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The Effect of soil-flexibility on seismic response of a typical Steel Plate Shear Wall subjected to Duzce Earthquake

机译:土的柔韧性对典型的杜兹切地震钢板剪力墙地震响应的影响

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Steel Plate Shear Wall is commonly employed as a principal system to resist lateral loads due to wind or earthquake forces. An accurate model for SPSW needs to consider the effect of all components for analysis such as foundation and subsoil. One of most important aspects of structural analysis is soil-structure interaction (SSI). Such interaction may alter the dynamic characteristics of structures and consequently may be beneficial or detrimental to the performance of structures. This investigation is aimed to evaluate the effect of soil-structure interaction on seismic response of a typical multi-story SPSW designed according to AISC requirements. In this procedure, a time-direct method is used in which the unbounded soil is modeled by couple finite-infinite elements. To investigate the effects of SSI the following types of analysis are performed: in the first type, the structure is analyzed without subsoil (fixed base) and in the second type, analysis is carried out for the same structure with consideration of soil-structure interaction (flexible-base). Finally, the results of analysis with and without SSI effects are compared.
机译:钢板剪力墙通常用作抵抗风或地震力引起的横向载荷的主要系统。一个精确的SPSW模型需要考虑所有分析要素的影响,例如地基和地基。结构分析的最重要方面之一是土壤-结构相互作用(SSI)。这样的相互作用可以改变结构的动态特性,因此可能对结构的性能是有益的或有害的。这项研究旨在评估土壤-结构相互作用对根据AISC要求设计的典型多层SPSW地震响应的影响。在此过程中,使用了一种时间直接方法,其中无穷大的土壤是通过有限元-无限元耦合建模的。为了研究SSI的影响,进行了以下类型的分析:在第一种类型中,分析结构时不存在底土(固定基础);在第二种类型中,对相同结构进行分析时要考虑土壤与结构之间的相互作用。 (弹性基础)。最后,比较了有和没有SSI效应的分析结果。

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