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首页> 外文期刊>International Journal of Refrigeration >Experimental investigation on ethane pulsating heat pipe based on Stirling cooler
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Experimental investigation on ethane pulsating heat pipe based on Stirling cooler

机译:基于斯特林冷却器的乙烷脉动热管的实验研究

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摘要

An experimental system was built to investigate heat transfer characteristics of an ethane pulsating heat pipe (EPHP) based a Stirling cooler. The EPHP is made of copper pipe with an inner diameter of 2 mm, consisting of 20 tubes. The effects of filling ratios (FRs), heat inputs (HIs) and inclination angles (IAs) on the performance of the EPHP were studied under different temperature regions. During the cooling process, the EPHP shows a high heat transfer efficiency. The optimal FR corresponding to the lowest thermal resistance is about 30%. For the same FR, the best heat transfer performance of EPHP is not obtained at IA of 90 degrees, but a specific IA between vertical and horizontal orientation. The thermal resistance increases slowly when the IA increases under anti-gravity condition, but when the IA is close to -90 degrees, the thermal resistance increases rapidly. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:建立了一种实验系统,以研究基于斯特林冷却器的乙烷脉动热管(EPHP)的传热特性。 欧芯由铜管制成,内径为2mm,由20个管组成。 在不同的温度区域中研究了填充率(FRS),热输入(HIS),热输入(HIA)和倾斜角(IAS)对ePHP的性能的影响。 在冷却过程中,EPHP显示出高传热效率。 对应于最低热阻的最佳FR约为30%。 对于相同的FR,在90度的IA不获得EPHP的最佳传热性能,但垂直和水平方向之间的特定IA。 当IA在抗重力条件下增加时,热阻增加,但是当IA接近-90度时,热阻迅速增加。 (c)2018年Elsevier Ltd和IIR。 版权所有。

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