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Thermal Analysis and Experimental Validation of Laminar Heat Transfer and Pressure Drop in Serpentine Channel Heat Sinks for Electronic Cooling

机译:电子冷却蛇形通道散热器的层流传热和压降的热分析和实验验证

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摘要

In this paper, a thermal resistance network analytical model is proposed to investigate the thermal resistance and pressure drop in serpentine channel heat sinks with 180 deg bends. The total thermal resistance is obtained using a thermal resistance network model based on the equivalent thermal circuit method. Pressure drop is derived considering straight channel and bend loss because the bends interrupt the hydrodynamic boundary periodically. Considering the effects of laminar flow development and redevelopment, the bend loss coefficient is obtained as a function of the Reynolds number, aspect ratios, widths of fins, and turn clearances, through a three-regime correlation. The model is then experimentally validated by measuring the temperature and pressure characteristics of heat sinks with different Reynolds numbers and different geometric parameters. Finally, the temperature-rise and pressure distribution of the thermal fluid with Reynolds numbers of 500,1000, and 1500 are examined utilizing this model.
机译:本文提出了一种热阻网络分析模型,以研究弯曲180度的蛇形通道散热器的热阻和压降。使用基于等效热回路方法的热阻网络模型可得到总热阻。考虑到直线通道和弯曲损失,可以得出压降,因为弯曲会周期性地中断流体动力边界。考虑到层流发展和再发展的影响,通过三方面的相关性,得出弯曲损耗系数是雷诺数,纵横比,鳍片宽度和转弯间隙的函数。然后通过测量具有不同雷诺数和不同几何参数的散热器的温度和压力特性,通过实验验证该模型。最后,使用该模型检查了雷诺数分别为500,1000和1500的导热液的温度上升和压力分布。

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