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Fracture mechanical evaluation of an in-vessel melt retention scenario

机译:容器内熔体保留场景的断裂力学评估

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This paper presents methods to compute J-integral values for cracks in two- and three-dimensional thermo-mechanical loaded structures using the finite element code ANSYS. The developed methods are used to evaluate the behavior of a crack on the outside of an emergency cooled reactor pressure vessel (RPV) during a severe core melt down accident. It will be shown, that water cooling of the outer surface of a RPV during a core melt down accident can prevent vessel failure due to creep and ductile rupture. Further on, we present J-integral values for an assumed crack at the outside of the lower plenum of the RPV, at its most stressed location for an emergency cooling (thermal shock) scenario.
机译:本文提出了使用有限元代码ANSYS计算二维和三维热机械载荷结构中裂纹J积分值的方法。所开发的方法用于评估严重堆芯熔化事故期间应急冷却反应堆压力容器(RPV)外部的裂纹行为。将显示出,在堆芯熔化事故期间,RPV外表面的水冷可以防止由于蠕变和延性破裂而引起的容器故障。进一步地,我们给出了RPV下部通风系统外部,在紧急冷却(热冲击)场景中应力最大的位置处的假定裂纹的J积分值。

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