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首页> 外文期刊>International Journal of Thermal Sciences >Thermal-hydraulic performance of interrupted microchannel heat sinks with different rib geometries in transverse microchambers
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Thermal-hydraulic performance of interrupted microchannel heat sinks with different rib geometries in transverse microchambers

机译:中断微通道散热器的热液压性能在横向微容器中具有不同的肋骨几何形状

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摘要

The thermal-hydraulic performance of microchannel heat sinks with ribs in the interrupted transverse micro chambers is studied using a three-dimensional conjugated heat transfer model and considering entrance effect, viscous heating and temperature-dependent thermophysical properties. Five different configurations of ribs and four lengths along the flow direction for every rib configuration are selected to analyze the effects of rib geometry on the thermal-hydraulic performance. The five rib configurations are rectangular, backward triangular, diamond, forward triangular and ellipsoidal, and the rib geometry parameters include expansion-constriction profile, ratio and length. The effects of rib geometry on thermal-hydraulic performance are firstly examined by the variations of friction factor and Nusselt number with Reynolds number, and corresponding correlations are proposed. Then, the conductive, convective and fluid capacitive thermal resistances are analyzed to obtain some insight into the basic heat transfer mechanism. Next, the entropy generation rates due to heat transfer and fluid friction are investigated for the analysis of the lost available work and irreversibility in the heat transfer process. Finally, the performance evaluation criteria is calculated to comprehensively assess the performance of such interrupted microchannel heat sinks with different rib geometry. For the studied operation parameters and rib geometries, the interrupted microchannel heat sinks with ribs in the transverse microchambers show a 4-31% decrease in the total thermal resistance, a 4-26% decrease in the total entropy generation rates, the maximum value 1.39 in performance evaluation criteria, compared with the straight microchannel heat sink.
机译:使用三维共轭传热模型研究中断横向微室中的微通道散热器的热液压性能,并考虑入口效果,粘性加热和温度依赖性热物理性能。选择五种不同的肋条和四个长度沿着每个肋骨配置的流动方向的四长度,以分析肋骨几何形状对热液压性能的影响。五个肋部配置是矩形的,后向三角形,金刚石,前向三角形和椭圆形,肋几何参数包括膨胀 - 收缩曲线,比例和长度。首先通过用雷诺数的摩擦因子和泡沫数的变化来检查肋骨几何形状对热液压性能的影响,提出了相应的相关性。然后,分析导电,对流和流体电容热阻,以获得对基本传热机制的一些洞察力。接下来,研究了由于传热和流体摩擦引起的熵产生速率用于分析传热过程中的可用工作和不可逆转性。最后,计算性能评估标准以综合评估具有不同肋几何形状的这种中断微通道散热器的性能。对于研究的操作参数和肋骨几何形状,横向微络合物中的中断的微通道散热器具有肋骨中的肋条的总热阻降低4-31%,总熵产生速率降低4-26%,最大值1.39在绩效评估标准中,与直微通道散热器相比。

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