Seismic Response Analysis of Isolated Nuclear Power Plants with Friction Damper Isolation System

Chuan Qin, Wenguang Liu, Wenfu He
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引用次数: 4

Abstract

In this paper, a new friction damper isolation system (FDIS) is suggested for isolated nuclear power plants (NPPs). Seismic responses of NPPs are accomplished by means of the finite element approach and setting up a representative multi-particle model of NPPs. Results in terms of time domain analysis show that response of structure supported by FDIS under small seismic are correspond to fixed structure, and perform similar properties as conventional isolated structure under large seismic. The yield force of friction damper is one of the important parameters which are related to responses and absorbing energy under seismic input energy in new isolated structures. Compared with cases of different yield level, responses of superstructures increase respectively with yield force, while displacements of isolation layer decrease effectively. The proposed new isolation system could be beneficial in enhancing the seismic safety of isolated NPPs.

采用摩擦阻尼隔震系统的隔离核电站地震反应分析
本文提出了一种适用于隔离核电站的新型摩擦阻尼隔震系统。采用有限元方法,建立了具有代表性的核电站多粒子模型,对核电站的地震反应进行了分析。时域分析结果表明,FDIS支撑结构在小地震作用下的响应与固定结构相对应,在大地震作用下与常规隔震结构具有相似的性能。摩擦减振器的屈服力是新型隔震结构在地震输入能量作用下的反应和吸收能量的重要参数之一。与不同屈服水平的情况相比,上部结构的响应随屈服力的增大而增大,隔震层的位移则有效减小。所提出的隔震系统有助于提高隔震核电站的抗震安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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