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Fluid-Structure Interaction Effects Modeling for the Modal Analysis of a Nuclear Pressure Vessel

机译:核压力容器模态分析的流固耦合效应模型

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The present paper deals with the modal analysis of a nuclear reactor with fluid-structure interaction effects. The proposed study aims at describing various fluid-structure interaction effects using several numerical approaches. The modeling lies on a classical finite element discretization of the coupled fluid-structure equation, enabling the description of added mass and added stiffness effects. A specific procedure is developed in order to model the presence of internal structures within the nuclear reactor, based on periodical homogenization techniques. The numerical model of the nuclear pressure vessel is developed in a finite element code in which the homogenization method is implemented. The proposed methodology enables a convenient analysis from the engineering point of view and gives an example of the fluid-structure interaction effects, which are expected on an industrial structure. The modal analysis of the nuclear pressure vessel is then performed and highlights of the relative importance of FSI effects for the industrial case are evaluated: the analysis shows that added mass effects and confinement effects are of paramount importance in comparison to added stiffness effects.
机译:本文涉及具有流固耦合效应的核反应堆的模态分析。拟议的研究旨在使用几种数值方法描述各种流体-结构相互作用的影响。该模型基于耦合流体结构方程的经典有限元离散化,从而能够描述增加的质量和增加的刚度效果。基于周期性均质化技术,开发了一种特定的程序以对核反应堆内部结构的存在进行建模。用有限元代码开发核压力容器的数值模型,并在其中实现均质化方法。所提出的方法能够从工程的角度进行方便的分析,并给出了在工业结构上预期的流固耦合效应的示例。然后进行了核压力容器的模态分析,并评估了FSI效应在工业案例中的相对重要性的要点:分析表明,与增加的刚度效应相比,增加的质量效应和约束效应至关重要。

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