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Numerical Analysis of Pulsating Heat Pipe Based on Separated Flow Model

机译:基于分离流模型的脉动热管数值分析

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The examination oh the operating mechanism of a pulsating heat pipe (PHP) using visualization revealed that the working fluid in the PHP oscillated to the axial direction by the contraction and expansion of vapor plugs. This contraction and expansion is due to the formation and extinction of bubbles in the evaporating and condensing section, respectively. In this paper, a theoretical model of PHP was presented. The theoretical model was based on the separated flow model with two liquid slugs and three vapor plugs. The results show that the diameter, surface tension and charge ratio of working fluid have significant effects on the performance of the PHP. The following conclusions were obtained. The periodic oscillations of liquid slugs and vapor plugs were obtained under specified parameters. When the hydraulic diameter of the PHP was increased to d = 3 mm, the frequency of oscillation decreased. By increasing the charging ratio from 40 to 60 by volume ratio, the pressure difference between the evaporating section and condensing section increased, the amplitude of oscillation reduced, and the oscillation frequency decreased. The working fluid with higher surface tension resulted in an increase in the amplitude and frequency of oscillation. Also the average temperature of vapor plugs decreased.
机译:使用可视化技术检查脉动热管(PHP)的运行机理后发现,PHP中的工作流体通过蒸汽塞的收缩和膨胀而沿轴向振荡。该收缩和膨胀分别是由于在蒸发和冷凝部分中气泡的形成和消灭。本文提出了一种PHP的理论模型。该理论模型基于带有两个液体段塞和三个蒸汽塞的分离流动模型。结果表明,工作液的直径,表面张力和电荷比对PHP的性能有重要影响。得到以下结论。在规定的参数下获得了液塞和蒸气塞的周期性振动。当PHP的水力直径增加到d = 3 mm时,振荡频率降低。通过将充气比从40增加到60(体积比),蒸发部分和冷凝部分之间的压力差增加,振荡幅度减小,并且振荡频率降低。具有较高表面张力的工作流体导致振荡的幅度和频率增加。蒸汽塞的平均温度也降低了。

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