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Numerical simulation of high-temperature creep deformation in Zr-2.5%Nb pressure tubes of CANDU reactors

机译:Zr-2.5%NB压力管中高温蠕变变形的数值模拟

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The present paper deals with the development of a numerical approach to predict thermal creep in pressure tubes of CANDU nuclear power reactors. This phenomenon plays a crucial role under accident conditions, where the core can reach high temperature and the pressure tubes can suffer thermal creep with important radial deformation usually named "Ballonning". The Balloning strain in CANDU pressure tubes is a difficult issue from the mathematical point of view due to the visco-plastic nature of the deformation, and the material properties of the tubes, which are made of a Zr-2:5%Nb alloy that presents micro-structural phase change at temperatures close to 800 degrees C. For this reason, an explicit strategy was implemented in OpenFOAM-5.0 (R) assuming the uniaxial deformation in radial direction, neglecting the rotational strains. The proposed model is assessed by reproducing experimental tests before to be applied to model the response of CANDU pressure tubes under Station Blackout and Loss Of Coolant Accident conditions.
机译:本文涉及开发一种预测甘蓝核电反应堆压力管热蠕变的数值方法。这种现象在事故条件下起着至关重要的作用,其中核心可以达到高温,压力管可以遭受热蠕变,具有重要的径向变形通常被命名为“气球”。蜡烛压力管中的投球应变是由于变形的粘塑性本质的数学观点的难题,以及由Zr-2:5%Nb合金制成的管的材料特性在接近800摄氏度的温度下呈现微结构相变。因此,在OpenFoam-5.0(R)中实施了明确的策略,假设在径向方向上的单轴变形,忽略旋转菌株。通过在应用前再现实验测试来评估所提出的模型,以模拟烛台压力管在驻车停沟和冷却液事故条件下的损失的响应。

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