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Estimation of Leak Rate Through Cracks in Bimaterial Pipes in Nuclear Power Plants

机译:核电厂双材料管道中的裂纹泄漏率估算

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The accurate estimation of leak rate through cracks is crucial in applying the leak before break (LBB) concept to pipeline design in nuclear power plants. Because of its importance, several programs were developed based on the several proposed flow models, and used in nuclear power industries. As the flow models were developed for a homogeneous pipe material, however, some difficulties were encountered in estimating leak rates for bimaterial pipes. In this paper, a flow model is proposed to estimate leak rate in bimaterial pipes based on the modified Henry–Fauske flow model. In the new flow model, different crack morphology parameters can be considered in two parts of a flow path. In addition, based on the proposed flow model, a program was developed to estimate leak rate for a crack with linearly varying cross-sectional area. Using the program, leak rates were calculated for through-thickness cracks with constant or linearly varying cross-sectional areas in a bimaterial pipe. The leak rate results were then compared and discussed in comparison with the results for a homogeneous pipe. The effects of the crack morphology parameters and the variation in cross-sectional area on the leak rate were examined and discussed.
机译:通过裂缝准确估计泄漏率,对于将破裂前泄漏(LBB)概念应用于核电站的管道设计至关重要。由于其重要性,在几个拟议的流量模型的基础上开发了几个程序,并用于核电行业。然而,由于开发了用于均质管道材料的流动模型,因此在估算双材料管道的泄漏率时遇到了一些困难。在本文中,提出了一种基于修正的Henry–Fauske流量模型的流量模型,用于估计双材料管道的泄漏率。在新的流动模型中,可以在流动路径的两个部分中考虑不同的裂纹形态参数。另外,基于提出的流动模型,开发了一个程序来估计横截面面积线性变化的裂缝的泄漏率。使用该程序,可以计算出双材料管道中横截面面积恒定或线性变化的贯穿厚度裂纹的泄漏率。然后将泄漏率结果与同质管道的结果进行比较和讨论。研究并讨论了裂纹形态参数和横截面积变化对泄漏率的影响。

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