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Vapor condensation on liquid surface due to laminar jet-induced mixing: The effects of system parameters

机译:层流射流引起的混合在液体表面上的蒸汽凝结:系统参数的影响

摘要

The effects of system parameters on the interface condensation rate in a laminar jet induced mixing tank are numerically studied. The physical system consists of a partially filled cylindrical tank with a slightly subcooled jet discharged from the center of the tank bottom toward the liquid-vapor interface which is at a saturation temperature corresponding to the constant tank pressure. Liquid is also withdrawn from the outer part of the tank bottom to maintain the constant liquid level. The jet velocity is selected to be low enough such that the free surface is approximately flat. The effect of vapor superheat is assumed to be negligible. Therefore, the interface condensation rate can be determined from the resulting temperature field in the liquid region alone. The nondimensional form of the steady state conservation equations are solved by a finite difference method for various system parameters including liquid height to tank diameter ratio, tank to jet diameter ratio, liquid inflow to outflow area ratio, and a heat leak parameter which characterizes the uniform wall heat flux. Detailed analyses based on the numerical solutions are performed and simplified equations are suggested for the prediction of condensation rate.
机译:数值研究了系统参数对层流喷射混合罐界面凝结速率的影响。物理系统由部分填充的圆柱形储罐组成,该储罐具有略微过冷的射流,该射流从储罐底部的中心向液-气界面排放,其饱和温度对应于恒定储罐压力。液体也从罐底的外部抽出,以保持恒定的液位。选择射流速度,使其足够低,以使自由表面近似平坦。蒸汽过热的影响被认为是可以忽略的。因此,可以仅从液体区域中的所得温度场确定界面冷凝率。稳态守恒方程的无量纲形式通过有限差分法求解,包括液体高度与容器直径之比,容器与射流直径之比,液体流入与流出面积之比以及表征均匀性的热泄漏参数等各种系统参数。壁热通量。进行了基于数值解的详细分析,并提出了简化的方程式来预测冷凝率。

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