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Influence of geometric parameters on flow and heat transfer performance of micro-channel heat sinks

机译:几何参数对微通道散热器的流动和传热性能的影响

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Numerical simulations are carried out to investigate the influence of geometric parameters on the flow and heat transfer characteristics of rectangular, trapezoidal and triangular shaped microchannel heat sinks. A good agreement is found between numerical results and experimental data when the variation of water viscosity with temperature is taken into account. The microchannel with high aspect ratio, long wetted perimeter and small hydraulic diameters usually have low thermal resistance and high pressure drop. For the rectangular microchannel, it has the best performance with the aspect ratio among 8.904-11.442. And among three kinds of microchannel, the rectangle has the lowest thermal resistance, followed by trapezoid and triangle microchannel. The channel number also affects the thermal resistance and pressure drop. The increase of channel number reduces the thermal resistance, but at the expense of high pressure drop. Under the condition of the same power consumption, the channel number has an optimum range. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了数值模拟,以研究几何参数对矩形,梯形和三角形微通道散热器的流动和传热特性的影响。当考虑水粘度随温度的变化时,数值结果与实验数据之间找到了很好的一致性。具有高长宽比,长的润湿的周长和小的水力直径的微通道通常具有低的耐热性和高的压降。对于矩形微通道,其长宽比在8.904-11.442之间具有最佳性能。在三种微通道中,矩形的热阻最低,其次是梯形和三角形微通道。通道数也会影响热阻和压降。通道数量的增加降低了热阻,但以高压降为代价。在相同功耗的情况下,通道号具有最佳范围。 (C)2016 Elsevier Ltd.保留所有权利。

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