Geometric Optimization of Complex Heat Exchangers using Constructal Technique

N. Y. Godi
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Abstract

Email: nahumgodi@yahoo.co.uk Abstract: The application of microchannel heat exchangers for cooling is documented in this study. Numerical optimization is carried out with the goal of minimising the peak wall temperature in the microchannel heat sink modelled with solid and half hollow square micro fins. A high-density heat flux q'' from a microelectronic device was applied at the bottom wall of the microchannel heat sink with circular flow channel embedded in a highly conductive rectangular block aluminium substrate. Single phase water was used as coolant to remove the deposited heat at the internal channel walls and in the internal surfaces of half hollow square fins, while cool air stream flows externally over the vertical fins in a forced convection laminar regime to take away the excess heat on the micro square fins. Computational Fluid Dynamics (CFD) code was employed to descretised and solve the governing equations. The results of numerical optimization showed that the combined microchannels with solid square fins has the highest global thermal conductance than the microchannel with half hollow square fins. The limiting case of a single microchannel heat sink without fins agrees with what is in open literature.
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基于结构技术的复杂换热器几何优化
摘要:本文研究了微通道换热器在制冷中的应用。以实心和半空心方形微翅片模拟的微通道散热器的峰值壁面温度最小为目标进行了数值优化。将来自微电子器件的高密度热流通量q”施加于高导电性矩形块铝衬底内嵌圆形流道的微通道散热器底壁。采用单相水作为冷却剂,去除内部通道壁上和半空心方翅内表面沉积的热量,而冷空气以强制对流层流的形式从垂直翅上向外流动,带走微方翅上的多余热量。采用计算流体力学(CFD)程序对控制方程进行了解析和求解。数值优化结果表明,与半空心方鳍微通道相比,实心方鳍组合微通道整体热导率最高。单微通道无翅片散热器的极限情况与公开文献一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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