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首页> 外文期刊>Journal of bridge engineering >Assessment of Modal-Pushover-Based Scaling Procedure for Nonlinear Response History Analysis of Ordinary Standard Bridges
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Assessment of Modal-Pushover-Based Scaling Procedure for Nonlinear Response History Analysis of Ordinary Standard Bridges

机译:普通标准桥梁非线性响应历史分析的基于模态推标比例缩放程序的评估

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摘要

The earthquake engineering profession is increasingly utilizing nonlinear response history analyses (RHA) to evaluate seismic performance of existing structures and proposed designs of new structures. One of the main ingredients of nonlinear RHA is a set of ground motion records representing the expected hazard environment for the structure. When recorded motions do not exist (as is the case in the central United States) or when high-intensity records are needed (as is the case in San Francisco and Los Angeles), ground motions from other tectonically similar regions need to be selected and scaled. The modal-pushover-based scaling (MPS) procedure was recently developed to determine scale factors for a small number of records such that the scaled records provide accurate and efficient estimates of "true" median structural responses. The adjective "accurate" refers to the discrepancy between the benchmark responses and those computed from the MPS procedure. The adjective "efficient" refers to the record-to-record variability of responses. In this paper, the accuracy and efficiency of the MPS procedure are evaluated by applying it to four types of existing Ordinary Standard bridges typical of reinforced concrete bridge construction in California. These bridges are the single-bent overpass, multi-span bridge, curved bridge, and skew bridge. As compared with benchmark analyses of unsealed records using a larger catalog of ground motions, it is demonstrated that the MPS procedure provided an accurate estimate of the engineering demand parameters (EDPs) accompanied by significantly reduced record-to-record variability of the EDPs. Thus, it is a useful tool for scaling ground motions as input to nonlinear RHAs of Ordinary Standard bridges.
机译:地震工程专业越来越多地利用非线性响应历史分析(RHA)来评估现有结构的抗震性能以及新结构的拟议设计。非线性RHA的主要成分之一是一组地面运动记录,代表该结构的预期危害环境。当不存在已记录的运动(如美国中部的情况)或需要高强度记录时(如旧金山和洛杉矶的情况),则需要选择其他构造相似的地区的地运动,并缩放。最近开发了基于模态推覆的缩放(MPS)程序,以确定少量记录的比例因子,从而使缩放后的记录提供“真实”中位结构响应的准确和有效估计。形容词“准确”是指基准响应与通过MPS程序计算的响应之间的差异。形容词“有效”是指响应的记录间差异。在本文中,通过将MPS程序应用于加利福尼亚州钢筋混凝土桥梁典型的四种现有普通标准桥梁中,来评估MPS程序的准确性和效率。这些桥是单弯立交桥,多跨桥,弯桥和斜桥。与使用大量地面运动进行的未密封记录的基准分析相比,证明了MPS程序可准确估算工程需求参数(EDP),并显着降低了EDP的记录间差异。因此,它是缩放地面运动作为普通标准桥梁的非线性RHA输入的有用工具。

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