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Investigation of thermal performance of microchannel heat sink with triangular ribs in the transverse microchambers

机译:横向微室中带有三角形肋的微通道散热器的热性能研究

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摘要

A numerical investigation is conducted to predict the thermal and hydraulic performances of the microchannel heat sink (MCHS) with different geometric parameters of triangular rib in the transverse microchamber. The parametric variables of width, length and height of the triangular rib are studied to find optimum design. The flow structure and characteristics of the interrupted MCHS are interpreted in details. The dimensionless ratios of average Nusselt number, friction factor and thermal enhancement factor are evaluated. It is found that the heat transfer rate is increasing with the increase of rib width and height, but decreasing with the increase of rib length. The boundary layer interruption and redevelopment effects introduced by the triangular rib are discussed. The results of thermal enhancement factor reveals an optimum geometrical parameters for the triangular rib with width = 100 μm, length = 400 μm and height = 120 μm for about Reynolds number of 500, yielding 43% enhancement relative to non-interrupted rectangular MCHS at equal pumping power. The results of mean Nusselt number ratio reveal an optimum enhancement of 56% relative to non-interrupted MCHS.
机译:进行了数值研究,以预测在横向微腔中具有不同三角肋几何参数的微通道散热器(MCHS)的热性能和水力性能。研究了三角形肋的宽度,长度和高度的参数变量,以找到最佳设计。详细解释了中断的MCHS的流程结构和特性。评估了平均努塞尔数,摩擦系数和热增强系数的无因次比。发现传热速率随着肋的宽度和高度的增加而增加,但是随着肋的长度的增加而减小。讨论了三角肋引入的边界层中断和再开发效应。热增强因子的结果表明,对于约500雷诺数,宽度为100μm,长度为400μm,高度为120μm的三角形肋的最佳几何参数,在相同的条件下,相对于不间断的矩形MCHS可获得43%的增强抽力。平均Nusselt数比的结果表明,相对于不间断的MCHS而言,最佳提高了56%。

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