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Influence of lateral loading direction on the peak shear strength of non-rectangular reinforced concrete squat walls

机译:横向荷载方向对非矩形钢筋混凝土蹲墙峰值剪切强度的影响

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摘要

Peak shear strength is a critical parameter in the evaluation of the seismic performance of structural walls. Different equations have been proposed to predict the peak shear strength of reinforced concrete squat walls in literature, which assume lateral loading is parallel to the web. In reality, however, seismic waves can reach structures from any direction, which necessitates the studies on the behavior of structural walls under various lateral loading directions. Unlike rectangular walls, non-rectangular walls naturally possess the capacity to resist lateral loads in both transverse and longitudinal directions. To explore the peak shear strength of such walls under different lateral loading directions, a widely used nonlinear finite element software Diana 9.4 was utilized in this article. Appropriate modeling approaches were first selected and further validated by simulating relevant experiments. Then a comprehensive parametric study was carried out to investigate the influence of lateral loading directions and other important parameters.
机译:峰值抗剪强度是评估结构墙抗震性能的关键参数。在文献中已经提出了不同的方程式来预测钢筋混凝土蹲式墙的峰值抗剪强度,假设侧向荷载平行于腹板。然而,实际上,地震波可以从任何方向到达结构,这需要研究在各种横向荷载方向下结构墙的行为。与矩形墙不同,非矩形墙自然具有抵抗横向和纵向横向载荷的能力。为了探索这种壁在不同横向荷载方向上的峰值抗剪强度,本文使用了广泛使用的非线性有限元软件Diana 9.4。首先选择适当的建模方法,并通过模拟相关实验进一步进行验证。然后进行了全面的参数研究,以研究侧向荷载方向和其他重要参数的影响。

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