Risk-Informed, Performance-Based Design of a Seismic Isolation System for a Nuclear Power Plant

IF 5 2区 工程技术 Q1 ENGINEERING, CIVIL
Faizan Ul Haq Mir, Ching-Ching Yu, Mohamed M. Talaat, Benjamin M. Carmichael, Brandon M. Chisholm, Andrew S. Whittaker
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引用次数: 0

Abstract

A methodology to achieve a user-specified performance target for a seismic base-isolation system for a nuclear power plant (NPP) is presented and demonstrated. The isolation system, composed of both isolators and damping devices, is treated as a structure, system, and component (SSC) per US nuclear practice. Acceptable performance is defined as sufficient horizontal displacement capacity of the isolators and dampers to achieve a user-specified target performance goal (TPG). The methodology involves the generation of a seismic displacement demand curve for the isolation system, expressed as the mean annual frequency of exceedance (MAFE) of a horizontal displacement, and a fragility function for the isolation system. Information is presented on the derivation of an isolation system fragility function. The methodology is described via application to six isolation systems installed beneath an advanced NPP, founded on two different soil domains, and located at Clinch River in East Tennessee, USA.

核电厂隔震系统基于性能的风险设计
提出并论证了一种实现核电厂抗震基础隔震系统用户指定性能目标的方法。隔离系统由隔离器和阻尼装置组成,按照美国核实践被视为结构、系统和组件(SSC)。可接受的性能被定义为隔离器和阻尼器有足够的水平位移能力来实现用户指定的目标性能目标(TPG)。该方法包括生成隔震系统的地震位移需求曲线,表示为水平位移的平均年超过频率(MAFE),以及隔震系统的易损性函数。介绍了隔离系统脆弱性函数的推导过程。该方法通过安装在先进核电站下面的六个隔离系统的应用进行了描述,这些隔离系统建立在两个不同的土壤域上,位于美国田纳西州东部的克林奇河。
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来源期刊
Earthquake Engineering & Structural Dynamics
Earthquake Engineering & Structural Dynamics 工程技术-工程:地质
CiteScore
7.20
自引率
13.30%
发文量
180
审稿时长
4.8 months
期刊介绍: Earthquake Engineering and Structural Dynamics provides a forum for the publication of papers on several aspects of engineering related to earthquakes. The problems in this field, and their solutions, are international in character and require knowledge of several traditional disciplines; the Journal will reflect this. Papers that may be relevant but do not emphasize earthquake engineering and related structural dynamics are not suitable for the Journal. Relevant topics include the following: ground motions for analysis and design geotechnical earthquake engineering probabilistic and deterministic methods of dynamic analysis experimental behaviour of structures seismic protective systems system identification risk assessment seismic code requirements methods for earthquake-resistant design and retrofit of structures.
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