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Experimental investigation on solidification behavior of water based CNT nanofluids for cool thermal storage system

机译:蓄热系统中水基纳米碳纳米管凝固行为的实验研究

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This study aimed to investigate the thermal performance of a new sort of nano enhanced phase change material (NEPCM) for cool thermal storage energy storage (CTES) system. The NEPCM was prepared by suspending 0.1 wt. % multiwall carbon nanotubes (MWCNT) in deionized water (DI water) along with the nucleating agent. The stabilizing agent, sodium dodecylbenezene sulphonate (SDBS), was used to stabilize the MWCNT in water. The experiments were conducted at various surrounding bath temperatures with the NEPCM. The results evidently showed that reduction in freezing duration of ~ 25% compared to that of DI water and the presence of pseudomonas diminished the sub-cooling completely. Further, the fraction of mass solidified at various time intervals revealed that 50% of the PCM was frozen in 25% of the total freezing time for both the cases of the water PCM and NEPCM. The enhanced heat transport properties of the NEPCM without sub-cooling and accelerating charging will be very useful in designing energy efficient CTES system.
机译:这项研究旨在研究一种新型的纳米增强相变材料(NEPCM)的热性能,该材料用于冷蓄热能量存储(CTES)系统。 NEPCM是通过悬浮0.1wt。%的水来制备的。去离子水(去离子水)中的%多壁碳纳米管(MWCNT)以及成核剂。稳定剂十二烷基苯磺酸钠(SDBS)用于稳定水中的MWCNT。使用NEPCM在各种周围浴温下进行实验。结果显然表明,与去离子水相比,冷冻时间减少了约25%,并且假单胞菌的存在完全降低了过冷度。此外,在水的PCM和NEPCM的情况下,在不同的时间间隔固化的质量分数表明,在总冷冻时间的25%中冷冻了50%的PCM。无需过冷和加速充电的NEPCM增强的传热性能在设计节能型CTES系统时将非常有用。

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