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Numerical investigation into the inclination effect on conjugate pool boiling and the condensation of steam in a passive heat removal system

机译:被动除热系统对共轭池沸腾和蒸汽凝结倾斜影响的数值研究

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In this study, the effect of the tube inclination angle on simultaneous condensation inside and pool boiling outside a smooth tube is investigated numerically. Such conjugate phase-change phenomena happen in many heat exchangers, particularly in passive heat removal systems. The simulated domain is a pool filled with water liquid at atmospheric pressure, with a submerged tube with inner and outer diameters of 19 mm and 25 mm respectively. The fluid inside the tube is considered to be the steam at the saturation temperature of 250 °C, which is a very common operating condition in many heat removal systems. The flow field is considered to be turbulent, unsteady and three dimensional. The effect of conduction through the tube thickness is also taken into account. The Eulerian-Eulerian multiphase flow approach is utilized to express the governing equation of the problem. ANSYS FLUENT 17.1 is also used to solve the governing equations. The effects of various parameters, such as tube orientation, steam mass flux and inlet steam quality on the condensation and pool boiling heat transfer coefficients, are investigated. The results show good agreement with the available experimental data. The condensation heat transfer coefficient is found to increase with an increase in the inlet steam quality and steam mass flow rate. The results of the effect of inclination on the heat transfer coefficient are also compatible with the previous experimental works. Moreover, the results show that there is a partial maximum point for the total heat transfer coefficient at an inclination angle betweenθ = −60° andθ = −30°.
机译:在这项研究中,数值研究了管子倾角对光滑管子内部同时凝结和池外沸腾同时发生的影响。这种共轭相变现象发生在许多热交换器中,特别是在被动排热系统中。模拟域是一个充满大气压水液的水池,其浸没管的内径和外径分别为19 mm和25 mm。管内的流体被认为是饱和温度为250 C时的蒸汽,这是许多除热系统中非常普遍的工作条件。流场被认为是湍流,不稳定和三维的。还考虑了通过管厚度的传导影响。利用欧拉-欧拉多相流方法来表达问题的控制方程。 ANSYS FLUENT 17.1也用于求解控制方程。研究了管道定向,蒸汽质量通量和入口蒸汽质量等各种参数对冷凝水和池沸腾传热系数的影响。结果表明与现有实验数据吻合良好。发现凝结传热系数随着入口蒸汽质量和蒸汽质量流量的增加而增加。倾斜度对传热系数的影响结果也与先前的实验工作相吻合。此外,结果表明,在θ= -60°和θ= -30°之间的倾斜角处,总传热系数存在局部最大值。

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