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THREE-DIMENSIONAL NUMERICAL STUDY ON CONDENSATION- CONDUCTION-EVAPORATION COUPLED HEAT TRANSFER

机译:凝结-传导-蒸发耦合传热的三维数值研究

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In passive containment cooling system on AP-series nuclear power plants, condensation-conduction-evaporation coupled heat transfer is crucial in taking the energy from inside of containment to the outside environment. A numerical study on this heat transfer process is presented in this paper. Condensation film on the containment inside surface and cooling water film on the outside surface are described by a liquid-film tracking model. Heat conduction through containment shell is usually modeled to be one dimensional (1-D) in common thermal-hydraulic computer codes. However, heat is always transferred from hoter regions of the shell to the cooler regions in all directions, and this phenomenon becomes more prominent when the containment surface is not fully covered with liquid film. Three dimensional (3-D) heat conduction in containment shell is carefully studied, and the quantified results are compared to that obtained from 1-D model.
机译:在AP系列核电站的被动安全壳冷却系统中,凝结-传导-蒸发耦合传热对于将能量从安全壳内部带到外部环境至关重要。本文对这种传热过程进行了数值研究。容器内表面的冷凝膜和外表面的冷却水膜通过液膜跟踪模型进行描述。通过安全壳的热传导通常以常见的热工液压计算机代码建模为一维(1-D)。然而,热量总是在各个方向上从壳的较热区域传递到较冷区域,并且当容纳表面没有完全被液膜覆盖时,这种现象变得更加明显。仔细研究了安全壳中的三维(3-D)导热,并将量化结果与从1-D模型获得的结果进行了比较。

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