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Shear strength of squat walls: A strut-and-tie model and closed-form design formula

机译:蹲墙的抗剪强度:撑杆式和封闭式设计公式

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摘要

Reinforced concrete squat walls, with height less than twice the length, are key structural elements for seismic resistance in many structures. Design formulas available in building codes and literature showed substantial scatter in shear strength predictions and do not include all variables that affect squat walls response. A closed-form expression that accounts for the shear strength contributions provided by the diagonal concrete strut and the web reinforcement is derived, while considering those variables that significantly affect the behaviour of such walls. Model parameters were calibrated using the experimental results of 664 rectangular and flanged walls available in the literature. The proposed model is compared to a number of predictive equations for the shear strength of squat walls, and it results as the one best fitting the measured shear strengths. Further, a design formula, suitable for implementation in codes and standards, is proposed.
机译:高度小于长度两倍的钢筋混凝土蹲墙是许多结构中抗震的关键结构要素。建筑规范和文献中的可用设计公式在抗剪强度预测中显示出很大的分散性,并不包括影响蹲墙响应的所有变量。在考虑那些明显影响此类墙体性能的变量的同时,得出了一个封闭形式的表达式,该表达式解释了对角混凝土支杆和腹板钢筋提供的抗剪强度贡献。使用文献中提供的664个矩形和带凸缘的墙的实验结果对模型参数进行校准。将所提出的模型与蹲墙抗剪强度的许多预测方程进行比较,得出的结果是最适合测得的抗剪强度的模型。此外,提出了适用于法规和标准的设计公式。

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