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An improvement to linear-elastic procedures for seismicperformance assessment

机译:线性弹性程序抗震性能评估的改进

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摘要

An improved linear-elastic analysis procedure is developed in this paper as a simple approximate method for displacement-based seismic assessment of the existing buildings. The procedure is mainly based on reducing the stiffness of structural members that are expected to respond in the inelastic range in a single global iteration step. Modal spectral displacement demands are determined from the equal displacement rule. Response predictions obtained from the proposed procedure are evaluated comparatively by using the results of benchmark nonlinear response history analysis, and both the conventional and the multi-mode pushover analyses. In comparative evaluations, a twelve-story RC plane frame and a six-story unsymmetrical-plan RC frame are employed by using 91 ground motion components. It is observed that the proposed procedure estimates the flexural deformation demands in deformation-controlled members and the shear forces in force-controlled members with reasonable accuracy.
机译:本文提出了一种改进的线性弹性分析程序,作为对现有建筑物进行基于位移的地震评估的简单近似方法。该程序主要基于降低预计在单个全局迭代步骤中在非弹性范围内响应的结构构件的刚度。模态光谱位移需求由等位移规则确定。通过使用基准非线性响应历史分析的结果,以及常规和多模式下推分析,可以比较评估从所建议的过程获得的响应预测。在比较评估中,通过使用91个地面运动分量,使用了12层RC平面框架和6层不对称平面RC框架。可以看出,所提出的程序以合理的精度估计了变形控制构件中的挠曲变形需求和力控制构件中的剪力。

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