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首页> 外文期刊>Journal of structural engineering >Multiphase Performance Assessment of Structural Response to Seismic Excitations
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Multiphase Performance Assessment of Structural Response to Seismic Excitations

机译:结构对地震激励响应的多阶段性能评估

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An alternative approach to the traditional method for performance assessment of structural systems is proposed. Denoted herein as the M-PARS method, this new approach is capable of tackling clusters of structural behavior under seismic excitations from one hazard level to another due to, for example, variations in the nature of excitation characteristics. The method's ability to recognize and process different clusters (i.e., phases) separately enables it to yield performance estimates with higher accuracy and less variability. The proposed M-PARS methodology is a step up compared to existing state-of-the-art (albeit conventional monophase) approaches. In the present study, M-PARS is first formulated in general terms, and then applied to a specific case study involving bridges with skew-angled seat-type abutments to demonstrate its salient features. In this study, the sensitivities of the median estimates of seismic response to variations in bridge geometry parameters and ground motion characteristics are investigated, and direct comparisons are made with a conventional monophase method to quantify the advantages afforded by the proposed method. (C) 2015 American Society of Civil Engineers.
机译:提出了一种替代传统方法的结构系统性能评估方法。本文中称为M-PARS方法,这种新方法能够将地震激励下的结构行为丛集从一个危险等级到另一个危险等级,例如由于激发特性的变化而定。该方法能够分别识别和处理不同的群集(即阶段),从而能够以更高的准确性和更少的可变性得出性能评估。与现有的现有技术(尽管是传统的单相)方法相比,提出的M-PARS方法是一个进步。在本研究中,M-PARS首先以通用术语表述,然后应用于涉及带有斜角座型桥台的桥梁的特定案例研究,以证明其显着特征。在这项研究中,调查了地震响应对桥梁几何参数和地面运动特征变化的中值估计的敏感性,并与常规单相方法进行了直接比较,以量化该方法所提供的优势。 (C)2015年美国土木工程师学会。

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