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Fluid Effects on the Core Seismic Behavior of a Liquid Metal Reactor

机译:液体对液态金属反应堆堆芯抗震性能的影响

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摘要

In this paper, a numerical application algorithm for applying the CFAM (Consistent Fluid Added Mass) matrix for a core seismic analysis is developed and applied to the 7-ducts core system to investigate the fluid effects on the dynamic characteristics and the seismic time history responses. To this end, three cases such as the in-air condition, the in-water condition without the fluid coupling terms, and the in-water condition with the fluid coupling terms are considered in this paper. From modal analysis, the core duct assemblies revealed strongly coupled out-of-phase vibration modes unlike the other cases with the fluid coupling terms considered. From the results of the seismic time history analysis, it was also verified that the fluid coupling terms in the CFAM matrix can significantly affect the impact responses and the seismic displacement responses of the ducts.
机译:本文开发了一种将CFAM矩阵应用于核心地震分析的数值应用算法,并将其应用于7管道核心系统,以研究流体对动力特性和地震时程响应的影响。 。为此,本文考虑了三种情况,例如空气条件,没有流体耦合项的水下条件和具有流体耦合项的水下条件。从模态分析来看,与其他情况不同(考虑了流体耦合项),核心导管组件显示出强耦合的异相振动模式。根据地震时程分析的结果,还证实CFAM矩阵中的流体耦合项可以显着影响管道的冲击响应和地震位移响应。

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