Please use this identifier to cite or link to this item: http://10.1.7.192:80/jspui/handle/123456789/2077
Title: Theoretical Model For Predicting Shear Strength Of Low Rise Reinforced Concrete Structural (Squat) Walls
Authors: Solanki, Himat
Thakkar, Sonal
Keywords: Concrete
Reinforced Concrete
Structural Walls
Strut & tie Model
Civil Faculty Paper
Faculty Paper
ITFCL025
NUCONE
NUCONE-2009
Issue Date: 25-Nov-2009
Publisher: Institute of Technology, Nirma University, Ahmedabad
Citation: National Conference on Current Trends in Technology, NUCONE-2009, Institute of Technology, Nirma University, Ahmedabad, November 25-27, 2009, Page No. 150-156
Series/Report no.: ITFCL025-1
Abstract: Shear strength of reinforced concrete walls is an important in design of low rise building subjected to lateral loads. In this paper, a simplified approach, using a softened strut and tie model for determining the shear strength of reinforced concrete structural (squat) walls with a height to width ratio less than or equal to 2 has been considered The proposed simplified strut and tie model satisfies equilibrium, compatibility and constitutive laws of cracked reinforced concrete elements. The shear capacities of 62 structural walls were calculated and compared with the available experimental results and ACI Code (ACI 318-08) and Hwang et al (2001)General and Simplified models and a good reasonable agreements was found. Based on the available experimental data in this paper, the proposed model was applied to study the effect of boundary elements, cyclic loading and vertical loading conditions on the wall shear strength.
URI: http://hdl.handle.net/123456789/2077
Appears in Collections:Faculty Papers, Civil

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