Forced convection heat transfer in micro heat sinks with square and circular configuration

N. Y. Godi, L. B. Zhengwuvi, M. O. Petinrin
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引用次数: 1

Abstract

This paper reports the results of three-dimensional numerical optimisation of microchannel heat exchanger with square and circular cooling channels. The objective of the optimisation is to maximise the global thermal conductance or minimise global thermal resistance. Response surface optimisation methodology (RSM) is used in the numerical optimisation. A high-density heat flux (2.5×106W/m2) is imposed at the bottom surface of the unit cell microchannel and numerical simulation carried out using ANSYS Fluent commercial software package.The elemental volume and axial length N=10mm of the microchannel were all fixed, while the width was free to morph. The cooling technique employs single-phase water which flows through the rectangular block microchannel heat sink to remove the heat at the bottom of the microchannels in a forced convection laminar flow regime. The velocity of the fluid pumped across the microchannel axial length is the range 400≤Rew≤500. Finite volume method (FVM) is used to descretised the computational domain and computational fluid dynamic (CFD) code employed to solve a series of governing equations. The effect of channel hydraulic diameter and Reynolds number of water-flow on peak wall temperature and minimised temperature are investigated and reported. The numerical results show that the microchannel with square cooling channel has the highest maximised global thermal conductance than the micro heat sink with circular configuration. The result of the numerical study agrees with what is in the open literature.
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方形和圆形微型散热器的强制对流换热
本文报道了具有方形和圆形冷却通道的微通道换热器的三维数值优化结果。优化的目标是最大化整体热导率或最小化整体热阻。数值优化采用响应面优化方法(RSM)。在单胞微通道底表面施加高密度热流密度(2.5×106W/m2),利用ANSYS Fluent商业软件包进行数值模拟。微通道的元素体积和轴向长度N=10mm都是固定的,而宽度可以自由变形。冷却技术采用流过矩形块微通道散热器的单相水,以强制对流层流形式去除微通道底部的热量。泵送流体在微通道轴向长度上的速度范围为400≤Rew≤500。采用有限体积法(FVM)对计算域和求解一系列控制方程的计算流体力学(CFD)代码进行了描述。研究并报道了通道水力直径和水流雷诺数对峰值壁面温度和最低温度的影响。数值计算结果表明,方形散热通道的微散热器比圆形散热通道的微散热器具有最高的全局热导最大值。数值研究的结果与公开文献的结果一致。
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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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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