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Comparison of the thermal performances and flow characteristics between closed-loop and closed-end micro pulsating heat pipes

机译:闭环和闭端微脉冲热管之间的热性能和流动特性比较

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The thermal performances and flow characteristics of closed-loop micro pulsating heat pipes (CLMPHPs) and closed-end micro pulsating heat pipes (CEMPHPs) are compared through experiments to determine which type of micro pulsating heat pipe (MPHP) performs better. MPHPs that have a meandering rectangular channel engraved on a silicon substrate were fabricated using MEMS techniques. The width and height of the channels are 1 mm and 0.5 mm, respectively. Pyrex glass was used as a cover, enabling the flow visualization in the MPHPs and ethanol was used as the working fluid. A series of experiments were performed at various input powers and inclination angles for the MPHPs with 5, 10, 15, and 20 turns. The flow and thermal characteristics were investigated through high-speed photography and ther-mometry. In the case of 20 turns, there is little difference in the thermal performances and flow characteristics between the CLMPHP and the CEMPHP, and both MPHPs have orientation-independent performance. However, in the case of 15 and 10 turns, the CEMPHP operates stably regardless of the inclination angle while the thermal performance of the CLMPHP deteriorates significantly as the orientation changes from vertical to horizontal. Specially, in the case of 10 turns, the CEMPHP has up to 1.3 times higher effective thermal conductivity in a vertical orientation and 2.5 times in a horizontal orientation than the CLMPHP. When the number of turns is 5, the thermal performance of the CLMPHP depends on the orientation, while the CEMPHP does not start up at all at any inclination angles. Finally, to ensure orientation-independent performance, the CLMPHP requires as many as 20 turns while only 10 turns is sufficient for the CEMPHP.
机译:通过实验比较闭环微脉动热管(CLMPHP)和闭端微脉动热管(CEMPHP)的热性能和流动特性,以确定哪种类型的微脉动热管(MPHP)性能更好。使用MEMS技术制造了在硅基板上刻有弯曲矩形通道的MPHP。通道的宽度和高度分别为1毫米和0.5毫米。派热克斯玻璃被用作覆盖物,从而使MPHP中的流动可视化,乙醇被用作工作流体。对于5、10、15和20匝的MPHP,在各种输入功率和倾斜角度下进行了一系列实验。通过高速摄影和测温法研究了流动和热特性。在20转的情况下,CLMPHP和CEMPHP之间的热性能和流动特性几乎没有差异,并且两个MPHP都具有与方向无关的性能。但是,在15和10圈的情况下,无论倾斜角度如何,CEMPHP都会稳定运行,而CLMPHP的热性能会随着方向从垂直方向变为水平方向而显着降低。特别地,在10圈的情况下,CEMPHP在垂直方向上的有效导热率比CLMPHP高1.3倍,在水平方向上的有效导热率高2.5倍。匝数为5时,CLMPHP的热性能取决于方向,而CEMPHP根本不会在任何倾斜角度下启动。最后,为了确保方向无关的性能,CLMPHP需要多达20匝,而CEMPHP仅需要10匝即可。

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