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首页> 外文期刊>Annals of nuclear energy >Vibration analysis of the pressure vessel internals of WWER- l000 type reactors with consideration of fluid--structure interaction
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Vibration analysis of the pressure vessel internals of WWER- l000 type reactors with consideration of fluid--structure interaction

机译:考虑流固耦合的WWER-1000型反应堆压力容器内部振动分析

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The influence of fluid-structure interaction (FSI) on vibration modes is investigated using the finite element method. The method of modelling is verified by comparing the finite element results with the exact analytical solution of a simple fluid-shell test system. It is shown that the method of coupling between structural and fluid elements is important for the accuracy of the eigen frequencies. The vibration modes of the reactor pressure vessel and its internals of a WWER- l000 type reactor are calculated. The FSI causes a considerable down shift of the shell mode frequencies of pressure vessel, core barrel and thermal shield. Some bending modes which exhibit a relative displacement between pressure vessel and core barrel or between core barrel and thermal shield are significantly affected too. Some simple analytical approaches to consider the FSI are discussed on the basis of the numerical results.
机译:使用有限元方法研究了流固耦合对振动模式的影响。通过将有限元结果与简单的液壳测试系统的精确解析解进行比较,验证了建模方法的有效性。结果表明,结构要素和流体要素之间的耦合方法对于本征频率的准确性很重要。计算了WWER-1000型反应堆的反应堆压力容器及其内部的振动模式。 FSI导致压力容器,岩心炮管和隔热罩的壳模频率大幅下降。在压力容器与岩心筒之间或岩心筒与隔热罩之间呈现相对位移的某些弯曲模式也会受到显着影响。在数值结果的基础上,讨论了一些考虑FSI的简单分析方法。

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