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Improvement of HYCA3D code and experimental verification in rectangular geometry

机译:HYCA3D代码的改进和矩形几何中的实验验证

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Concerns about the local hydrogen behavior in a nuclear power plant (NPP) containment during severe accidents have increased with the 10CFR50.34(f) regulation after TMI accident. Consequently, investigations on the local hydrogen behaviors under severe accident conditions were required. An analytical model named HYCA3D was developed at Seoul National University (SNU) to predict the thermodynamics and the three dimensional behavior of a hydrogen/steam mixture, within a subdivided containment volume following hydrogen generation during a severe accident in NPPs. In this study, the HYCA3D code was improved with a steam condensation and spray model, and verified with hydrogen mixing experiments executed in a SNU rectangular mixing facility. Helium was used to simulate hydrogen in both the calculations and the experiments. The calculation results show good agreement with the experimental data.
机译:TMI事故发生后,随着10CFR50.34(f)法规的出现,对严重事故期间核电厂(NPP)内的局部氢行为的担忧增加了。因此,需要对严重事故条件下的局部氢行为进行调查。首尔国立大学(SNU)开发了一种名为HYCA3D的分析模型,用于预测核电厂严重事故中产氢后细分的容积内氢/蒸汽混合物的热力学和三维行为。在这项研究中,HYCA3D代码使用蒸汽冷凝和喷雾模型进行了改进,并通过在SNU矩形混合设备中执行的氢混合实验进行了验证。在计算和实验中均使用氦气模拟氢气。计算结果与实验数据吻合良好。

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