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Evaluation of Ground Motion Scaling Methods for Analysis of Structural Systems

机译:结构系统分析地面运动缩放方法的评价

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Ground motion selection and scaling comprises undoubtedly the most important component of any seismic risk assessment study that involves time-history analysis. Ironically, this is also the single parameter with the least guidance provided in current building codes, resulting in the use of mostly subjective choices in design. The relevant research to date has been primarily on single-degree-of-freedom systems, with only a few studies using multi-degree-of-freedom systems. Furthermore, the previous research is based solely on numerical simulations with no experimental data available for the validation of the results. By contrast, the research effort described in this paper focuses on an experimental evaluation of selected ground motion scaling methods based on small-scale shake-table experiments of re-configurable linear-elastic and nonlinear multi-story building frame structure models. Ultimately, the experimental results will lead to the development of guidelines and procedures to achieve reliable demand estimates from nonlinear response history analysis in seismic design. In this paper, an overview of this research effort is discussed and preliminary results based on linear-elastic dynamic response are presented.
机译:地面运动选择和缩放无疑包括涉及涉及时间历史分析的地震风险评估研究的最重要组成部分。具有讽刺意味的是,这也是当前建筑码中提供的最少指导的单个参数,导致设计中主要是主观选择。迄今为止的相关研究主要是在单一程度自由度系统上,只有一些使用多程度自由度系统的研究。此外,之前的研究是完全基于数值模拟,没有可用于验证结果的实验​​数据。相比之下,本文中描述的研究工作侧重于基于重新配置线性弹性和非线性多层建筑框架结构模型的小规模抖动表实验的所选地面运动缩放方法的实验性评价。最终,实验结果将导致制定准则和程序,以实现地震设计中非线性响应历史分析的可靠需求估算。本文讨论了该研究工作的概述,并介绍了基于线性弹性动态响应的初步结果。

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