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Experimental evaluation of ground motion scaling methods for nonlinear analysis of structural systems

机译:地面运动缩放方法在结构系统非线性分析中的实验评估

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This paper describes an experimental investigation on the scaling of ground motion records for use in the nonlinear response history analysis of building structures. The study is based on the measured response from small-scale shake-table experiments of nonlinear multi-story building frame structures under ground motion suites that have been scaled using different methods. Four structural configurations with different fundamental periods and lateral strengths are investigated to assess the effectiveness of the scaling methods in reducing the dispersion in the seismic lateral displacement demands of the structures from a total of 720 shake-table tests. Four scaling methods are examined including three methods that depend on a priori knowledge of the properties of the structure being analyzed as well as a method based solely on the properties of the ground motions. The experimental results show that the method based solely on the properties of the ground motions generally produced demand results with less dispersion than the other evaluated scaling methods. However, the methods that rely on prior knowledge of the structure performed better at preserving the benchmark median demands for several of the cases considered.
机译:本文描述了对地面运动记录缩放比例的实验研究,以用于建筑结构的非线性响应历史分析。这项研究基于对地面震动套件下非线性多层建筑框架结构的小规模振动台实验的测量响应,该实验已使用不同方法进行了缩放。通过总共720次振动台试验,研究了具有不同基本周期和侧向强度的四种结构构型,以评估缩放方法在减小结构的地震侧向位移要求中的分散性方面的有效性。检查了四种缩放方法,包括三种方法,这些方法取决于对被分析结构的特性的先验知识,以及一种仅基于地震动特性的方法。实验结果表明,与其他评估的缩放方法相比,仅基于地面运动特性的方法通常产生的需求结果具有较小的分散性。但是,在某些情况下,依赖于结构先验知识的方法在保留基准中位数需求方面表现更好。

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