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首页> 外文期刊>International Journal of Heat and Mass Transfer >Optimal design of geometric parameters of double-layered microchannel heat sinks
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Optimal design of geometric parameters of double-layered microchannel heat sinks

机译:双层微通道散热器几何参数的优化设计

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This work uses an optimization procedure consisting of a simplified conjugate-gradient method and a three-dimensional fluid flow and heat transfer model to investigate the optimal geometric parameters of a double-layered microchannel heat sink (DL-MCHS). The overall thermal resistance R_T is the objective function to be minimized, and the number of channels N, channel width ratio β, lower channel aspect ratio α_u, and upper channel aspect ratio α_u are the search variables. For a given bottom area (10 × 10 mm) and heat flux (100 W/cm~2), the optimal (minimum) thermal resistance of the double-layered microchannel heat sink is about R_T= 0.12 ℃/m~2W. The corresponding optimal geometric parameters are N = 73, β = 0.50,α_1 = 3.52, and, α_u = 7.21 under a total pumping power of 0.1 W. These parameters reduce the overall thermal resistance by 52.8% compared to that yielded by an initial guess (N = 112, β = 0.37, α_1 = 10.32, and α_u = 10.93). Furthermore, the optimal thermal resistance decreases rapidly with the pumping power and then tends to approach an constant value. As the pumping power increases, the optimal values of N, α_1, and α_u increase, whereas the optimal ji value decreases. However, increasing the pumping power further is not always cost-effective for practical heat sink designs.
机译:这项工作使用由简化的共轭梯度法和三维流体流动和传热模型组成的优化程序来研究双层微通道散热器(DL-MCHS)的最佳几何参数。总热阻R_T是要最小化的目标函数,并且通道数量N,通道宽度比β,下部通道纵横比α_u和上部通道纵横比α_u是搜索变量。对于给定的底部面积(10×10 mm)和热通量(100 W / cm〜2),双层微通道散热器的最佳(最小)热阻约为R_T = 0.12℃/ m〜2W。在0.1 W的总泵浦功率下,相应的最佳几何参数为N = 73,β= 0.50,α_1= 3.52和α_u= 7.21。与初始猜测得出的总热阻相比,这些参数使总热阻降低了52.8%。 (N = 112,β= 0.37,α_1= 10.32,和α_u= 10.93)。此外,最佳热阻随着泵浦功率而迅速减小,然后趋于接近恒定值。随着泵浦功率的增加,N,α_1和α_u的最佳值增加,而ji的最佳值减小。但是,对于实际的散热器设计,进一步提高泵浦功率并不总是具有成本效益。

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