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OPTIMIZATION OF WETTABILITY GRADIENT FOR ENHANCEMENT OF THERMAL PERFORMANCE OF MICRO HEAT PIPES

机译:优化可湿性梯度以增强微热管的热性能

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Continuous increase in the integration density of microelectronic units necessitates the use of MHPs with enhanced thermal performance. Recently, the use of wettability gradients have been shown to enhance the heat transfer capacity of MHPs. In this paper, we present an optimization of axial wettability gradient to maximize the heat transfer capacity of the MHP. We use an experimentally validated mathematical model and interior point method to optimize the wettability gradient. For our analysis, we consider two cases wherein (ⅰ) the mass of working fluid is constrained, (ⅱ) mass of working fluid is a design variable. Compared to MHP with uniform high wettability and filled with a fixed mass of working fluid, optimization of the wettability gradient leads to 65% enhancement in heat transfer capacity. Similar comparisons for MHP filled with variable mass of working fluid shows more than 90% increase in the maximum heat transfer capacity due to optimization of wettability gradient.
机译:微电子单元的集成密度的不断提高,使得必须使用具有增强热性能的MHP。近来,已经显示出使用可​​湿性梯度来增强MHP的传热能力。在本文中,我们提出了轴向可湿性梯度的优化方案,以最大程度地提高MHP的传热能力。我们使用经过实验验证的数学模型和内点法来优化润湿性梯度。对于我们的分析,我们考虑两种情况,其中(ⅰ)工作流体的质量受到约束,(ⅱ)工作流体的质量是设计变量。与具有均匀高润湿性并填充固定质量的工作流体的MHP相比,优化润湿性梯度可使传热能力提高65%。对于充满可变质量工作流体的MHP的类似比较显示,由于可湿性梯度的优化,最大传热能力提高了90%以上。

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