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    Peak Shear Strength of Flanged Reinforced Concrete Squat Walls

    Source: Journal of Structural Engineering:;2020:;Volume ( 146 ):;issue: 004
    Author:
    Jiaxing Ma
    ,
    Chao-Lie Ning
    ,
    Bing Li
    DOI: 10.1061/(ASCE)ST.1943-541X.0002575
    Publisher: ASCE
    Abstract: Flanged RC squat walls, defined by a shear span ratio less than two, are widely used in conventional buildings and nuclear facilities. However, due to the mechanical defects and insufficient parameters included, equations available in building codes and the literature exhibit significant scatter in predicting the peak shear strength of such walls. In this paper, a modified strut-and-tie model, including effects of flanges, was developed to account for the force-resisting mechanism in flanged RC squat walls and to derive the function form of the peak shear strength equation. Nonlinear regression was conducted to obtain the magnitude of unknown coefficients in the function form using a database containing 119 walls. The finalized equation was simplified and evaluated with models available in the literature. Results revealed that the proposed equation performs much better than current methods and provides guidance for the design of flanged RC squat walls.
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      Peak Shear Strength of Flanged Reinforced Concrete Squat Walls

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    contributor authorJiaxing Ma
    contributor authorChao-Lie Ning
    contributor authorBing Li
    date accessioned2022-01-30T20:09:21Z
    date available2022-01-30T20:09:21Z
    date issued2020
    identifier other%28ASCE%29ST.1943-541X.0002575.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4266608
    description abstractFlanged RC squat walls, defined by a shear span ratio less than two, are widely used in conventional buildings and nuclear facilities. However, due to the mechanical defects and insufficient parameters included, equations available in building codes and the literature exhibit significant scatter in predicting the peak shear strength of such walls. In this paper, a modified strut-and-tie model, including effects of flanges, was developed to account for the force-resisting mechanism in flanged RC squat walls and to derive the function form of the peak shear strength equation. Nonlinear regression was conducted to obtain the magnitude of unknown coefficients in the function form using a database containing 119 walls. The finalized equation was simplified and evaluated with models available in the literature. Results revealed that the proposed equation performs much better than current methods and provides guidance for the design of flanged RC squat walls.
    publisherASCE
    titlePeak Shear Strength of Flanged Reinforced Concrete Squat Walls
    typeJournal Paper
    journal volume146
    journal issue4
    journal titleJournal of Structural Engineering
    identifier doi10.1061/(ASCE)ST.1943-541X.0002575
    page04020037
    treeJournal of Structural Engineering:;2020:;Volume ( 146 ):;issue: 004
    contenttypeFulltext
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