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Numerical Studies on Hydrogen Distribution in Enclosures in the Presence of Condensing Steam

机译:冷凝蒸汽存在下壳体中氢分布的数值研究

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Hydrogen release in confined spaces is an important safety issue, which is even more important in the context of severe accident in nuclear reactors. In severe accidents, hydrogen release is associated with release of steam and the condensation of steam on walls leads to increase in concentration of hydrogen in residual gas as well as condensation induced mixing. In the present paper, a model for falling film steam condensation in the presence of noncondensable gases is presented. The steam condensation model is incorporated into an in-house developed cfd code called hydrogen distribution simulator (HDS) and is used for hydrogen distribution studies. The validation of the CFD model with steam condensation against the experimental results from the CONAN facility is discussed. Subsequently, the model is applied to a typical release situation involving release of hydrogen and steam for some time and its distribution for a long time beyond it. The heat and mass transfer aspects of the problem are highlighted. It is seen that steam condensation has an important bearing on the distribution of hydrogen and the mixing behavior of gases in the enclosure.
机译:密闭空间中的氢释放是一个重要的安全问题,在核反应堆发生严重事故的情况下,这一点尤为重要。在严重事故中,氢气的释放与蒸汽的释放有关,蒸汽在壁上的冷凝会导致残留气体中氢气的浓度增加,以及冷凝引起的混合。在本文中,提出了一种在不凝性气体存在下降膜蒸汽凝结的模型。蒸汽冷凝模型被并入内部开发的cfd代码中,该代码称为氢分布模拟器(HDS),用于氢分布研究。讨论了用蒸汽冷凝对CFD模型的验证与CONAN设施的实验结果的对比。随后,将该模型应用于典型的释放情况,包括释放氢气和蒸汽一段时间,并在此之后长时间分布。该问题的传热和传质方面得到了强调。可以看出,蒸汽冷凝对氢气的分布和外壳中气体的混合行为有重要影响。

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