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Effect of design and operating parameters on the thermal performance of aluminum flat grooved heat pipes

机译:设计与运行参数对铝平沟槽热管热性能的影响

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摘要

Four aluminum flat grooved heat pipes with groove widths of 0.2, 0.4, 0.8 and 1.6 mm are fabricated and the effect of filling ratio on the thermal performance is experimentally studied for four different heat flux values of 2.1, 3.2, 4.2 and 5.3 W/cm(2). An optimum filling ratio corresponding to each heat flux is determined where the heat pipe has the best thermal performance. Thermal performance of the heat pipes are evaluated using three indicators: (i) the temperature difference between the heat source and heat sink surfaces, (ii) the temperature difference between the peak system temperature and the temperature of the cooling ambient and (iii) heat pipe effectiveness defined as a temperature difference ratio under dry and operating conditions. A flow and evaporative mass scaling model is developed to interpret the experimental findings. Experimental results reveal that at the optimum point the heat pipe with the 0.4 mm groove width has the best thermal performance, and the heat pipe with the smallest 0.2 mm groove operates under dryout conditions even for the lowest heat flux, the reason of which is discussed based on interpretation of underlying phase change physics. Experiments reveal the existence of two operating regimes: with and without dryout in the grooves. Although higher heat loads can be carried under dryout conditions, a limit exists for the maximum heat flux where the pipe operates without the onset of dryout for a specific groove density. (C) 2017 Elsevier Ltd. All rights reserved.
机译:槽宽度为0.2,0.4,0.8和1.6mm的四个铝平槽热管,并在实验上研究了填充率对热性能的效果,用于2.1,3.2,4.2和5.3W / cm的四种不同的热通量值(2)。确定与每个热通量相对应的最佳填充率,其中热管具有最佳的热性能。使用三个指示器评估热管的热性能:(i)热源和散热器表面之间的温差,(ii)峰值系统温度与冷却环境温度与(iii)的温度之间的温差管道有效性定义为干燥和操作条件下的温差比。开发了一种流动和蒸发质量缩放模型来解释实验结果。实验结果表明,在最佳点,热管具有0.4毫米的槽宽度具有最佳的热性能,并且具有最小0.2 mm凹槽的热管即使对于最低热量通量也可以在干燥条件下操作,其原因是讨论的基于对潜在相变理的解释。实验揭示了两种操作制度的存在:在凹槽中没有干扰。尽管可以在干燥条件下承载更高的热负荷,但是对于最大热通量存在限制,其中管道在没有干扰的情况下为特定凹槽密度进行操作。 (c)2017 Elsevier Ltd.保留所有权利。

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