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Multicomponent incremental dynamic analysis considering variable incident angle

机译:考虑入射角可变的多分量增量动力学分析

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摘要

Performance-based earthquake engineering (PBEE) is the current trend in designing earthquake-resistant structures. The implementation of the PBEE framework requires the assessment of the structural capacity in multiple earthquake hazard levels. Incremental dynamic analysis (IDA) is considered to be one of the most efficient computational tools for estimating structural capacity; therefore, it is often incorporated into the PBEE framework. Most real world reinforced concrete (RC) buildings can only be represented accurately with three-dimensional (3D) models; hence, a multicomponent incremental dynamic analysis (MIDA) is required in order to carry out an IDA-based PBEE framework. In this work, the implementation of IDA studies in 3D structures is examined, where a two-component seismic excitation is applied, and a new procedure for performing MIDA is proposed. According to the proposed procedure, the MIDA is performed over a sample of record-incident angle pairs that are generated using Latin hypercube sampling (LHS).
机译:基于性能的地震工程(PBEE)是设计抗震结构的当前趋势。 PBEE框架的实施要求评估多个地震灾害等级的结构能力。增量动力分析(IDA)被认为是估算结构能力的最有效的计算工具之一。因此,它通常被合并到PBEE框架中。大多数现实世界中的钢筋混凝土(RC)建筑物只能使用三维(3D)模型来准确表示。因此,为了执行基于IDA的PBEE框架,需要进行多组件增量动态分析(MIDA)。在这项工作中,研究了IDA研究在3D结构中的实施情况,其中应用了两分量地震激励,并提出了执行MIDA的新程序。根据建议的过程,对使用拉丁超立方体采样(LHS)生成的记录入射角对样本执行MIDA。

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