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Numerical studies of the effects of jet-induced mixing on liquid-vapor interface condensation

机译:射流混合对液-气界面冷凝影响的数值研究

摘要

Numerical solutions of jet-induced mixing in a partially full cryogenic tank are presented. An axisymmetric laminar jet is discharged from the central part of the tank bottom toward the liquid-vapor interface. Liquid is withdrawn at the same volume flow rate from the outer part of the tank. The jet is at a temperature lower than the interface, which is maintained at a certain saturation temperature. The interface is assumed to be flat and shear-free and the condensation-induced velocity is assumed to be negligibly small compared with radial interface velocity. Finite-difference method is used to solve the nondimensional form of steady state continuity, momentum, and energy equations. Calculations are conducted for jet Reynolds numbers ranging from 150 to 600 and Prandtl numbers ranging from 0.85 to 2.65. The effects of above stated parameters on the condensation Nusselt and Stanton numbers which characterize the steady-state interface condensation process are investigated. Detailed analysis to gain a better understanding of the fundamentals of fluid mixing and interface condensation is performed.
机译:提出了在部分充满的低温罐中喷射诱导混合的数值解。轴对称层流从罐底部的中央部分向液-气界面排放。液体以相同的体积流量从水箱外部抽出。射流的温度低于保持在一定饱和温度下的界面温度。假定界面是平坦且无剪切的,并且凝结引起的速度与径向界面速度相比被认为可以忽略不计。有限差分法用于求解稳态连续性,动量和能量方程的无量纲形式。对喷气雷诺数范围从150到600和普朗特数范围从0.85到2.65进行计算。研究了上述参数对表征稳态界面缩合过程的缩合Nusselt和Stanton数的影响。进行了详细的分析,以更好地理解流体混合和界面冷凝的基本原理。

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    Lin Chin-Shun;

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  • 年度 1989
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