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首页> 外文期刊>International Journal of Structural Engineering >Comparative study nonlinear static pushover analysis and displacement based adaptive pushover analysis method
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Comparative study nonlinear static pushover analysis and displacement based adaptive pushover analysis method

机译:非线性静态静力弹塑性分析与基于位移的自适应静力弹塑性分析方法的比较研究

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摘要

A major challenge in performance-based earthquake engineering is to develop simple and practical methods for estimating the capacity level and seismic demand on structures by taking into account their inelastic behaviour instead of complicated nonlinear time history analysis. However, in nonlinear static procedure, both predetermined target displacement and force distribution pattern are based on a false assumption that the structural behaviour and its responses are dominated by the fundamental vibration modes. Displacement-based adaptive pushover analysis (DAP) is one of the performance assessment tools for improving the accuracy of the obtained results of the nonlinear static analysis in estimating the seismic demands of structures. The paper attempts to use DAP method to evaluate the performance of 6, 9, 12 and 15 storey RC moment resisting frame, analysed for seismic Zone V and designed as per provisions of IS codes. It is observed from the study that DAP analysis shows better results compared to static pushover analysis.
机译:基于性能的地震工程的主要挑战是,通过考虑结构的非弹性行为,而不是进行复杂的非线性时程分析,开发出简单实用的方法来估计结构的承载力水平和地震需求。但是,在非线性静态程序中,既定的目标位移和力分布模式均基于错误的假设,即结构行为及其响应受基本振动模式支配。基于位移的自适应推覆分析(DAP)是一种性能评估工具,用于提高估计结构抗震需求时非线性静力分析结果的准确性。本文尝试使用DAP方法评估6层,9层,12层和15层RC矩抗力框架的性能,分析V区地震,并按照IS规范进行设计。从研究中观察到,与静态下推分析相比,DAP分析显示出更好的结果。

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