首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal characteristic and analysis of closed loop oscillation heat pipe/phase change material (CLOHP/PCM) coupling module with different working media
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Thermal characteristic and analysis of closed loop oscillation heat pipe/phase change material (CLOHP/PCM) coupling module with different working media

机译:不同工作介质的闭环振荡热管/相变材料(CLOHP / PCM)耦合模块的热特性及分析

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摘要

Aimed to understand the thermal characteristic of closed loop oscillation heat pipe/phase change material (CLOHP/PCM) coupling module filled with different working media for thermal energy storage and thermal management application, experimental investigation on the heat charge and discharge process of the coupling module under different conditions was carried out. The main result shows that the CLOHP filled with self-rewetting fluid (SRWF) and not placed horizontally has better thermal transfer performance relative to the water case as the heat load is low. But, the CLOHP filled with water has better thermal transfer performance than the SRWF case in horizontal condition especially under low heat load. The rise speed of temperature in the heating section increases when the phase transition completes. The highest temperature of the PCM locates in the middle region. Standard deviation (STD) of PCM temperature keeps relative stable for a long time and then increases rapidly and the rise speed has a positive correlation with the heat load. The uniformity of PCM temperature has been greatly improved for those three cases compared to that without working medium. During the discharge process, the fluctuation occurs only when the temperature of evaporation exceeds about 60 degrees C. (C) 2018 Elsevier Ltd. All rights reserved.
机译:旨在了解充有不同工作介质的闭环振荡热管/相变材料(CLOHP / PCM)耦合模块的热特性,以进行热能存储和热管理应用,并对耦合模块的热充放电过程进行实验研究在不同条件下进行。主要结果表明,相对于水箱,由于热负荷低,填充有自粘性液体(SRWF)且未水平放置的CLOHP具有更好的传热性能。但是,在水平条件下,尤其是在低热负荷下,充满水的CLOHP具有比SRWF情况更好的传热性能。当相变完成时,加热部分中温度的上升速度增加。 PCM的最高温度位于中间区域。 PCM温度的标准偏差(STD)长时间保持相对稳定,然后迅速增加,并且上升速度与热负荷呈正相关。与没有工作介质的情况相比,在这三种情况下,PCM温度的均匀性得到了极大的改善。在放电过程中,仅当蒸发温度超过约60摄氏度时才会发生波动。(C)2018 Elsevier Ltd.保留所有权利。

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