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Key technologies and research progress on enhanced characteristics of cold thermal energy storage

机译:冷热储能增强特性的关键技术与研究进展

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Cold thermal energy storage can be used to address the unbalanced distribution of electrical energy temporally and spatially by using phase change materials (PCMs). However, these materials face multiple disadvantages, such as phase separation, supercooling, poor heat-conducting performance, etc. Previous literature has revealed that the main approaches to address such issues include material modification, the outfield effect, and heat exchange structure enhancement. Since the 1990s, pulsating heat pipes have been considered a new type of heat exchange structure due to several advantages, including efficient heat transfer and high heat flux. Nanoadditives have proven to effectively improve the heat conductivity coefficient of PCMs, while ultrasonic waves have shown to induce nucleation and improve the homogeneity of heat and mass transfer. The application of pulsating heat pipes into phase change material-based cold energy storage, coupled with ultrasonic waves, appears to be promising as an effective measure to increase the performance of cold thermal energy storage. (C) 2019 Elsevier B.V. All rights reserved.
机译:冷热储能可用于通过使用相变材料(PCM)来解决时间和空间上的电能的不平衡分布。然而,这些材料面临多个缺点,例如相分离,过冷,导热性能差等。之前的文献透露,解决此类问题的主要方法包括材料改性,外场效应和热交换结构增强。由于20世纪90年代以来,由于若干优点,脉动热管被认为是一种新型的热交换结构,包括有效的传热和高热量通量。纳米造碳已经证明是有效提高PCM的导热系数,而超声波已经显示出诱导成核并改善热量和传质的均匀性。将脉动热管在相变材料的冷能量存储中的应用,与超声波相连,似乎是有效的增​​加,以提高冷热能量存储的性能。 (c)2019 Elsevier B.v.保留所有权利。

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