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Implementation of Near-Fault Forward Directivity Effects in Seismic Design Codes

机译:在地震设计代码中实现近乎故障前进方向效应

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Near-fault ground motions exhibiting forward directivity effects are critical for seismic design because they impose very large seismic demands on buildings due to their large-amplitude pulselike waveforms. The current challenge in seismic design codes is to recommend simple (easy-to-apply) yet proper rules to explain the near-fault forward directivity (NFFD) phenomenon for seismic demands. This effort is not new and has been the subject of research for over two decades. This paper contributes to these efforts and proposes an alternative set of rules to modify the elastic design spectrum of 475-year and 2475-year return periods for NFFD effects. The directivity rules discussed here are evolved from a relatively large number of probabilistic earthquake scenarios (probabilistic seismic hazard assessment, PSHA) that employ two recent directivity models. The paper first gives the background of the probabilistic earthquake scenarios and then introduces the proposed NFFD rules for seismic design codes. We conclude the paper by presenting some cases with the proposed rules to see how spectral amplitudes modify due to directivity.
机译:因为它们会对建筑物非常大地震的需求,由于其大振幅的脉冲性波形近断层地震动参展向前方向性效应对抗震设计的关键。在抗震设计规范,目前的挑战是推荐简单(容易申请),但适当的规则来解释近断层着方向性(NFFD)现象抗震要求。这方面的努力是不是新的,并已研究了二十多年的主题。本文有助于这些努力,并提出了另外一套规则修改为NFFD影响475年和2475年重现期弹性设计反应谱。方向性的规则在这里讨论从相对大量的概率地震场景(概率地震危险性评估,PSHA)使用两个最近的方向性模型演化而来的。本文首先给出的概率地震场景的背景,然后介绍了建议NFFD规则抗震设计规范。我们通过介绍一些情况下所提出的规则看,由于方向性的幅度如何频谱修改全文结束。

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