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Experimental investigation on thermal performance of phase change material coupled with closed-loop oscillating heat pipe (PCM/CLOHP) used in thermal management

机译:相变材料与热管理中使用的闭环振荡热管(PCM / CLOHP)的热性能实验研究

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摘要

Combining the high heat capacity of the PCM with the high thermal conductivity of the OHP can overcome the shortcomings of PCM itself, such as paraffin wax coupled with closed-loop oscillating heat pipe (CLOHP). In this paper, CLOHPs with different turns were designed, manufactured and tested, and then a comprehensive investigation on the thermal performance of paraffin wax coupled with CLOHP under different supplied heating power (10 SOW) was performed experimentally. The results showed that when the whole width was constant, difficult or unstable oscillation tended to occur in the CLOHPs with less turns. The number of the turn had great influence on the start-up temperature and the oscillation stability of the CLOHPs, so it needs to be selected carefully according to the actual situation. The paraffin wax/CLOHP system showed much better dynamic thermal performance in the heating process and much better static thermal performance in the cooling process than those of the paraffin wax system. Limited by the heat transfer capability of the CLOHP and the conductivity of the PCM, the PCM could not be maintained in the state of solid liquid coexistence when the heating power exceeded a threshold. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将PCM的高热容量与OHP的高热导率相结合可以克服PCM本身的缺点,例如石蜡和闭环振荡热管(CLOHP)。本文设计,制造和测试了不同匝数的CLOHP,然后对在不同供热功率(10 SOW)下结合使用CLOHP的石蜡的热性能进行了综合研究。结果表明,当整个宽度恒定时,趋向于在CLOHP中出现困难或不稳定的振荡,而匝数较少。匝数对启动温度和CLOHP的振荡稳定性有很大的影响,因此需要根据实际情况进行仔细选择。与石蜡系统相比,石蜡/ CLOHP系统在加热过程中表现出更好的动态热性能,在冷却过程中表现出更好的静态热性能。受CLOHP的传热能力和PCM的电导率的限制,当加热功率超过阈值时,PCM无法保持在固液共存的状态。 (C)2015 Elsevier Ltd.保留所有权利。

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