首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Numerical analysis of microchannel based bio-inspired heat sinks with multiple inlet-outlet pairs for cooling square shaped circuits
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Numerical analysis of microchannel based bio-inspired heat sinks with multiple inlet-outlet pairs for cooling square shaped circuits

机译:用于冷却方形电路的多个入口对的微通道基生物启发散热器的数值分析

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Heat dissipation in electronic circuits is important to maintain their reliability and functionality. In this work, microchannel based bio-inspired flow field models are proposed and numerically analyzed. The proposed flow fields have single to four inlet-outlet pairs. COMSOL is used to do the numerical analysis. Conjugate heat transfer analysis is done on the quarter sectional models, utilizing bi-axial symmetry of the flow fields to reduce computational cost. Constant heat flux is applied to the base of the proposed heat sinks. The results show that the thermal and hydraulic resistances of the proposed models are lower than traditional micro-channel arrayed heat sinks. The four inlet-outlet pairs model shows a thermal resistance of 0.121 to 0.158 C/W at constant Re inlet condition, achieved with a pumping power of 0.102-0.126W. Two and four inlet-outlet pair models with aspect ratio 8.6 have a thermal resistance of 0.069 and 0.067 C/W, for pumping powers 2.078 and 4.365 W respectively. The pressure drop of the proposed models is lower than the conventional microchannel arrays.
机译:电子电路中的散热对于保持其可靠性和功能非常重要。在这项工作中,提出了基于微通道的生物启发流场模型和数值分析。所提出的流场具有单次到四个入口原对。 COMSOL用于进行数值分析。共轭传热分析是在四分之一截面模型上进行的,利用流场的双轴对称以降低计算成本。恒定热通量施加到所提出的散热器的底部。结果表明,所提出的型号的热和液压电阻低于传统的微通道阵列散热器。四个入口出口对模型显示在恒定的进口条件下的热电阻为0.121至0.158℃,以0.102-0.126W的泵浦功率实现。具有纵横比8.6的两个和四个入口 - 出口对型号具有0.069和0.067 C / W的热阻,用于分别泵送2.078和4.365W。所提出的模型的压降低于传统的微通道阵列。

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