsion on prepared surface of granular base including cleaning of road surface and spraying primer at the rate of 0.70 kg per m2 using mechanical means. MORTH Specification No. 502 3 31 Sqm 41 1.23 42.23
, Vol No.3, Page No:31, Item No:
8 Providing and applying tack coat with VG-10 Bitumen using pressure distributor at the rate of 0.25 kg/m2 on Granular Surface. MORTH Specification No. 503 3 43 5.3 Sqm 15 0.45 15.45
, Vol No.3, Page No:43, Item No:5.33
9 504( iA) Providing and laying Bituminous Macadam with 120 tph capacity hot mix plant batch type using crushed aggregates of specified grading premixed with bituminous binder VG-30 @ 3.3% by weight of mix, transported to site, laid over a previously prepared surface with mechanical paver finisher to the required grade, level and alignment and rolled as per clauses 501.6 and 501.7 to achieve the desired compaction MORTH Specification No. 504 3 31 5.6iA Sqm 7536 226.08 7762.08 12.54
, Vol No.3, Page No:31, Item No:5.6iA
10 Semi Dense Bituminous Concrete Providing and laying Semi Dense Bituminous Concrete with 40/60 TPH capacity hot mix plant batch type using crushed aggregates of specified grading premixed with bituminous binder VG-30 @ 5% by weight of mix and filler, transported to site, laid over a previously prepared surface with mechanical paver finisher to the required grade, level and alignment and rolled as per MoRTH V revision.IRC-37: 2018 3 43 5.31 Cum 10152 304.56 10456.56
, Vol No.3, Page No:43, Item No:5.31
, Vol No.3, Page No:54, Item No:8.5
, Vol No.3, Page No:55, Item No:8.8
13 KSRRB M800-4. Direction and Place Identification Signs with size more than 0.9 sqm Size Board: Providing and erecting direction and place identification retro-reflectorised sign as per IRC 67 made of high intensity grade sheeting vide clause 800.1.3, fixed over aluminium sheeting 2 mm thick with area exceeding 0.9 sqm supported on a mild steel angle iron post 75 mm x 75 mm x 6 mm, 2 Nos, firmly fixed to the ground by means of properly designed foundation with M-15 grade cement concrete 45cm x 45 cm x 60 cm 60 cm below ground level as per approved drawing complete as per specifications. Using Type IV sheeting. 180 24.4 Sqm 7458.0 223.74 7681.74
, Vol No., Page No:180, Item No:24.4 0.00
(viii) For 60 cm circular
, Vol No., Page No:, Item No:
, Vol No.3, Page No:57, Item No:8.15 (803)
, Vol No.3, Page No:57, Item No:8.16 (805)
, Vol No.3, Page No:57, Item No:8.17 (806)
21 Construction of Embankment by excavating the available approved Gravel/Murrum deposited at a place or borrow pits during or prior excavation with all lifts and lead, transportation to site, spreading, grading to required slope and compacting to meet the requirement complete as per specifications, including cost of labour,rolling,water,all materials,usage& all other appurtenaces required to complete the work. If the height of embankment construction is more than 1.50 m add 5% per m³ for every 1.50 m height or part there off. Deduct 5% per m³ if rollers are not used and tamping is done manually. Add 8% per m³ for works under foul & sullage situation 19.60 469.00 - - - 469.00 - 4.69 473.69
Vol No., Page No:19.6, Item No:
11 8.25 B Providing and erecting a "W" metal beam crash barrier system comprising of 3 mm thick corrugated sheet metal beam rail, 70 cm above road/ground level, fixed on ISMC series channel vertical post, 150 x 75 x 5 mm spaced 2m centre to centre, 1.8 m high, 1.1 m below ground/road level, all steel parts and fitments to be galvanised by hot dip process, all fittings to conform to IS:1367 and IS:1364, metal beam rail to be fixed on the vertical post with a spacer of channel section 3 59.00 8.25 m 3271.00 163.55 3434.55
12 Providing and laying Pitching on slopes laid over prepared filter media including boulder apron laid dry in front of toe of embankment complete as per drawing and Technical specifications. A.Stone/Boulder MORTH Specification No. 2504 3 111 16.4 Cum 1635.00 - - - 487.30 2122.30 2122.30
Vol No.3, Page No:111, Item No:16.4
13 guard stones - 3 nos 400.00 20.00 420.00
Assistant Executive Engineer, PWD.Sub-Dn, Bailhongal Executive Engineer, PWD, Dn Belagavi
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