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Efficacy of divergent minichannels on cooling performance of heat sinks with water-based MEPCM suspensions

机译:发散的迷你频道对水池冷却性能的功效水基Mepcm悬浮液

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This work aims to investigate the influence of diverging minichannels on the contribution of microencapsulated phase change material (MEPCM) suspensions in heat sinks. The cross-section divergence angle is varied from 0 degrees (parallel) to 1.38 degrees and 2.06 degrees and the behaviors of wall temperature distribution and thermal resistance are evaluated at different flow rates and heat fluxes. Furthermore, in order to clarify the effectiveness of the MEPCM suspensions, the measurements of the coefficient of performance (COP) and the figure of merit (FOM) are conducted and compared in the parallel and divergent MCHSs. It was found that increasing MEPCM particle concentration up to 10% can effectively suppress the wall temperature distributions by up to 20%, thereby reducing the difference between the bulk fluid and wall temperatures leading to the reduction of thermal resistance and the improvement of heat transfer. Diverging cross-section of channels increased the suppression of wall temperature profile by up to 33%. It also led to the enhancement of COP values (more than 2 times), especially at high Reynolds numbers (Re = 1375). It was due to the significant reduction in the required pumping power in the divergent MCHSs in comparison with that in the parallel one. However, the measurements of FOM revealed that the increase of pumping power outweighs the enhancement of heat transfer by adding MEPCMs in most of the experiments (0.7 = FOM = 1.1), especially at lower Reynolds numbers (Re = 238). Therefore, diverging minichannels is only effective to improve the contribution of MEPCM suspensions in heat sinks in a certain range of parameter combinations.
机译:这项工作旨在调查分歧迷你鳄鱼对散热器中微胶囊化相变材料(Mepcm)悬浮液的贡献的影响。横截面发散角从0度(平行)变化至1.38度,并且在不同的流速和热通量下评估壁温分布和热阻的行为。此外,为了阐明Mepcm悬浮液的有效性,在平行和发散的MCH中进行性能系数(COP)和优异(FOM)的测量。结果发现,增加的Mepcm颗粒浓度高达10%可以有效地抑制壁温分布至多20%,从而降低了散装流体和壁温之间的差异,导致热阻降低和传热的改善。发散通道的横截面增加了墙面温度曲线的抑制达33%。它还导致了对COP值(超过2次)的增强,特别是在高雷诺数(RE = 1375)。它是由于与平行的MCHS中所需的泵送功率显着降低。然而,FOM的测量结果显示泵送功率的增加超过了通过在大部分实验中添加Mepcm来增强热传递(0.7 = FOM = 1.1),尤其是在较低的雷诺数(RE = 238)。因此,发散的百分比仅有效改善散热器在一定范围的参数组合中的Mepcm悬浮液的贡献。

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