首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >INVESTIGATION OF NUMERICAL METHODS FOR MODAL ANALYSIS OF A TUBE BUNDLE WITH FLUID-STRUCTURE INTERACTION
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INVESTIGATION OF NUMERICAL METHODS FOR MODAL ANALYSIS OF A TUBE BUNDLE WITH FLUID-STRUCTURE INTERACTION

机译:流体-结构相互作用管束模态分析的数值方法研究

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Seismic analysis of tube bundle is of paramount importance in the safety assessment of nuclear installations. These analyses require in particular the calculation of frequency, mode shape and effective mass of the system eigenmodes. As fluid-structure interaction effects can significantly affect dynamic behavior of immersed structures, the numerical modeling of the tube bundle has to take into account FSI. A complete modeling of heat exchangers (including pressure vessel, tubes and fluid) is not accessible to the engineer for industrial design studies. In the past decades, homogenization methods have been studied and developed in order to model tubes and fluid through an equivalent continuous media, thus avoiding the tedious task to mesh all structure and fluid sub-domains within the tube bundle. Few of these methods have nonetheless been implemented in industrial finite element codes. In previous papers (Sigrist & Broc, Pressure Vessel and Piping, Vancouver, July 2006), a homogenization method has been developed and applied to an industrial case for the modal analysis of a nuclear rector with internal structures and coupling effects modeling. The present paper aims at investigating the application of the proposed method for the dynamic analysis of tube bundle. The homogenization method is compared with direct and indirect fluid-structure coupled methods for the calculation of eigenmode frequencies, shapes and modal masses.
机译:管束的地震分析在核装置的安全评估中至关重要。这些分析特别需要计算系统本征模的频率,模态形状和有效质量。由于流固耦合效应会显着影响沉浸结构的动力学行为,因此管束的数值建模必须考虑FSI。工程师无法进行热交换器(包括压力容器,管道和流体)的完整建模,而无法进行工业设计研究。在过去的几十年中,已经研究和开发了均质化方法,以便通过等效的连续介质对管和流体进行建模,从而避免了繁琐的任务,无法将管束内的所有结构域和流体子域划分为网格。但是,这些方法中很少有在工业有限元代码中实现的。在以前的论文(Sigrist&Broc,压力容器和管道系统,温哥华,2006年7月)中,已经开发了均质化方法并将其应用于工业案例,以对具有内部结构和耦合效应模型的核反应堆进行模态分析。本文旨在研究该方法在管束动力分析中的应用。将均质化方法与直接和间接流固耦合方法进行了比较,以计算本征模频率,形状和模态质量。

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