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Role of PCM based nanofluids for energy efficient cool thermal storage system

机译:基于PCM的纳米流体在节能冷却蓄热系统中的作用

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摘要

This present study presents the solidification behavior of water based nanofluid phase change material encapsulated in a spherical container. The nanofluid phase change material (NFPCM) was prepared by dispersing the multi wall carbon nanotubes (MWCNT) with volume fractions of 0.15%, 0.3%, 0.45%, and 0.6% in de-ionized (DI) water as the base phase change material. The solidification experiments were conducted with DI water and the NFPCM and maximum reductions of 14% and 20.1% were observed in the solidification time with the NFPCMs at surrounding bath temperature of -9℃ and -12℃ respectively. The presence of MWCNT also acted as nucleating agent that caused appreciable reduction in the subcooling. The enhanced thermal transport properties of the NFPCM are very useful to operate the cool thermal energy storage (CTES) system at higher operating temperature of the secondary refrigerant. It is predicted that there is a possible energy saving potential of approximately 6-9% in the CTES using the NFPCMs.
机译:本研究提出了封装在球形容器中的水基纳米流体相变材料的固化行为。通过将体积分数为0.15%,0.3%,0.45%和0.6%的多壁碳纳米管(MWCNT)分散在作为基础相变材料的去离子(DI)水中来制备纳米流体相变材料(NFPCM) 。用去离子水和NFPCM进行凝固实验,并且在周围浴温为-9℃和-12℃的情况下,NFPCM在凝固时间内的最大减少量分别为14%和20.1%。 MWCNT的存在还起成核剂的作用,导致过冷度明显降低。 NFPCM增强的热传输特性对于在次级制冷剂的较高工作温度下运行冷热能存储(CTES)系统非常有用。预计使用NFPCM在CTES中可能会节省大约6-9%的能源。

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