SlideShare a Scribd company logo
1 of 23
6 November 2015
• Minimum reinforcement ratio , ρl and ρt = 0.0025
• ρl and ρt are permitted to be reduced if Vu ≤ 2 Acv λ √f’c
• If hw/lw ≤ 2, ρt is not to be less than ρl
2
Ref: NIST GCR 11-917-11REV-1
• ACI 318 has no prescriptive minimum thickness.
• Minimum thickness of 8 in. is a practical lower limit for special
structural walls.
• Construction and performance are generally improved if wall
thickness is at least 12 in. where special boundary elements
are used.
• Walls with conventional coupling beams require minimum
thickness of 14 in.
• Walls with diagonal reinforced coupling beams require
minimum thickness of 16 in.
3
• Slender walls (hw/lw ≥ 2)
– Tend to behave much like flexural cantilevers
– Preferred inelastic behavior is ductile flexure yielding, without shear
failure.
• Squat walls (hw/lw ≤ 0.5)
– Resist lateral force in diagonal strut mechanism
– Concrete and distributed horizontal and vertical reinforcement resist
shear
• Wall behavior transitions between above extremes for
intermediate aspect ratios.
4
• For slender walls, ductile
flexural yielding at the base
of wall
• For slender coupled walls,
ductile yielding of coupling
beams plus ductile flexural
yielding at the base of wall.
• Wall shear failure,
diaphragm failure and
foundation failure should be
avoided.
6
Ref: NIST GCR 11-917-11REV-1
• Design selected critical section to have strength in flexure and
axial closely matching the required strengths, with some
overstrength provided at other locations.
• Special details for ductile response can be concentrated
around the selected critical section, with relaxed detailing
elsewhere.
• In very tall buildings, higher mode response may cause some
flexural yielding in intermediate stories.
7
• Axial force well below the balanced point
• UBC 97
– Pu ≤ 0.35 P0, which corresponds approximately to the balanced axial
force in a symmetric wall.
• ACI 318
– No limit for wall axial force.
– Avoid concrete reaches strain of 0.003 before tension reinforcement
yields
8
9
-70
-60
-50
-40
-30
-20
-10
0
10
-0.014 -0.012 -0.01 -0.008 -0.006 -0.004 -0.002 0 0.002 0.004
Stress(MPa)
Strain
Concrete Stress-Strain Curve
• Mn,CS = Pu xp + Ts1 j1 lw +
Ts2 j2 lw
• j1 lw = 0.4 lw
• j2 lw = 0.8 lw
• Ts2 = minimum
reinforcement
• Find Ts1.
10
Ref: NIST GCR 11-917-11REV-1
• Special boundary element
– High compressive demand on the edge
• Ordinary boundary element
– As,be/Ag,be > 400/fy
11
• Design for single critical
section
• Determine top level
displacement, u
• c ≥ lw / (600 x u/ hw)
• Extend vertically above
and below critical
section a distance not
less than the greater of
lw and Mu,CS/4Vu,CS
12
Ref: NIST GCR 11-917-11REV-1
13
Ref: NIST GCR 11-917-11REV-1
• Can be used for any wall
• If nominal concrete stress exceeds 0.2 f’c, boundary element
required.
• Extend until compressive stress drops below 0.15 f’c.
14
15
Ref: NIST GCR 11-917-11REV-1
16
Ref: NIST GCR 11-917-11REV-1
17
C-01
C-02
C-03
C-04
C-05
C-06
C-07
C-08
C-09
C-10
C-11
C-12
C-13
C-14
C-15
C-16
C-17
-10
0
10
20
30
40
50
60
70
-0.006 -0.004 -0.002 0.000 0.002 0.004
StoryLevel
Axial Strain (mm/mm)
Wall Axial Strain (C-02)
STG
TAB
UNI
KOC
DUZ
STL
LGP
Average
Steel Yielding
Strain
Max. Comp.
Strain Limit
18
Determine type of boundary
element required.
Determine boundary
element length
Select trial boundary element
reinforcement size and spacing
Select trial size and spacing
of vertical reinforcement
Determine P-M strength
Use P-M analysis to check
assumed boundary element
length
Note:
Spacing of vertical reinforcement is
dictated by arrangement of
confinement reinforcement
• Select the vertical reinforcement and spread it within the
required boundary element length.
• Layout the transverse reinforcement to support verticals and
confine the core.
• Iterate until all requirements are met.
19
• Vn = Acv (αc λ √f’c + ρt fy)
– Acv = lw bw
– αc = 3.0 if hw/lw ≤ 1.5
– αc = 2.0 if hw/lw ≥ 2.0
• Upper limit
– 8Acv √f’c, for all vertical wall segments resisting common lateral force
– 10Acv √f’c, for individual vertical wall segments
20
21
0
10
20
30
40
50
60
70
80
-0.01 0 0.01 0.02 0.03 0.04
Story
Coupling Beam Rotation
Coupling Beam Shear Hinge Rotation at V1
LOM_STG
TAB
UNI
KOC
DUZ
STL
LOM_LGP
Average
22
Ref: ACI 318-11
23
Shear Wall Reinforcement Details

More Related Content

What's hot

Etabs example-rc building seismic load response-
Etabs example-rc building seismic load  response-Etabs example-rc building seismic load  response-
Etabs example-rc building seismic load response-
Bhaskar Alapati
 

What's hot (20)

Introduction to Capacity-based Seismic Design
Introduction to Capacity-based Seismic DesignIntroduction to Capacity-based Seismic Design
Introduction to Capacity-based Seismic Design
 
Modeling and Design of Bridge Super Structure and Sub Structure
Modeling and Design of Bridge Super Structure and Sub StructureModeling and Design of Bridge Super Structure and Sub Structure
Modeling and Design of Bridge Super Structure and Sub Structure
 
EC3 design
EC3 designEC3 design
EC3 design
 
Rcc structure design by etabs (acecoms)
Rcc structure design by etabs (acecoms)Rcc structure design by etabs (acecoms)
Rcc structure design by etabs (acecoms)
 
CE72.52 - Lecture 3b - Section Behavior - Shear and Torsion
CE72.52 - Lecture 3b - Section Behavior - Shear and TorsionCE72.52 - Lecture 3b - Section Behavior - Shear and Torsion
CE72.52 - Lecture 3b - Section Behavior - Shear and Torsion
 
Special shear walls + ordinary shear walls ACI - 318 - جدران القص الخاصة - P...
Special shear walls + ordinary  shear walls ACI - 318 - جدران القص الخاصة - P...Special shear walls + ordinary  shear walls ACI - 318 - جدران القص الخاصة - P...
Special shear walls + ordinary shear walls ACI - 318 - جدران القص الخاصة - P...
 
Etabs example-rc building seismic load response-
Etabs example-rc building seismic load  response-Etabs example-rc building seismic load  response-
Etabs example-rc building seismic load response-
 
CE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie ModelsCE 72.52 - Lecture 7 - Strut and Tie Models
CE 72.52 - Lecture 7 - Strut and Tie Models
 
CE72.52 - Lecture 3a - Section Behavior - Flexure
CE72.52 - Lecture 3a - Section Behavior - FlexureCE72.52 - Lecture 3a - Section Behavior - Flexure
CE72.52 - Lecture 3a - Section Behavior - Flexure
 
CE 72.52 - Lecture 8b - Retrofitting of RC Members
CE 72.52 - Lecture 8b - Retrofitting of RC MembersCE 72.52 - Lecture 8b - Retrofitting of RC Members
CE 72.52 - Lecture 8b - Retrofitting of RC Members
 
CE 72.32 (January 2016 Semester) Lecture 2 - Design Philosophy
CE 72.32 (January 2016 Semester) Lecture 2 - Design PhilosophyCE 72.32 (January 2016 Semester) Lecture 2 - Design Philosophy
CE 72.32 (January 2016 Semester) Lecture 2 - Design Philosophy
 
CE 72.32 (January 2016 Semester) Lecture 5 - Preliminary Design and Sizing
CE 72.32 (January 2016 Semester) Lecture 5 - Preliminary Design and SizingCE 72.32 (January 2016 Semester) Lecture 5 - Preliminary Design and Sizing
CE 72.32 (January 2016 Semester) Lecture 5 - Preliminary Design and Sizing
 
Design notes for seismic design of building accordance to Eurocode 8
Design notes for seismic design of building accordance to Eurocode 8 Design notes for seismic design of building accordance to Eurocode 8
Design notes for seismic design of building accordance to Eurocode 8
 
ETABS manual - Seismic design of steel buildings according to Eurocode 3 & 8
ETABS manual - Seismic design of steel buildings according to Eurocode 3 & 8 ETABS manual - Seismic design of steel buildings according to Eurocode 3 & 8
ETABS manual - Seismic design of steel buildings according to Eurocode 3 & 8
 
CE 72.52 - Lecture 8a - Retrofitting of RC Members
CE 72.52 - Lecture 8a - Retrofitting of RC MembersCE 72.52 - Lecture 8a - Retrofitting of RC Members
CE 72.52 - Lecture 8a - Retrofitting of RC Members
 
CE 72.32 (January 2016 Semester) Lecture 4 - Selection of Structural Systems
CE 72.32 (January 2016 Semester) Lecture 4 - Selection of Structural SystemsCE 72.32 (January 2016 Semester) Lecture 4 - Selection of Structural Systems
CE 72.32 (January 2016 Semester) Lecture 4 - Selection of Structural Systems
 
CE 72.32 (January 2016 Semester) Lecture 7 - Structural Analysis for Gravity ...
CE 72.32 (January 2016 Semester) Lecture 7 - Structural Analysis for Gravity ...CE 72.32 (January 2016 Semester) Lecture 7 - Structural Analysis for Gravity ...
CE 72.32 (January 2016 Semester) Lecture 7 - Structural Analysis for Gravity ...
 
Part-I: Seismic Analysis/Design of Multi-storied RC Buildings using STAAD.Pro...
Part-I: Seismic Analysis/Design of Multi-storied RC Buildings using STAAD.Pro...Part-I: Seismic Analysis/Design of Multi-storied RC Buildings using STAAD.Pro...
Part-I: Seismic Analysis/Design of Multi-storied RC Buildings using STAAD.Pro...
 
Structural analysis and design of multi storey ppt
Structural analysis and design of multi storey pptStructural analysis and design of multi storey ppt
Structural analysis and design of multi storey ppt
 
Strut and Tie Model for Pile Cap
Strut and Tie Model for Pile CapStrut and Tie Model for Pile Cap
Strut and Tie Model for Pile Cap
 

Viewers also liked (6)

CE72.52 - Lecture 2 - Material Behavior
CE72.52 - Lecture 2 - Material BehaviorCE72.52 - Lecture 2 - Material Behavior
CE72.52 - Lecture 2 - Material Behavior
 
CE72.52 - Lecture1 - Introduction
CE72.52 - Lecture1 - IntroductionCE72.52 - Lecture1 - Introduction
CE72.52 - Lecture1 - Introduction
 
CE 72.52 - Lecture6 - Member Behavior
CE 72.52 - Lecture6 - Member BehaviorCE 72.52 - Lecture6 - Member Behavior
CE 72.52 - Lecture6 - Member Behavior
 
CE 72.32 (January 2016 Semester) Lecture 6 - Overview of Finite Element Analysis
CE 72.32 (January 2016 Semester) Lecture 6 - Overview of Finite Element AnalysisCE 72.32 (January 2016 Semester) Lecture 6 - Overview of Finite Element Analysis
CE 72.32 (January 2016 Semester) Lecture 6 - Overview of Finite Element Analysis
 
CE 72.52 Lecture 4 - Ductility of Cross-sections
CE 72.52 Lecture 4 - Ductility of Cross-sectionsCE 72.52 Lecture 4 - Ductility of Cross-sections
CE 72.52 Lecture 4 - Ductility of Cross-sections
 
CE 72.32 (January 2016 Semester): Lecture 1a - Overview of Tall Buildings
CE 72.32 (January 2016 Semester): Lecture 1a - Overview of Tall BuildingsCE 72.32 (January 2016 Semester): Lecture 1a - Overview of Tall Buildings
CE 72.32 (January 2016 Semester): Lecture 1a - Overview of Tall Buildings
 

Similar to AITC Shear Wall Design Procedure (20151106)

Welcometothepresentationon 131127120041-phpapp01
Welcometothepresentationon 131127120041-phpapp01Welcometothepresentationon 131127120041-phpapp01
Welcometothepresentationon 131127120041-phpapp01
Alemu Workeneh
 

Similar to AITC Shear Wall Design Procedure (20151106) (20)

James Wight - ACI Building Code-01-54.pdf
James Wight - ACI Building Code-01-54.pdfJames Wight - ACI Building Code-01-54.pdf
James Wight - ACI Building Code-01-54.pdf
 
Rcc design and detailing based on revised seismic codes
Rcc design and detailing based on revised seismic codesRcc design and detailing based on revised seismic codes
Rcc design and detailing based on revised seismic codes
 
Div_Syd_detailing_of_reinforcement_in_concrete_structures.pdf
Div_Syd_detailing_of_reinforcement_in_concrete_structures.pdfDiv_Syd_detailing_of_reinforcement_in_concrete_structures.pdf
Div_Syd_detailing_of_reinforcement_in_concrete_structures.pdf
 
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
 
AS_NZS2566 Presentation.pptx
AS_NZS2566 Presentation.pptxAS_NZS2566 Presentation.pptx
AS_NZS2566 Presentation.pptx
 
Sd i-module2- rajesh sir
Sd i-module2- rajesh sirSd i-module2- rajesh sir
Sd i-module2- rajesh sir
 
Experimental study of shear in reinforced concrete one way slabs subjected to...
Experimental study of shear in reinforced concrete one way slabs subjected to...Experimental study of shear in reinforced concrete one way slabs subjected to...
Experimental study of shear in reinforced concrete one way slabs subjected to...
 
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
Presentation for lecture on underwater concrete - TU Delft: MSc Geotechnical ...
 
Moment Resisting Frame.pdf
Moment Resisting Frame.pdfMoment Resisting Frame.pdf
Moment Resisting Frame.pdf
 
Profiled deck composite floors
Profiled deck composite floorsProfiled deck composite floors
Profiled deck composite floors
 
Semana 7
Semana 7Semana 7
Semana 7
 
Lec04 Analysis of Rectangular RC Beams (Reinforced Concrete Design I & Prof. ...
Lec04 Analysis of Rectangular RC Beams (Reinforced Concrete Design I & Prof. ...Lec04 Analysis of Rectangular RC Beams (Reinforced Concrete Design I & Prof. ...
Lec04 Analysis of Rectangular RC Beams (Reinforced Concrete Design I & Prof. ...
 
Welcometothepresentationon 131127120041-phpapp01
Welcometothepresentationon 131127120041-phpapp01Welcometothepresentationon 131127120041-phpapp01
Welcometothepresentationon 131127120041-phpapp01
 
CASE STUDY: PERFORMANCE-BASED SEISMIC DESIGN OF REINFORCED CONCRETE DUAL SYST...
CASE STUDY: PERFORMANCE-BASED SEISMIC DESIGN OF REINFORCED CONCRETE DUAL SYST...CASE STUDY: PERFORMANCE-BASED SEISMIC DESIGN OF REINFORCED CONCRETE DUAL SYST...
CASE STUDY: PERFORMANCE-BASED SEISMIC DESIGN OF REINFORCED CONCRETE DUAL SYST...
 
Comparative Analysis of Cantilever Retaining Wall With And Without Column-Bea...
Comparative Analysis of Cantilever Retaining Wall With And Without Column-Bea...Comparative Analysis of Cantilever Retaining Wall With And Without Column-Bea...
Comparative Analysis of Cantilever Retaining Wall With And Without Column-Bea...
 
Important Technical Terms in Concrete Design
Important Technical Terms in Concrete DesignImportant Technical Terms in Concrete Design
Important Technical Terms in Concrete Design
 
ONE WAY SLAB DESIGN
ONE WAY SLAB DESIGNONE WAY SLAB DESIGN
ONE WAY SLAB DESIGN
 
One-Way Slab Design
One-Way Slab DesignOne-Way Slab Design
One-Way Slab Design
 
Stucture Design of various Watre tank
 Stucture Design of various Watre tank Stucture Design of various Watre tank
Stucture Design of various Watre tank
 
Lec12 Continuous Beams and One Way Slabs(2) Columns (Reinforced Concrete Desi...
Lec12 Continuous Beams and One Way Slabs(2) Columns (Reinforced Concrete Desi...Lec12 Continuous Beams and One Way Slabs(2) Columns (Reinforced Concrete Desi...
Lec12 Continuous Beams and One Way Slabs(2) Columns (Reinforced Concrete Desi...
 

Recently uploaded

1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
AldoGarca30
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
Kamal Acharya
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
Neometrix_Engineering_Pvt_Ltd
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
MayuraD1
 
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills KuwaitKuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
jaanualu31
 

Recently uploaded (20)

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
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
 
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
 
Hostel management system project report..pdf
Hostel management system project report..pdfHostel management system project report..pdf
Hostel management system project report..pdf
 
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
 
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
1_Introduction + EAM Vocabulary + how to navigate in EAM.pdf
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
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
 
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
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
 
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
 
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
 
A Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna MunicipalityA Study of Urban Area Plan for Pabna Municipality
A Study of Urban Area Plan for Pabna Municipality
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills KuwaitKuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
 
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
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 

AITC Shear Wall Design Procedure (20151106)

  • 2. • Minimum reinforcement ratio , ρl and ρt = 0.0025 • ρl and ρt are permitted to be reduced if Vu ≤ 2 Acv λ √f’c • If hw/lw ≤ 2, ρt is not to be less than ρl 2 Ref: NIST GCR 11-917-11REV-1
  • 3. • ACI 318 has no prescriptive minimum thickness. • Minimum thickness of 8 in. is a practical lower limit for special structural walls. • Construction and performance are generally improved if wall thickness is at least 12 in. where special boundary elements are used. • Walls with conventional coupling beams require minimum thickness of 14 in. • Walls with diagonal reinforced coupling beams require minimum thickness of 16 in. 3
  • 4. • Slender walls (hw/lw ≥ 2) – Tend to behave much like flexural cantilevers – Preferred inelastic behavior is ductile flexure yielding, without shear failure. • Squat walls (hw/lw ≤ 0.5) – Resist lateral force in diagonal strut mechanism – Concrete and distributed horizontal and vertical reinforcement resist shear • Wall behavior transitions between above extremes for intermediate aspect ratios. 4
  • 5.
  • 6. • For slender walls, ductile flexural yielding at the base of wall • For slender coupled walls, ductile yielding of coupling beams plus ductile flexural yielding at the base of wall. • Wall shear failure, diaphragm failure and foundation failure should be avoided. 6 Ref: NIST GCR 11-917-11REV-1
  • 7. • Design selected critical section to have strength in flexure and axial closely matching the required strengths, with some overstrength provided at other locations. • Special details for ductile response can be concentrated around the selected critical section, with relaxed detailing elsewhere. • In very tall buildings, higher mode response may cause some flexural yielding in intermediate stories. 7
  • 8. • Axial force well below the balanced point • UBC 97 – Pu ≤ 0.35 P0, which corresponds approximately to the balanced axial force in a symmetric wall. • ACI 318 – No limit for wall axial force. – Avoid concrete reaches strain of 0.003 before tension reinforcement yields 8
  • 9. 9 -70 -60 -50 -40 -30 -20 -10 0 10 -0.014 -0.012 -0.01 -0.008 -0.006 -0.004 -0.002 0 0.002 0.004 Stress(MPa) Strain Concrete Stress-Strain Curve
  • 10. • Mn,CS = Pu xp + Ts1 j1 lw + Ts2 j2 lw • j1 lw = 0.4 lw • j2 lw = 0.8 lw • Ts2 = minimum reinforcement • Find Ts1. 10 Ref: NIST GCR 11-917-11REV-1
  • 11. • Special boundary element – High compressive demand on the edge • Ordinary boundary element – As,be/Ag,be > 400/fy 11
  • 12. • Design for single critical section • Determine top level displacement, u • c ≥ lw / (600 x u/ hw) • Extend vertically above and below critical section a distance not less than the greater of lw and Mu,CS/4Vu,CS 12 Ref: NIST GCR 11-917-11REV-1
  • 13. 13 Ref: NIST GCR 11-917-11REV-1
  • 14. • Can be used for any wall • If nominal concrete stress exceeds 0.2 f’c, boundary element required. • Extend until compressive stress drops below 0.15 f’c. 14
  • 15. 15 Ref: NIST GCR 11-917-11REV-1
  • 16. 16 Ref: NIST GCR 11-917-11REV-1
  • 17. 17 C-01 C-02 C-03 C-04 C-05 C-06 C-07 C-08 C-09 C-10 C-11 C-12 C-13 C-14 C-15 C-16 C-17 -10 0 10 20 30 40 50 60 70 -0.006 -0.004 -0.002 0.000 0.002 0.004 StoryLevel Axial Strain (mm/mm) Wall Axial Strain (C-02) STG TAB UNI KOC DUZ STL LGP Average Steel Yielding Strain Max. Comp. Strain Limit
  • 18. 18 Determine type of boundary element required. Determine boundary element length Select trial boundary element reinforcement size and spacing Select trial size and spacing of vertical reinforcement Determine P-M strength Use P-M analysis to check assumed boundary element length Note: Spacing of vertical reinforcement is dictated by arrangement of confinement reinforcement
  • 19. • Select the vertical reinforcement and spread it within the required boundary element length. • Layout the transverse reinforcement to support verticals and confine the core. • Iterate until all requirements are met. 19
  • 20. • Vn = Acv (αc λ √f’c + ρt fy) – Acv = lw bw – αc = 3.0 if hw/lw ≤ 1.5 – αc = 2.0 if hw/lw ≥ 2.0 • Upper limit – 8Acv √f’c, for all vertical wall segments resisting common lateral force – 10Acv √f’c, for individual vertical wall segments 20
  • 21. 21 0 10 20 30 40 50 60 70 80 -0.01 0 0.01 0.02 0.03 0.04 Story Coupling Beam Rotation Coupling Beam Shear Hinge Rotation at V1 LOM_STG TAB UNI KOC DUZ STL LOM_LGP Average