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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical simulation of wavy film condensation in a vertical channel with non-condensable gas
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Numerical simulation of wavy film condensation in a vertical channel with non-condensable gas

机译:垂直通道中含不凝性气体的波纹膜凝结的数值模拟

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摘要

A numerical approach for wavy film condensation in internal vapor flows containing non-condensable gas is developed by combining unsteady differential equations for the vapor region with unsteady integral boundary-layer formulations for a thin liquid region. The present approach, which can save computational time significantly, can accurately consider the condensation effect by explicitly implementing the velocity, mass flux, stress and heat flux conditions at the liquid-vapor interface. A theoretical formulation is also presented for steady film condensation containing non-condensable gas. The numerical results for steady film condensation match well with the theoretical solutions. Computations are performed to analyze the combined effects of wavy interface motion and non-condensable gas on film condensation.
机译:通过将用于蒸汽区域的非定常微分方程与用于稀薄液体区域的非定常边界层公式相结合,开发了一种在包含不可凝气体的内部蒸汽流中形成波浪状薄膜冷凝的数值方法。通过显式实现液-气界面处的速度,质量通量,应力和热通量条件,可以显着节省计算时间的本方法可以准确地考虑冷凝效果。还提出了包含不可冷凝气体的稳定膜冷凝的理论公式。稳定膜冷凝的数值结果与理论解吻合良好。进行计算以分析波状界面运动和不凝性气体对薄膜凝结的综合影响。

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