SlideShare a Scribd company logo
1 of 36
3
2
1
0
Course No: 400
Course Name: Project and Thesis
Presentation on
A Study On Effect Of Column And Beam
Shape And Shear Wall On Storey Drift
Name Roll No
Khaza Ahmed Palash 36
Md. Saiful Islam 02
Md. Tahsin Raza 11
Mofasser Uddin Ahmed 42
Md. Ashraful Islam 43
Under the Supervision of
Pronob Kumar Ghosh
Lecturer
Department of Civil Engineering
Dhaka International University
Structures are designed for strength
(safety) and serviceability (performance).
Serviceability issues include
• Deflection
• Vibration
• Corrosion
But with respect to wind the issue of
concern is storey drift of structure.
Philosophy of Design for Drift
What is Drift?
Drift is the lateral displacement of one level of a
multi-storey structure relative to the level above
or below due to lateral loads. Lateral loads are
mainly responsible for drift.
Philosophy of Design for Drift
Due to lateral loads there will be a drift or
sway on the high rise structures.
The magnitude of displacement at the top of a
building relative to its base is total drift.
Shear wall is a wall composed of shear panels
to counter the gravity loads and also lateral
load performing on a structure.
Philosophy of Design for Drift
To study the performance of column shape
(with shear wall & without shear wall) on
storey drift.
 To study the effects of moment of inertia of
beams (with shear wall & without shear wall)
on storey drift.
The Objective Of This Thesis
Drift Index
 Drift index = Displacement/Height
 Total Drift Index = Total Drift/Building Height = Δ/H
 Interstorey Drift Index = Interstorey Drift/Storey Height= δ/H
Building Model
 The model is a rectangular (60 ft by 100 ft plan
dimensions) ten-storey RCC building.
 Column size 18”x18”, 15”x22” & 12”x27” and
keeping beam size constant 12”x21”.
 Similarly we analyze the structure with varying beam
size 12”x21”, 12”x24” & 12”x27” and keeping
column size constant 15”x22” .
Dead Load & Live Load Calculation
Dead load is considered as per follows-
 Floor to floor height = 10 ft
 Brick wall width = 5 inch
 Concrete unit weight = 150 pcf
 Brick unit weight = 120 pcf
 Super Dead Load = 80 psf
Live Loads: Live loads are as per BNBC 2015-
 On floor = 60 psf
 On roof = 30 psf
Calculation Of Wind Load
Storey
No
Wind Load
(kip)
Along X axis Along Y axis
1 60.94 29.18
2 68.86 32.98
3 78.88 37.78
4 88.58 42.42
5 92.14 44.12
6 97.95 46.91
7 100.86 48.3
8 106.68 48.3
9 109.59 52.48
10 104.42 50.01
Distribution of Wind Load in Each
Storeys
Wind load (kip) in X axis each storeys
104.42
109.59
106.68
100.68
97.95
92.14
85.58
78.88
68.86
60.94
Distribution of Wind Load in Each
Storeys
Wind load (kip) in Y axis each storeys
50.01
52.48
51.09
48.3
46.91
44.12
42.42
37.78
32.98
29.18
Analysis of Models
For 10 storied building:
 Varying moment of inertia of column by keeping area
constant without shear wall.
 Varying moment of inertia of column by keeping area
constant with shear wall.
 Varying moment of inertia of beam without shear wall.
 Varying moment of inertia of beam with shear wall.
Varying Moment of Inertia of
Column by Keeping Area Constant
without Shear Wall
Frame Structure (Without Shear
Wall) Deformed Shape in Y
Direction
Values of Storey Drift from ETABS
Analysis Without Shear Wall
Storey
No
Storey Drift for
Column 18”X18”
(in)
Storey Drift for
Column 15”X22”
(in)
Storey Drift for
Column 12”X27”
(in)
10 2.063680 1.934297 1.828990
9 2.017466 1.885431 1.775832
8 1.935825 1.804882 1.694307
7 1.813128 1.686343 1.577664
6 1.649461 1.529137 1.424584
5 1.446155 1.334380 1.236034
4 1.205651 1.104648 1.014916
3 0.931231 0.844129 0.766515
2 0.630216 0.561935 0.501720
1 0.320962 0.279240 0.243556
Shear Force and Bending Moment
Diagrams for Column Size 18”x18”
Varying Moment of Inertia of Column by
Keeping Area Constant with Shear Wall
First, we analyze for column size 18”x18”= I, then 15”x22” =
1.5I & finally 12”x27” = 2I
Frame Structure (With Shear Wall)
Deformed Shape in Y Direction
Storey Drift From ETABS Analysis
With Shear Wall
Storey
No
Storey Drift for
Column 18”X18”
(in)
Storey Drift for
Column 15”X22”
(in)
Storey Drift for
Column 12”X27”
(in)
10 1.249830 1.180958 1.080565
9 1.147117 1.084847 0.975356
8 1.034555 0.979150 0.860315
7 0.911980 0.863640 0.735717
6 0.779660 0.738545 0.603471
5 0.639608 0.605781 0.467087
4 0.495516 0.468873 0.331638
3 0.352653 0.332927 0.204275
2 0.218379 0.205130 0.094651
1 0.102490 0.095171 0.016791
The Unfactored (DL+LL) Reactions
in Various Columns
Node Column 18”x18” Column 15”x22” Column 12”x27”
No. (kip) (kip) (kip)
1 264.8 202.60 201.47
2 448.94 393.02 388.93
3 415.98 358.90 355.13
4 203.6 166.58 165.68
5 451.5 401.37 404.93
6 783.69 781.48 784.03
7 724.34 713.54 716.23
8 392.89 334.94 339.20
9 421.21 368.57 369.39
10 729.77 716.61 714.27
11 649.75 625.13 623.07
12 288.23 231.36 233.95
13 421.92 369.42 370.27
14 729.53 715.88 712.99
15 493.86 463.07 458.51
16 451.41 401.82 405.43
17 783.57 781.29 783.74
18 720.26 709.25 711.51
19 386.40 328.09 330.97
20 265.26 204.08 203.28
21 449.76 394.01 390.14
22 417.35 360.60 357.22
23 230.56 167.15 166.44
Values of storey Drift from ETABS Analysis for
Varying Moment of Inertia of Column by Keeping
Area Constant (With Shear Wall)
Storey Storey Drift for Storey Drift for Storey Drift for
No Column 18”X18” Column 15”X22” Column 12”X27”
(in) (in) (in)
10 1.249830 1.180958 1.080565
9 1.147117 1.084847 0.975356
8 1.034555 0.979150 0.860315
7 0.911980 0.863640 0.735717
6 0.779660 0.738545 0.603471
5 0.639608 0.605781 0.467087
4 0.495516 0.468873 0.331638
3 0.352653 0.332927 0.204275
2 0.218379 0.205130 0.094651
1 0.102490 0.095171 0.016791
Values of Storey Drift from ETABS
Analysis for varying moment of inertia
of Beam without Shear Wall
Storey Storey Drift for Storey Drift for Storey Drift for
No Beam 12”X21” Beam 12”x24” Beam 12”X27”
(in) (in) (in)
10 2.576689 2.330019 2.133819
9 2.493304 2.256773 2.068338
8 2.371324 2.148103 1.969906
7 2.200977 1.995497 1.831112
6 1.980257 1.797428 1.650811
5 1.710642 1.555279 1.430305
4 1.396499 1.272780 1.172870
3 1.045915 0.956645 0.884192
2 0.675318 0.295376 0.275686
1 0.319377 0.052771 0.049583
Values of storey Drift from ETABS
Analysis for varying moment of
inertia of beam with shear wall
Storey Storey Drift for Storey Drift for Storey Drift for
No Beam 12”X21” Beam 12”x24” Beam 12”X27”
(in) (in) (in)
10 0.910768 0.854072 0.806581
9 0.816781 0.768789 0.728431
8 0.711453 0.672160 0.639004
7 0.602932 0.571939 0.545679
6 0.492309 0.469043 0.449238
5 0.381093 0.364825 0.350904
4 0.273072 0.262839 0.254033
3 0.173722 0.168298 0.163601
2 0.090663 0.088571 0.086748
1 0.032886 0.032538 0.032232
Effect of column Shape on Storey
Drift (without shear wall)
0
0.5
1
1.5
2
2.5
0 2 4 6 8 10 12
StoreyDriftinYDirection(inch)
Number of Storey
Effect Of Column Shape On storey Drift (Without Shear Wall)
18”X18”
15”X22”
12”X27”
Effect Of Column Shape On Storey
Drift (With Shear Wall)
0
0.2
0.4
0.6
0.8
1
1.2
1.4
0 2 4 6 8 10 12
storeyDriftinYDirection(inch)
Number of storey
Effect of column Shape on storey Drift (with shear Wall)
18”X18”
15”X22”
12”X27”
Effect of Beam Size on Storey Drift
(without Shear Wall)
0
0.5
1
1.5
2
2.5
3
0 2 4 6 8 10 12
StoreyDriftinYDirection(in)
Number of storey
Effect of Beam Size on Storey Drift (without shear wall)
12”X21”
12”x24”
12”X27”
Effect of Beam Size on Storey Drift
(with Shear Wall)
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
0 2 4 6 8 10 12
StoreyDriftinYDirection(in)
Number of storey
Effect of Beam Size on Storey Drift (with shear wall)
12”X21”
12”x24”
12”X27”
Conclusions
To control drift, rectangular section performs
better.
Shear wall is essential for drift control.
Without shear wall, drift hampers
serviceability condition.
Recommendations
 Columns should be placed in the plan such a way that it
behaves like a shear wall in weak direction.
 To control the lateral drift effectively, the structural
system, consisted of reinforced concrete shear wall,
moment resisting system can be used.
 The position of shear wall in lift core close to the centre
of plan is important, to promote the efficiency of
structural system.
Thank You

More Related Content

What's hot

Calculo porton
Calculo portonCalculo porton
Calculo portonrolanponce
 
Angling for Access, with examples 2013
 Angling for Access, with examples 2013 Angling for Access, with examples 2013
Angling for Access, with examples 2013Jenny Dixon
 
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...IES Master
 
Detailed design calculations & analysis of go kart vehicle
Detailed design calculations & analysis of go kart vehicleDetailed design calculations & analysis of go kart vehicle
Detailed design calculations & analysis of go kart vehicleAvinash Barve
 
Microsoft power point fowt2018-boscolofrancesco_v2.pptx
Microsoft power point   fowt2018-boscolofrancesco_v2.pptxMicrosoft power point   fowt2018-boscolofrancesco_v2.pptx
Microsoft power point fowt2018-boscolofrancesco_v2.pptxTECNALIA Marine Energy
 
Equations Senior Design Project
Equations Senior Design ProjectEquations Senior Design Project
Equations Senior Design ProjectJesse M. Thomas
 
Calculation template
Calculation templateCalculation template
Calculation templateYekian Ian
 
Poster of surveying tasks
Poster of surveying tasksPoster of surveying tasks
Poster of surveying tasksTalha Hussain
 
Assignment 2
Assignment 2Assignment 2
Assignment 2Aastha .
 
Mechanic assignment (2)
Mechanic assignment (2)Mechanic assignment (2)
Mechanic assignment (2)Phearun Seng
 
final report_as submitted
final report_as submittedfinal report_as submitted
final report_as submittedHASSAN ALESSA
 
Fracture Project Report (2)
Fracture Project Report (2)Fracture Project Report (2)
Fracture Project Report (2)Harshada Patil
 
Rubeo_ThesisDefense_rev3
Rubeo_ThesisDefense_rev3Rubeo_ThesisDefense_rev3
Rubeo_ThesisDefense_rev3Mark Rubeo
 
Acrylic gearbox creative journey
Acrylic gearbox creative journeyAcrylic gearbox creative journey
Acrylic gearbox creative journeyRaymond Bell
 

What's hot (18)

Calculo porton
Calculo portonCalculo porton
Calculo porton
 
Angling for Access, with examples 2013
 Angling for Access, with examples 2013 Angling for Access, with examples 2013
Angling for Access, with examples 2013
 
Movimiento plano de cuerpos
Movimiento plano de cuerposMovimiento plano de cuerpos
Movimiento plano de cuerpos
 
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...
Civil Engineering - UPSC Civil Services Conventional Examination - Subject-wi...
 
Detailed design calculations & analysis of go kart vehicle
Detailed design calculations & analysis of go kart vehicleDetailed design calculations & analysis of go kart vehicle
Detailed design calculations & analysis of go kart vehicle
 
Qp
QpQp
Qp
 
Microsoft power point fowt2018-boscolofrancesco_v2.pptx
Microsoft power point   fowt2018-boscolofrancesco_v2.pptxMicrosoft power point   fowt2018-boscolofrancesco_v2.pptx
Microsoft power point fowt2018-boscolofrancesco_v2.pptx
 
Equations Senior Design Project
Equations Senior Design ProjectEquations Senior Design Project
Equations Senior Design Project
 
Calculation template
Calculation templateCalculation template
Calculation template
 
Poster of surveying tasks
Poster of surveying tasksPoster of surveying tasks
Poster of surveying tasks
 
Assignment 2
Assignment 2Assignment 2
Assignment 2
 
Mechanic assignment (2)
Mechanic assignment (2)Mechanic assignment (2)
Mechanic assignment (2)
 
Chi2017 yamanaka novideo
Chi2017 yamanaka novideoChi2017 yamanaka novideo
Chi2017 yamanaka novideo
 
final report_as submitted
final report_as submittedfinal report_as submitted
final report_as submitted
 
Fracture Project Report (2)
Fracture Project Report (2)Fracture Project Report (2)
Fracture Project Report (2)
 
Final Presentation - Group 2 (1)
Final Presentation - Group 2 (1)Final Presentation - Group 2 (1)
Final Presentation - Group 2 (1)
 
Rubeo_ThesisDefense_rev3
Rubeo_ThesisDefense_rev3Rubeo_ThesisDefense_rev3
Rubeo_ThesisDefense_rev3
 
Acrylic gearbox creative journey
Acrylic gearbox creative journeyAcrylic gearbox creative journey
Acrylic gearbox creative journey
 

Similar to Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On Storey Drift

Design of housing apartment
Design of  housing apartmentDesign of  housing apartment
Design of housing apartmentSUBHOJIT BERA
 
MAIN CANOPY BAJAJ HR(22.09.2016)
MAIN CANOPY BAJAJ HR(22.09.2016)MAIN CANOPY BAJAJ HR(22.09.2016)
MAIN CANOPY BAJAJ HR(22.09.2016)sufiyan shaikh
 
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...irjes
 
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...Seismic Analysis and Comparative Study of a Structure with Shearwall and With...
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...IRJET Journal
 
Gantry girder Analyse & design
Gantry girder Analyse & designGantry girder Analyse & design
Gantry girder Analyse & designGhawsudin
 
77201946
7720194677201946
77201946IJRAT
 
77201946
7720194677201946
77201946IJRAT
 
Analysis Reinforced Concrete.ppt
Analysis  Reinforced Concrete.pptAnalysis  Reinforced Concrete.ppt
Analysis Reinforced Concrete.pptMOHNIKASAMINENI
 
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912pradip patel
 
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.pptJarsoBuke
 
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...pradip patel
 
Comparative Analysis of an Irregular Structure with Shearwall and Without She...
Comparative Analysis of an Irregular Structure with Shearwall and Without She...Comparative Analysis of an Irregular Structure with Shearwall and Without She...
Comparative Analysis of an Irregular Structure with Shearwall and Without She...IRJET Journal
 
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...IRJET Journal
 
Analysis of 3d RC Frame on Sloping Ground
Analysis of 3d RC Frame on Sloping GroundAnalysis of 3d RC Frame on Sloping Ground
Analysis of 3d RC Frame on Sloping GroundIRJET Journal
 
IRJET- Study of P-Delta Effect on High Rise RCC Structures
IRJET-  	  Study of P-Delta Effect on High Rise RCC StructuresIRJET-  	  Study of P-Delta Effect on High Rise RCC Structures
IRJET- Study of P-Delta Effect on High Rise RCC StructuresIRJET Journal
 
Analysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadAnalysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadHtinKyawHloon1
 

Similar to Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On Storey Drift (20)

Design of housing apartment
Design of  housing apartmentDesign of  housing apartment
Design of housing apartment
 
MAIN CANOPY BAJAJ HR(22.09.2016)
MAIN CANOPY BAJAJ HR(22.09.2016)MAIN CANOPY BAJAJ HR(22.09.2016)
MAIN CANOPY BAJAJ HR(22.09.2016)
 
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...
Behaviour of Multistory Steel Structure with Different Types of Bracing Syste...
 
final sol.pdf
final sol.pdffinal sol.pdf
final sol.pdf
 
Reinforced Concrete.ppt
Reinforced Concrete.pptReinforced Concrete.ppt
Reinforced Concrete.ppt
 
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...Seismic Analysis and Comparative Study of a Structure with Shearwall and With...
Seismic Analysis and Comparative Study of a Structure with Shearwall and With...
 
Strauto 2015
Strauto 2015Strauto 2015
Strauto 2015
 
Gantry girder Analyse & design
Gantry girder Analyse & designGantry girder Analyse & design
Gantry girder Analyse & design
 
ppt.pptx
ppt.pptxppt.pptx
ppt.pptx
 
77201946
7720194677201946
77201946
 
77201946
7720194677201946
77201946
 
Analysis Reinforced Concrete.ppt
Analysis  Reinforced Concrete.pptAnalysis  Reinforced Concrete.ppt
Analysis Reinforced Concrete.ppt
 
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912
Comparison of rcc braced and steel “x” braced rcc frame structure 150513181912
 
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt
60334188-Analysis-and-Design-of-a-Multi-Storey-Reinforced-Concrete.ppt
 
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...
Comparative study of inverted “v” and “v” type rcc braced and steel braced 15...
 
Comparative Analysis of an Irregular Structure with Shearwall and Without She...
Comparative Analysis of an Irregular Structure with Shearwall and Without She...Comparative Analysis of an Irregular Structure with Shearwall and Without She...
Comparative Analysis of an Irregular Structure with Shearwall and Without She...
 
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...
Analysis of Rc Framed High Rise Structural System with Ground and Intermediat...
 
Analysis of 3d RC Frame on Sloping Ground
Analysis of 3d RC Frame on Sloping GroundAnalysis of 3d RC Frame on Sloping Ground
Analysis of 3d RC Frame on Sloping Ground
 
IRJET- Study of P-Delta Effect on High Rise RCC Structures
IRJET-  	  Study of P-Delta Effect on High Rise RCC StructuresIRJET-  	  Study of P-Delta Effect on High Rise RCC Structures
IRJET- Study of P-Delta Effect on High Rise RCC Structures
 
Analysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadAnalysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic load
 

More from Khaza Ahmed Palash

Prefabricated Vertical Drains (PVD) method statement
Prefabricated Vertical Drains  (PVD) method statementPrefabricated Vertical Drains  (PVD) method statement
Prefabricated Vertical Drains (PVD) method statementKhaza Ahmed Palash
 
Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On ...
Presentation onA Study On Effect Of Column And Beam Shape And Shear Wall On ...Presentation onA Study On Effect Of Column And Beam Shape And Shear Wall On ...
Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On ...Khaza Ahmed Palash
 
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFT
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFTEFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFT
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFTKhaza Ahmed Palash
 
Presentation on Roadway Condition Survey
Presentation on Roadway Condition Survey Presentation on Roadway Condition Survey
Presentation on Roadway Condition Survey Khaza Ahmed Palash
 
Study is to perform roadway condition survey of link road between panthapath ...
Study is to perform roadway condition survey of link road between panthapath ...Study is to perform roadway condition survey of link road between panthapath ...
Study is to perform roadway condition survey of link road between panthapath ...Khaza Ahmed Palash
 
Construction Materials. Design of concrete mixes
Construction Materials.  Design of concrete mixesConstruction Materials.  Design of concrete mixes
Construction Materials. Design of concrete mixesKhaza Ahmed Palash
 
Thesis on drift control of rcc building 01
Thesis on drift control of rcc building 01Thesis on drift control of rcc building 01
Thesis on drift control of rcc building 01Khaza Ahmed Palash
 
Geographical Information System (GIS)
 Geographical Information System (GIS) Geographical Information System (GIS)
Geographical Information System (GIS)Khaza Ahmed Palash
 

More from Khaza Ahmed Palash (11)

Prefabricated Vertical Drains (PVD) method statement
Prefabricated Vertical Drains  (PVD) method statementPrefabricated Vertical Drains  (PVD) method statement
Prefabricated Vertical Drains (PVD) method statement
 
Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On ...
Presentation onA Study On Effect Of Column And Beam Shape And Shear Wall On ...Presentation onA Study On Effect Of Column And Beam Shape And Shear Wall On ...
Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On ...
 
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFT
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFTEFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFT
EFFECT OF COLUMN, BEAM SHAPE AND SHEAR WALL ON STOREY DRIFT
 
Presentation on Roadway Condition Survey
Presentation on Roadway Condition Survey Presentation on Roadway Condition Survey
Presentation on Roadway Condition Survey
 
Study is to perform roadway condition survey of link road between panthapath ...
Study is to perform roadway condition survey of link road between panthapath ...Study is to perform roadway condition survey of link road between panthapath ...
Study is to perform roadway condition survey of link road between panthapath ...
 
Construction Materials. Design of concrete mixes
Construction Materials.  Design of concrete mixesConstruction Materials.  Design of concrete mixes
Construction Materials. Design of concrete mixes
 
Thesis on drift control of rcc building 01
Thesis on drift control of rcc building 01Thesis on drift control of rcc building 01
Thesis on drift control of rcc building 01
 
1. curvature of track
1. curvature of track1. curvature of track
1. curvature of track
 
Presantation on Map
Presantation on MapPresantation on Map
Presantation on Map
 
Geographical Information System (GIS)
 Geographical Information System (GIS) Geographical Information System (GIS)
Geographical Information System (GIS)
 
Drift control of RCC Building
Drift control of RCC BuildingDrift control of RCC Building
Drift control of RCC Building
 

Recently uploaded

Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startQuintin Balsdon
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsvanyagupta248
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxMuhammadAsimMuhammad6
 
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKARHAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKARKOUSTAV SARKAR
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayEpec Engineered Technologies
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesMayuraD1
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdfKamal Acharya
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdfKamal Acharya
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network DevicesChandrakantDivate1
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationBhangaleSonal
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxSCMS School of Architecture
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiessarkmank1
 
Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilVinayVitekari
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapRishantSharmaFr
 
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
COST-EFFETIVE  and Energy Efficient BUILDINGS ptxCOST-EFFETIVE  and Energy Efficient BUILDINGS ptx
COST-EFFETIVE and Energy Efficient BUILDINGS ptxJIT KUMAR GUPTA
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...drmkjayanthikannan
 

Recently uploaded (20)

Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
 
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKARHAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech Civil
 
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
COST-EFFETIVE  and Energy Efficient BUILDINGS ptxCOST-EFFETIVE  and Energy Efficient BUILDINGS ptx
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 

Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On Storey Drift

  • 1. 3
  • 2. 2
  • 3. 1
  • 4. 0
  • 5. Course No: 400 Course Name: Project and Thesis
  • 6. Presentation on A Study On Effect Of Column And Beam Shape And Shear Wall On Storey Drift Name Roll No Khaza Ahmed Palash 36 Md. Saiful Islam 02 Md. Tahsin Raza 11 Mofasser Uddin Ahmed 42 Md. Ashraful Islam 43
  • 7. Under the Supervision of Pronob Kumar Ghosh Lecturer Department of Civil Engineering Dhaka International University
  • 8. Structures are designed for strength (safety) and serviceability (performance). Serviceability issues include • Deflection • Vibration • Corrosion But with respect to wind the issue of concern is storey drift of structure. Philosophy of Design for Drift
  • 9. What is Drift? Drift is the lateral displacement of one level of a multi-storey structure relative to the level above or below due to lateral loads. Lateral loads are mainly responsible for drift. Philosophy of Design for Drift
  • 10. Due to lateral loads there will be a drift or sway on the high rise structures. The magnitude of displacement at the top of a building relative to its base is total drift. Shear wall is a wall composed of shear panels to counter the gravity loads and also lateral load performing on a structure. Philosophy of Design for Drift
  • 11. To study the performance of column shape (with shear wall & without shear wall) on storey drift.  To study the effects of moment of inertia of beams (with shear wall & without shear wall) on storey drift. The Objective Of This Thesis
  • 12. Drift Index  Drift index = Displacement/Height  Total Drift Index = Total Drift/Building Height = Δ/H  Interstorey Drift Index = Interstorey Drift/Storey Height= δ/H
  • 13. Building Model  The model is a rectangular (60 ft by 100 ft plan dimensions) ten-storey RCC building.  Column size 18”x18”, 15”x22” & 12”x27” and keeping beam size constant 12”x21”.  Similarly we analyze the structure with varying beam size 12”x21”, 12”x24” & 12”x27” and keeping column size constant 15”x22” .
  • 14. Dead Load & Live Load Calculation Dead load is considered as per follows-  Floor to floor height = 10 ft  Brick wall width = 5 inch  Concrete unit weight = 150 pcf  Brick unit weight = 120 pcf  Super Dead Load = 80 psf Live Loads: Live loads are as per BNBC 2015-  On floor = 60 psf  On roof = 30 psf
  • 15. Calculation Of Wind Load Storey No Wind Load (kip) Along X axis Along Y axis 1 60.94 29.18 2 68.86 32.98 3 78.88 37.78 4 88.58 42.42 5 92.14 44.12 6 97.95 46.91 7 100.86 48.3 8 106.68 48.3 9 109.59 52.48 10 104.42 50.01
  • 16. Distribution of Wind Load in Each Storeys Wind load (kip) in X axis each storeys 104.42 109.59 106.68 100.68 97.95 92.14 85.58 78.88 68.86 60.94
  • 17. Distribution of Wind Load in Each Storeys Wind load (kip) in Y axis each storeys 50.01 52.48 51.09 48.3 46.91 44.12 42.42 37.78 32.98 29.18
  • 18. Analysis of Models For 10 storied building:  Varying moment of inertia of column by keeping area constant without shear wall.  Varying moment of inertia of column by keeping area constant with shear wall.  Varying moment of inertia of beam without shear wall.  Varying moment of inertia of beam with shear wall.
  • 19. Varying Moment of Inertia of Column by Keeping Area Constant without Shear Wall
  • 20. Frame Structure (Without Shear Wall) Deformed Shape in Y Direction
  • 21. Values of Storey Drift from ETABS Analysis Without Shear Wall Storey No Storey Drift for Column 18”X18” (in) Storey Drift for Column 15”X22” (in) Storey Drift for Column 12”X27” (in) 10 2.063680 1.934297 1.828990 9 2.017466 1.885431 1.775832 8 1.935825 1.804882 1.694307 7 1.813128 1.686343 1.577664 6 1.649461 1.529137 1.424584 5 1.446155 1.334380 1.236034 4 1.205651 1.104648 1.014916 3 0.931231 0.844129 0.766515 2 0.630216 0.561935 0.501720 1 0.320962 0.279240 0.243556
  • 22. Shear Force and Bending Moment Diagrams for Column Size 18”x18”
  • 23. Varying Moment of Inertia of Column by Keeping Area Constant with Shear Wall First, we analyze for column size 18”x18”= I, then 15”x22” = 1.5I & finally 12”x27” = 2I
  • 24. Frame Structure (With Shear Wall) Deformed Shape in Y Direction
  • 25. Storey Drift From ETABS Analysis With Shear Wall Storey No Storey Drift for Column 18”X18” (in) Storey Drift for Column 15”X22” (in) Storey Drift for Column 12”X27” (in) 10 1.249830 1.180958 1.080565 9 1.147117 1.084847 0.975356 8 1.034555 0.979150 0.860315 7 0.911980 0.863640 0.735717 6 0.779660 0.738545 0.603471 5 0.639608 0.605781 0.467087 4 0.495516 0.468873 0.331638 3 0.352653 0.332927 0.204275 2 0.218379 0.205130 0.094651 1 0.102490 0.095171 0.016791
  • 26. The Unfactored (DL+LL) Reactions in Various Columns Node Column 18”x18” Column 15”x22” Column 12”x27” No. (kip) (kip) (kip) 1 264.8 202.60 201.47 2 448.94 393.02 388.93 3 415.98 358.90 355.13 4 203.6 166.58 165.68 5 451.5 401.37 404.93 6 783.69 781.48 784.03 7 724.34 713.54 716.23 8 392.89 334.94 339.20 9 421.21 368.57 369.39 10 729.77 716.61 714.27 11 649.75 625.13 623.07 12 288.23 231.36 233.95 13 421.92 369.42 370.27 14 729.53 715.88 712.99 15 493.86 463.07 458.51 16 451.41 401.82 405.43 17 783.57 781.29 783.74 18 720.26 709.25 711.51 19 386.40 328.09 330.97 20 265.26 204.08 203.28 21 449.76 394.01 390.14 22 417.35 360.60 357.22 23 230.56 167.15 166.44
  • 27. Values of storey Drift from ETABS Analysis for Varying Moment of Inertia of Column by Keeping Area Constant (With Shear Wall) Storey Storey Drift for Storey Drift for Storey Drift for No Column 18”X18” Column 15”X22” Column 12”X27” (in) (in) (in) 10 1.249830 1.180958 1.080565 9 1.147117 1.084847 0.975356 8 1.034555 0.979150 0.860315 7 0.911980 0.863640 0.735717 6 0.779660 0.738545 0.603471 5 0.639608 0.605781 0.467087 4 0.495516 0.468873 0.331638 3 0.352653 0.332927 0.204275 2 0.218379 0.205130 0.094651 1 0.102490 0.095171 0.016791
  • 28. Values of Storey Drift from ETABS Analysis for varying moment of inertia of Beam without Shear Wall Storey Storey Drift for Storey Drift for Storey Drift for No Beam 12”X21” Beam 12”x24” Beam 12”X27” (in) (in) (in) 10 2.576689 2.330019 2.133819 9 2.493304 2.256773 2.068338 8 2.371324 2.148103 1.969906 7 2.200977 1.995497 1.831112 6 1.980257 1.797428 1.650811 5 1.710642 1.555279 1.430305 4 1.396499 1.272780 1.172870 3 1.045915 0.956645 0.884192 2 0.675318 0.295376 0.275686 1 0.319377 0.052771 0.049583
  • 29. Values of storey Drift from ETABS Analysis for varying moment of inertia of beam with shear wall Storey Storey Drift for Storey Drift for Storey Drift for No Beam 12”X21” Beam 12”x24” Beam 12”X27” (in) (in) (in) 10 0.910768 0.854072 0.806581 9 0.816781 0.768789 0.728431 8 0.711453 0.672160 0.639004 7 0.602932 0.571939 0.545679 6 0.492309 0.469043 0.449238 5 0.381093 0.364825 0.350904 4 0.273072 0.262839 0.254033 3 0.173722 0.168298 0.163601 2 0.090663 0.088571 0.086748 1 0.032886 0.032538 0.032232
  • 30. Effect of column Shape on Storey Drift (without shear wall) 0 0.5 1 1.5 2 2.5 0 2 4 6 8 10 12 StoreyDriftinYDirection(inch) Number of Storey Effect Of Column Shape On storey Drift (Without Shear Wall) 18”X18” 15”X22” 12”X27”
  • 31. Effect Of Column Shape On Storey Drift (With Shear Wall) 0 0.2 0.4 0.6 0.8 1 1.2 1.4 0 2 4 6 8 10 12 storeyDriftinYDirection(inch) Number of storey Effect of column Shape on storey Drift (with shear Wall) 18”X18” 15”X22” 12”X27”
  • 32. Effect of Beam Size on Storey Drift (without Shear Wall) 0 0.5 1 1.5 2 2.5 3 0 2 4 6 8 10 12 StoreyDriftinYDirection(in) Number of storey Effect of Beam Size on Storey Drift (without shear wall) 12”X21” 12”x24” 12”X27”
  • 33. Effect of Beam Size on Storey Drift (with Shear Wall) 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 0 2 4 6 8 10 12 StoreyDriftinYDirection(in) Number of storey Effect of Beam Size on Storey Drift (with shear wall) 12”X21” 12”x24” 12”X27”
  • 34. Conclusions To control drift, rectangular section performs better. Shear wall is essential for drift control. Without shear wall, drift hampers serviceability condition.
  • 35. Recommendations  Columns should be placed in the plan such a way that it behaves like a shear wall in weak direction.  To control the lateral drift effectively, the structural system, consisted of reinforced concrete shear wall, moment resisting system can be used.  The position of shear wall in lift core close to the centre of plan is important, to promote the efficiency of structural system.