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Effects of oscillation amplitudes on heat transfer mechanisms of pulsating heat pipes

机译:振荡振幅对脉动热管传热机制的影响

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The effects of oscillation amplitudes on heat transfer mechanisms of pulsating heat pipes (PHPs) are experimentally investigated. For this, a five-turn closed-loop micro PHP (MPHP) with overall dimensions of 28 × 67.5 × 1.6 mm~3 is made of glass top and silicon bottom. A meandering micro-channel with hydraulic diameter of 0.835 mm is engraved on the glass. Ethanol is selected as the working fluid and the filling ratio is fixed at 45%. Experiments are performed at various input powers in a vertical orientation with bottom-heating mode. The oscillation amplitude, as a representative parameter of the flow characteristics, is obtained from a high-speed imaging technique. The heat flux distribution at the interface between the fluid and the wall is simultaneously obtained from a high-speed infrared imaging technique. From the synchronization of the images of the flow visualization and heat flux distribution, the transfer of heat occurring at the interface between the fluid and the wall is divided between sensible heat and latent heat. Then, the heat transfer mechanisms of the MPHP are investigated by quantitatively analyzing the proportion of latent heat to overall heat. As the input power increases from 7 W to 16 W, the oscillation amplitude increases from 3.4 mm to 8.3 mm. The proportion of latent heat continues to increase from 54.8% to 81.9%. Due to the increased proportion of latent heat, the thermal resistance of the MPHP decreases by 13.5%. From these experimental results, it is confirmed that the proportion of latent heat increases with the oscillation amplitude, resulting in a decrease of the thermal resistance of the MPHP. These experimental findings can give a clue to improving the thermal performance of PHPs: the thermal performance of PHPs can be increased by increasing the oscillation amplitude or the proportion of latent heat in either the evaporator section or the condenser section.
机译:实验研究了振荡幅度对脉动热管(PHPS)的传热机制的影响。为此,具有28×67.5×1.6mm〜3的整体尺寸的五转闭环微pHP(MPHP)由玻璃顶部和硅底制成。玻璃上刻有液压直径为0.835mm的曲折微通道。选择乙醇作为工作流体,填充率固定为45%。实验在具有底部加热模式的垂直取向的各种输入功率下进行。作为流动特性的代表参数,从高速成像技术获得振荡幅度。从高速红外成像技术同时获得流体和壁之间的界面处的热通量分布。从流量可视化和热通量分布的图像的同步,在流体和壁之间的界面处发生热的热量在明智的热和潜热之间分开。然后,通过定量分析潜热与总热量的比例来研究MPHP的传热机制。当输入功率从7W增加到16W时,振荡幅度从3.4mm增加到8.3mm。潜热比例持续增加到81.9%至81.9%。由于潜热比例增加,MPHP的热阻降低了13.5%。从这些实验结果中,证实潜热比例随着振荡幅度而增加,导致MPHP的热阻的降低。这些实验结果可以给出一种提高PHP的热性能的线索:通过增加蒸发器部分或冷凝器部分中的潜热或潜热的比例,可以增加PHP的热性能。

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