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Experimental Study on the Effect of Perforations Shapes on Vertical Heated Fins Performance Under Forced Convection Heat Transfer

机译:强制对流换热条件下孔眼形状对垂直散热片性能影响的实验研究

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摘要

This paper investigates the effect of perforation shape or geometry on the heat transfer of perforated fins. The type of heat exchanger used is heat sink with the perforated fins under the forced convection heat transfer to determine the performance for each perforation shape between circular, rectangular, triangular and also with the non-perforated fins. The experimental result compared between the perforation shape and the heat transfer coefficient to clarify the best perforation shape for the plate heat sink. The fluid and heat transfer properties of plate fins or normally heat sink were studied experimentally and numerically using CFD. The difference between experimental and numerical results was reported to be about 8% and 9% for temperature distributions when the power supplied are 150W and 100W respectively. The highest temperature different of the fin are with the circular perforation shape which is 51.29% when compared the temperature at the tip of the fins with the temperature at the heat collector followed by the rectangular perforation shape with 45.57% then followed by the triangular perforation shape by 42.28% then lastly the non-perforated fins by 35.82%. The perforations of the fines show a significantudeffect on the performance of forced convection heat transfer.
机译:本文研究了穿孔形状或几何形状对穿孔翅片传热的影响。所使用的热交换器的类型是在强制对流传热条件下带有穿孔散热片的散热器,以确定圆形,矩形,三角形和非穿孔散热片之间每个穿孔形状的性能。实验结果比较了穿孔形状和传热系数,以明确板式散热器的最佳穿孔形状。使用CFD对板状翅片或正常散热片的流体和传热特性进行了实验和数值研究。当电源分别为150W和100W时,温度分布的实验结果和数值结果之间的差异据报道约为8%和9%。翅片的最高温度差异为圆形穿孔形状,当将翅片尖端的温度与集热器的温度进行比较时,其为51.29%,其次是矩形穿孔形状,其为45.57%,然后是三角形穿孔形状。下降了42.28%,最后是无孔鳍,上升了35.82%。细孔的穿孔对强制对流传热的性能有显着影响。

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