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Level-set based numerical simulation of film condensation in a vertical downward channel flow

机译:基于水平集的垂直向下流道中膜凝结的数值模拟

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摘要

Numerical simulation of film condensation in a vertical downward channel flow is performed by employing the sharp-interface level-set method which can accurately implement the saturation temperature and phase-change mass flux conditions at the liquid-vapor interface. An analytical model for the internal film condensation is also developed by including the effect of vapor flow in the classical Nusselt model. The numerical results for film condensation in the laminar regime show good agreement with the analytical solutions. The level-set method is applied to investigate the effects of vapor velocity and wall temperature on the condensate film thickness and heat flux in the laminar and wavy regimes.
机译:垂直向下通道流动中膜凝结的数值模拟是通过使用锐界面水平设置方法进行的,该方法可以精确地实现液-气界面处的饱和温度和相变质量通量条件。通过将蒸汽流的影响包括在经典的Nusselt模型中,还开发了内部膜冷凝的分析模型。层流状态下薄膜凝结的数值结果与解析解吻合良好。采用水平集方法研究层流和波浪状态下蒸汽速度和壁温对凝结水膜厚度和热通量的影响。

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