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首页> 外文期刊>Journal of Low Temperature Physics >A Direct Numerical Simulation of Axisymmetric Cryogenic Chill Down in a Pipe in Microgravity
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A Direct Numerical Simulation of Axisymmetric Cryogenic Chill Down in a Pipe in Microgravity

机译:微重力作用下管道内轴对称低温冷却的直接数值模拟

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Cryogenic two-phase flow with phase change heat transfer, consisting of a saturated liquid slug translating in its own superheated vapor in a circular pipe, was numerically simulated. The cryogenic chill down process was simplified by assuming ideal inverted annular flow regime. The method used is based on a sharp interface concept and developed on an Eulerian Cartesian fixed-grid with a cut-cell scheme and marker points to track the moving interface. The unsteady, axisymmetric Navier-Stokes equations in both liquid and vapor phases are solved separately and used to compute the velocity, pressure, and temperature fields and the deformation of the liquid core very accurately. Three most common cryogenic fluids, viz. nitrogen, oxygen, and argon were included in the study. The influence of non-dimensional parameters like Reynolds number Weber number , and Jakob number on flow characteristics was studied by systematically varying only one at a time. was found to affect the mass flow rates, but did not have a significant influence on the wall cooling or the Nusselt number. affected the interface shape at the leading edge of the liquid slug, also influencing the heat transfer and velocity field there. affects all three quantities of interest, i.e., mass flow rate, wall cooling, and the Nusselt number.
机译:数值模拟了具有相变传热的低温两相流,该流由饱和的液态团块转变成自身在圆管中的过热蒸气组成。通过假设理想的倒置环形流态简化了低温冷却过程。所使用的方法基于尖锐的界面概念,并在带有切割单元方案和标记点的欧拉笛卡尔固定网格上进行开发,以跟踪移动界面。分别求解液相和气相中的非稳态轴对称Navier-Stokes方程,并将其用于非常精确地计算速度,压力和温度场以及液核的变形。三种最常见的低温流体,即。研究中包括了氮气,氧气和氩气。通过一次仅系统地改变一个参数,研究了雷诺数,韦伯数,雅各布数等无量纲参数对流动特性的影响。被发现影响质量流量,但对壁冷却或Nusselt数没有显着影响。影响液塞前缘的界面形状,也影响那里的传热和速度场。影响所有三个感兴趣的量,即质量流量,壁冷和Nusselt数。

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