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PERFORMANCE ANALYSIS OF DOUBLE-LAYER MICROCHANNEL HEAT SINK WITH VARIOUS MICROCHANNEL SHAPES

机译:双层微通道散热器具有各种微通道形状的性能分析

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摘要

The thermal hydraulic performance of a double-layer microchannel heat sink was analyzed with a variety of channel shapes using three-dimensional Navier-Stokes equations in a range of Reynolds numbers from 160 to 850. Parallel and counterflow arrangements of double-layer microchannels and seven cross-sectional shapes of microchannels (boot, diamond, hexagonal, pentagonal, rectangular, rectangular wedge, and triangular) were tested in this work. The temperature, Nusselt number, thermal resistance, and pumping power were obtained for each channel shape and arrangement using conjugate heat transfer analysis. Among the tested microchannel shapes, the rectangular wedge shape showed the best thermal performance with the lowest thermal resistance and also with the greatest pumping power. The counterflow arrangement showed better thermal performance with a similar pumping power than the parallel flow arrangement for all the channel shapes.
机译:通过从160到850的雷诺数范围内使用三维Navier-Stokes方程分析双层微通道散热器的热液压性能。双层微通道和七个的平行和逆流布置 在这项工作中测试了微通道(靴子,钻石,六边形,五边形,矩形,矩形,矩形楔形和三角形)的横截面形状。 对于使用共轭传热分析的每个通道形状和布置,获得温度,露珠数,热阻和泵送电力。 在经过测试的微通道形状中,矩形楔形形状显示出最低的热阻和最大的泵送电力的最佳热性能。 逆流装置显示出具有与所有通道形状的平行流动装置类似的泵送动力的热性能。

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