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Finite Element Analysis of Hydrogen Concentration for Blister Growth Estimation of CANDU Pressure Tube

机译:氢气浓度的有限元分析,用于估算CANDU压力管的气泡生长

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摘要

The pressure tubes, which contain high temperature heavy water and fuel, are within the core of a CANDU nuclear reactor, and are thus subjected to high stresses, temperature gradient, and neutron flux. Further, it is well known that pressure tubes of cold-worked Zr-2.5Nb materials result in hydrogen diffusion, which create fully-hydrided regions (frequently called Blister). Thus a proper investigation of hydrogen diffusion within zirconium-alloy nuclear components, such as CANDU pressure tube and fuel channels is essential to predict the structural integrity of these components, In this respect, this paper presents numerical investigation of hydrogen diffusion to quantify the hydrogen concentration for blister growth of CANDU pressure tube. For this purpose, coupled temperature-hydrogen diffusion analyses are performed by means of 2-dimensional finite element analysis. Comparison of predicted temperature field and blister with published experimental data shows good agreement.
机译:包含高温重水和燃料的压力管位于CANDU核反应堆的核心内,因此承受高应力,温度梯度和中子通量。此外,众所周知,冷加工的Zr-2.5Nb材料的压力管会导致氢扩散,这会形成完全水化的区域(通常称为气泡)。因此,对锆合金核组件(例如CANDU压力管和燃料通道)内氢扩散的正确研究对于预测这些组件的结构完整性至关重要。在这方面,本文提出了氢扩散的数值研究以量化氢浓度用于CANDU压力管的水泡生长。为此,借助于二维有限元分析来进行温度-氢扩散耦合分析。将预测的温度场和水泡与已发布的实验数据进行比较显示出很好的一致性。

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