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Effective Stiffness of Squat Structural Walls

机译:蹲式结构墙的有效刚度

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Reinforced concrete (RC) structural walls are the primary lateral-load carrying elements in many structures designed to resist earthquakes. A review of the technical literature shows considerable uncertainty with regards to the effective stiffness of these structures when subjected to seismic excitations, which many design practices currently deal with by employing a stiffness reduction factor. In an attempt to obtain additional information regarding the stiffness of these structures, an analytical approach, combining the flexure and shear components of deformation, is proposed to evaluate the effective stiffness of the RC walls tested. Based on this proposed analytical approach, a comprehensive parametric study comprising 180 combinations was carried out and a simple equation for assessing effective stiffness of RC squat structural walls then proposed, on the basis of these parametric case studies.
机译:在许多旨在抵抗地震的结构中,钢筋混凝土(RC)结构墙是主要的侧向承载元素。对技术文献的回顾表明,在遭受地震激励时,这些结构的有效刚度存在相当大的不确定性,目前许多设计实践都通过采用刚度减小因子来应对。为了获得有关这些结构刚度的其他信息,提出了一种结合变形的挠曲分量和剪切分量的分析方法来评估所测试的RC墙的有效刚度。在此分析方法的基础上,进行了包括180种组合的综合参数研究,然后在这些参数案例研究的基础上,提出了一个简单的方程式来评估RC蹲式结构墙的有效刚度。

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