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Peak Shear Strength of Flanged Reinforced Concrete Squat Walls

机译:法兰钢筋混凝土矮墙的峰值抗剪强度

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摘要

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.
机译:剪力比小于2的法兰式RC矮墙被广泛用于常规建筑和核设施中。但是,由于机械缺陷和所包含的参数不足,建筑规范和文献中提供的方程式在预测此类墙的峰值抗剪强度时表现出明显的分散性。本文提出了一种修正的拉杆-拉杆模型,其中包括翼缘的影响,以说明翼缘RC蹲墙的抗力机理,并得出峰值抗剪强度方程的函数形式。使用包含119个壁的数据库,进行非线性回归以获得函数形式中未知系数的大小。简化最终方程式,并使用文献中可用的模型进行评估。结果表明,所提出的方程比目前的方法具有更好的性能,并为带凸缘的RC矮墙的设计提供了指导。

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