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Thermal Design and Optimization of Natural Convection Polymer Pin Fin Heat Sinks

机译:自然对流聚合物销翅片散热器的热设计和优化

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The design and optimization methodology of a thermally conductive polyphenylene sulphide (PPS) polymer staggered pin fin heat sink, for an advanced natural convection cooled microprocessor application, are described using existing analytical equations. The geometric dependence of heat dissipation and the relationships between the pin fin height, pin diameter, horizontal spacing, and pin fin density for a fixed base area and excess temperature are discussed. Experimental results of a pin finned thermally conductive PPS heat sink in natural convection indicate substantially high thermal performance. Numerical results substantiate analytical modeling results for heat sinks within the Aihara et al. fin density range. The cooling rates and coefficient of thermal performance, COP{sub}T, that relates cooling capability to the energy invested in the formation of the heat sink, has been determined for such heat sinks and compared with conventional aluminum heat sinks.
机译:使用现有的分析方程式描述了用于先进自然对流冷却微处理器应用的导热聚苯硫醚(PPS)聚合物交错销翅片散热器的设计和优化方法。讨论了散热的几何相关性以及固定面积和温度过高时引脚鳍高度,引脚直径,水平间距和引脚鳍密度之间的关系。自然对流的针翅热导PPS散热器的实验结果表明,其散热性能非常高。数值结果证实了Aihara等人内部散热器的分析建模结果。鳍片密度范围。已经针对这种散热器确定了冷却速率和热性能系数COP {sub} T,其将冷却能力与在散热器形成中投入的能量相关联,并与常规铝散热器进行了比较。

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