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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental passive electronics cooling: Parametric investigation of pin-fin geometries and efficient phase change materials
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Experimental passive electronics cooling: Parametric investigation of pin-fin geometries and efficient phase change materials

机译:实验性无源电子器件冷却:针翅几何形状和有效相变材料的参数研究

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摘要

This experimental investigation focuses on the optimization of passive cooling system using extruded finned surfaces with phase change materials (PCMs) as the thermal conductivity enhancers (TCEs). The study develops comparison between fins of circular and square cross-sectional area, made of aluminium. Further classification is done in configuration in terms of staggered and inline arrays. The volume fraction of fins is kept constant at 9% of total volume of heat sink. The purpose is to single out the better arrangement with and without PCM. Six PCMs of varying phase change temperature and heat capacities, namely Paraffin wax, RT-54, RT-44, RT-35HC, SP-31 and n-eicosane are selected for thermal conductivity enhancement. The volume fraction of PCM is also constant at 90% of the heat sink volume, giving a 10% volume for expansion after melting. Moreover, power levels are used in a range of 4-8 W with an increment of 1 W. The analysis was carried out on graphical trends produced and explanations were given accordingly. The most effective PCMs were also discussed considering their enhancement time, enhancement ratios and other material properties. Finally, the results were justified by the scientific knowledge and found in compliance with the work of famous researchers as well.
机译:这项实验研究的重点是使用带相变材料(PCM)作为导热增强剂(TCE)的挤压翅片表面来优化被动冷却系统。该研究开发了由铝制成的圆形和方形截面积的鳍片之间的比较。根据交错阵列和嵌入式阵列,可以在配置上进行进一步分类。散热片的体积分数保持恒定,为散热片总体积的9%。目的是找出有无PCM的更好配置。选择六个具有不同相变温度和热容量的PCM,即石蜡,RT-54,RT-44,RT-35HC,SP-31和正二十烷,以提高导热系数。 PCM的体积分数也恒定为散热器体积的90%,熔化后膨胀的体积为10%。此外,功率水平在4-8 W范围内使用,增量为1W。对产生的图形趋势进行了分析,并给出了相应的解释。还讨论了最有效的PCM,并考虑了它们的增强时间,增强比和其他材料特性。最后,研究结果得到了科学知识的证实,并与著名研究人员的工作相符。

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