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A nonlinear soil-structure interaction analysis technique based on seismic isolation design response spectrum for seismically isolated nuclear structures with rigid basemat

机译:基于地震隔离设计响应谱的非线性土结构相互作用分析技术与刚性基础

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摘要

Seismic Analysis of Safety-Related Nuclear Structures (ASCE 4-16) offers a two-step nonlinear soil-structure interaction analysis procedure for seismically base-isolated structures based on the seismic isolation design response spectrum. The two steps are (I) development of seismic isolation design response spectrum at the foundation level of an isolated structure using frequency domain soil-structure interaction (SSI) analysis for an equivalent linear SSI system and (II) nonlinear time domain analysis of the isolated structure using foundation input motions, which is consistent with the seismic isolation design response spectrum. In step II, the rocking component of the structure shall be considered when its effects are significant. However, the ASCE 4-16 does not present how to consider the rocking input. In this study, we propose a method of taking account the rocking component of a base-isolated structure with rigid basemat. Specifically, this paper presents a method of developing rocking input motion that is fully coupled with horizontal input motion at the base of the isolated structure. The method was verified by comparing numerical results using the rocking input for a base-isolated nuclear power plant with rigid basemat on a compliant soil medium with those of a refined nonlinear response history analysis.
机译:安全相关核结构的地震分析(ASCE 4-16)为基于地震隔离设计响应谱的地震基础隔离结构提供了两步的非线性土壤结构相互作用分析程序。这两个步骤是(i)使用频域土结构相互作用(SSI)分析的频域土结构相互作用(SSI)分析和孤立的非线性时域分析的频域土结构相互作用(SSI)分析,这两个步骤是在孤立结构的基础水平的地震隔离设计响应谱的发展。(ii)隔离的非线性时域分析结构使用基础输入运动,这与地震隔离设计响应谱一致。在步骤II中,当其效果显着时,应考虑结构的摇摆部件。然而,ASCE 4-16不提出如何考虑摇摆输入。在本研究中,我们提出了一种考虑到刚性底族的基部隔离结构的摇摆成分的方法。具体地,本文介绍了一种开发摇摆输入运动的方法,该摇动输入运动完全耦合与隔离结构基部的水平输入运动。通过将数值结果与基型核电站的摇摆输入进行比较,通过在符合的土壤介质上与符合的土壤介质的刚性基础进行比较,验证该方法。

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