Application of JSME Seismic Code Case by Elastic-Plastic Response Analysis to Practical Piping System

Akihito Otani, Satoru Kai, N. Kaneko, Tomoyoshi Watakabe, M. Ando, K. Tsukimori
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Abstract

A Code Case in the framework of JSME Nuclear Codes and Standards is being developed to incorporate a seismic design evaluation methodology for piping by means of advanced elastic-plastic response analysis methods and strain-based fatigue criteria. The Code Case as an alternative seismic design rule over the current rule will provide a more rational seismic design evaluation than the current criteria. This paper demonstrates an application result of the JSME Seismic Code Case to an actual complex piping system. The secondary coolant piping system of Japanese Fast Breeder Reactor, Monju, was selected as a representative of the complex piping systems. The elastic-plastic time history analysis for the piping system was performed and the piping system has been evaluated according to the JSME Seismic Code Case. The evaluation by the Code Case provides a reasonable result in terms of the piping fatigue evaluation that governs seismic integrity of piping systems. Moreover, it is found that the supporting forces and the response accelerations of the piping system obtained by the elastic-plastic response analysis also become more rational results than those with the current elastic response analysis. The contradiction of two requirements in piping design, flexibility for thermal expansion and rigidity for seismic response, can be effectively relaxed by use of the Code Case being developed.
基于弹塑性响应分析的JSME抗震规范实例在实际管道系统中的应用
正在开发JSME核规范和标准框架内的规范案例,通过先进的弹塑性响应分析方法和基于应变的疲劳标准,将管道的抗震设计评估方法纳入其中。规范案例作为替代现行规范的抗震设计规范,将提供比现行规范更合理的抗震设计评价。本文介绍了JSME抗震规范实例在实际复杂管道系统中的应用效果。日本快中子增殖反应堆文殊反应堆的二次冷却剂管道系统被选为复杂管道系统的代表。对管道系统进行了弹塑性时程分析,并按照JSME抗震规范对管道系统进行了评价。通过规范实例的评估,为管道系统抗震完整性的疲劳评估提供了合理的结果。此外,通过弹塑性响应分析得到的管道系统的支撑力和响应加速度也比目前的弹性响应分析得到的结果更加合理。热膨胀柔性和地震反应刚性这两个要求在管道设计中的矛盾,可以通过正在开发的规范案例得到有效缓解。
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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