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A FLUID-SOLID FINITE ELEMENT METHOD FOR THE ANALYSIS OF REACTOR SAFETY PROBLEMS

机译:一种用于分析反应堆安全问题的流体固体有限元方法

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The work presented herein can broadly be categorized as a fluid-structure interaction problem. The response of a circular cylindrical structure subjected to cross flow is examined using the finite element method for both the liquid and the structure domains. The cylindrical tube is mounted elastically at the ends and is free to move under the action of the unsteady flow-induced forces. The fluid is considered to be partially compressible and viscous. The flow field is solved using a finite element method applied to the time-dependent Navier-Stokes equations. The cylinder motion is modeled using a five-degrees of freedom generalized shell element structural dynamics model. The numerical simulations of the response of the calandria tubes/pressure tubes, adjustor rod and shut-off rod of a nuclear reactor are presented. A few typical results are presented to assess the accuracy of the developed modules.
机译:本文呈现的工作可以广泛地分类为流体结构相互作用问题。使用用于液体和结构域的有限元方法来检查经受交叉流动的圆柱形结构的响应。圆柱形管在端部弹性地安装,并且在不稳定的流动诱导的力的作用下可以自由移动。流体被认为是部分可压缩和粘性的。使用应用于时间依赖的Navier-Stokes方程的有限元方法来解决流场。气缸运动是使用五次自由的广义壳元素结构动力学模型进行建模的。呈现了核反应堆的Calandria管/压力管,调节杆和截止杆的响应的数值模拟。提出了一些典型的结果以评估发达模块的准确性。

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