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Experimental investigation on the thermal performance of a micro pulsating heat pipe with a dual-diameter channel

机译:双径通道微脉动热管热性能的实验研究

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摘要

Experiments were performed to investigate the effect of a dual-diameter channel on the flow and heat transfer characteristics of flat plate micro pulsating heat pipes (MPHPs). Using MEMS techniques, the MPHPs were fabricated: rectangular channels with dual hydraulic diameters were engraved on a silicon wafer to form a meandering closed loop with 5 turns. The Pyrex glass was used as a cover which enables flow visualization in the MPHP. Experimental results show that the MPHPs with a dual-diameter channel can operate stably even in a horizontal position and have uniform thermal performance regardless of the orientation when a proper condition is met. It is postulated that the orientation-independent performance occurs when the capillary pressure generated by the difference in channel diameters is larger than the viscous pressure drop. This postulate was experimentally confirmed using Ethanol and FC-72 as working fluids at various input powers and inclination angles. To provide a guideline for orientation-independent operation of the MPHP with a dual-diameter channel a figure of merit is proposed: the figure of merit is defined as the ratio of capillary pressure difference to the viscous pressure drop, which is similar to the figure of merit for a conventional heat pipe. According to experimental data, the figure of merit has to be larger than 2 × 10~5 for orientation-independent operation of the MPHP.
机译:进行实验以研究双直径通道对平板微脉冲热管(MPHP)的流动和传热特性的影响。使用MEMS技术,制造了MPHP:将具有双液压直径的矩形通道雕刻在硅晶片上,形成5圈曲折的闭环。派热克斯玻璃用作盖,可在MPHP中可视化流动。实验结果表明,在满足适当条件的情况下,具有双直径通道的MPHP即使在水平位置也可以稳定运行,并且具有均匀的热性能,而与朝向无关。假定当通道直径的差异所产生的毛细管压力大于粘性压降时,就会发生与方向无关的性能。使用乙醇和FC-72作为工作流体在各种输入功率和倾斜角度下,通过实验确定了该假设。为了为双直径通道的MPHP的方向独立操作提供指导,提出了品质因数:品质因数定义为毛细管压差与粘性压降之比,与该值相似常规热管的优点。根据实验数据,MPHP的方向无关操作的品质因数必须大于2×10〜5。

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