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Numerical simulations of the liquid-vapor phase change dynamic processes in a flat micro heat pipe

机译:平板式微型热管中液体-蒸汽相变动力学过程的数值模拟

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The performance of a flat micro heat pipe (FMHP) is highly dependent on the wick geometry. Understanding the dynamic behaviors of liquid-vapor phase change in the FMHP is of significance for its optimal design, especially the wick geometry. In this work, a pore-scale three-dimensional pseudopotential lattice Boltzmann model coupled with a thermal model is developed to study the transient behaviors of the FMHP without any empirical equations. In the developed model, the curvature of liquid-vapor meniscus can be automatically adjusted according to the external heat source and the receding behavior of liquid films can be captured. Besides, effects of detailed wick microstructures on the performance of the FMHP are systematically studied. The results show that a more hydrophilic grooved wick yields a higher capillary force to improve the working ability. The working temperature and liquid charge amount significantly affect the performance of the FMHP. The grooved-type wick with a trapezoid shape has the best performance, next by the rectangular shape and then inversed trapezoid shape. For the micro-pillar type wick, with a relatively small pillar pitch at the evaporation section and a large pitch at the condensation section can improve the working performance.
机译:扁平微型热管(FMHP)的性能高度取决于灯芯的几何形状。理解FMHP中液-汽相变的动态行为对于其最佳设计(尤其是灯芯几何形状)具有重要意义。在这项工作中,开发了一个带有热模型的孔尺度三维伪势格子玻尔兹曼模型,以研究没有任何经验方程的FMHP的瞬态行为。在开发的模型中,可以根据外部热源自动调节液体-蒸汽弯月面的曲率,并且可以捕获液膜的后退行为。此外,系统地研究了详细的灯芯微观结构对FMHP性能的影响。结果表明,亲水性更高的带槽吸芯会产生更高的毛细作用力,从而提高工作能力。工作温度和液体进料量会显着影响FMHP的性能。具有梯形形状的凹槽型芯具有最佳的性能,其次是矩形形状,然后是倒梯形形状。对于微柱型芯,在蒸发部分的柱距相对较小而在冷凝部分的柱距较大可以改善工作性能。

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