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A single, straight-tube pulsating heat pipe (examination of a mechanism for the enhancement of heat transport)

机译:单个直管式脉动热管(对增强热传输的机制进行检查)

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摘要

Heat transport in a pulsating heat pipe consisting of a single, straight tube with an open end (SST-PHP) is investigated experimentally. Periodic oscillation of a vapor plug with a large amplitude is excited in a horizontal orientation and continues for a long period of over 8000 s without ceasing. The heat transport rate and the effective thermal conductivity increase with heating power up to approximately 75 W and 40 kW/(m K), respectively. The heating section, the inner diameter of which is slightly larger than that of the heat transport tube, is maintained at approximately the saturation temperature of the working liquid throughout the succession of oscillation. Liquid is supplied to the heating section due to the inflow of liquid film from the heat transport tube each time the vapor plug shrinks. The postulated mechanism of the heat transport can be characterized by three factors: (a) latent heat transport due to the condensation of vapor onto the liquid film, (b) enhanced heat diffusion induced by oscillating motion of the liquid plug in the heat transport tube, and (c) liquid exchange due to oscillating motion between the heat transport tube and the cold liquid reservoir. In order to examine the contribution of each factor, the effective thermal conductivity is measured for several types of heat transport tubes, each of which is partially different in structure from the SST-PHP, so that some of these factors will be excluded. Based on these results, the mechanism for the enhancement of heat transport in the SST-PHP compared to that for forced oscillatory liquid flow is discussed.
机译:实验研究了脉动热管中的热传输,该脉动热管由具有开口端的单个直管组成(SST-PHP)。具有大振幅的蒸汽塞的周期性振荡在水平方向上被激发并且持续超过8000 s的长时间而没有停止。传热速率和有效导热系数分别随着加热功率分别达到约75 W和40 kW /(m K)而增加。内径比传热管的内径稍大的加热段在整个振荡过程中保持在工作液的饱和温度附近。每当蒸气塞收缩时,由于从传热管流入的液膜,液体被供给到加热部。假设的热传输机理可以通过三个因素来表征:(a)由于蒸汽凝结在液膜上而产生的潜热传输,(b)液体塞在热传输管中的振荡运动引起的增强的热扩散(c)由于传热管和冷液储存器之间的振荡运动引起的液体交换。为了检查每个因素的影响,对几种类型的传热管测量了有效的热导率,每种传热管在结构上与SST-PHP有所不同,因此将排除其中一些因素。基于这些结果,讨论了与强制振荡液体流相比,增强SST-PHP中传热的机理。

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