Floor Response Spectrum Method of Multiply Supported Piping System Assisted by Time History Analysis

Y. Takayama, Ayaka Yoshida, Nobuyoshi Iriki, Eiichi Maeda
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Abstract

The independent support motion response spectrum method (ISM) is currently used for seismic analysis to calculate the response of multiply supported piping with independent inputs of support excitations. This approach may derive considerable overestimation in the combination of group responses under the absolute sum rule of NUREG-1061 [1]. Then authors have developed an advanced method of the ISM approach named SATH (Spectrum Method Assisted by Time History Analysis). In the SATH method, both of floor response spectra and time histories of floor acceleration are used as independent inputs of support excitations. The group responses are summed with correlation coefficients which are calculated by considering each time history of modal response by independent inputs of support excitations. In this paper, the necessity of taking the effects of correlation coefficients for the group responses into account in the ISM approach is examined. The SATH method has advantage to derive a more realistic sum rule of the group responses and applicability for the actual design.
时程分析辅助下多支管系楼板反应谱法
独立支承运动反应谱法(ISM)是目前地震分析中常用的计算具有独立支承输入的多支承管道响应的方法。这种方法在nuregg -1061的绝对和规则下组合群体反应时可能会产生相当大的高估[1]。在此基础上,作者提出了一种更先进的ISM方法,称为SATH(谱法辅助时程分析)。在SATH方法中,楼板响应谱和楼板加速度时程同时作为支撑激励的独立输入。通过考虑独立的支承激励输入的模态响应的每个时间历史,计算了群响应的相关系数。本文探讨了在ISM方法中考虑相关系数对群体响应影响的必要性。该方法的优点是能推导出更符合实际的群响应和规则,对实际设计具有适用性。
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