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Influence of the size of spherical capsule on solidification characteristics of DI (deionized water) water for a cool thermal energy storage system - An experimental study

机译:球形胶囊尺寸对去离子水冷却系统储能特性的影响-实验研究

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The present study aims to investigate the influence of the size of the spherical capsule on the solidification characteristics of water as the PCM (phase change material) filled with 90% of its full volume. The experiments were conducted with three different sizes of stainless steel spherical capsules filled with PCM up to 90% of its full volume, maintained at various bath temperatures. It was observed that the capsule size had a significant influence on subcooling at lower temperature driving potential and was totally eliminated at higher temperature potential, for all the capsule sizes. The freeze front moved at a faster rate in the larger capsule than in the smaller capsule till the solidification of 75% mass of PCM. This effect was more pronounced at a higher temperature driving potential. Increasing the temperature potential was not beneficial for the 74 mm capsule due to insignificant increase in heat flux. However, the increased temperature potential significantly enhanced the heat flux by several folds for the higher diameter capsules during the solidification of 75% of mass. Considering the larger size capsule with sufficient temperature potential would hence be the optimal way of designing an increased energy efficient CTES (Cool thermal energy storage) system with rapid charging and discharging. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究旨在研究球形胶囊的尺寸对水的凝固特性的影响,因为PCM(相变材料)充满了其全部体积的90%。实验是对三种不同尺寸的不锈钢球形胶囊进行的,这些胶囊填充了高达其全部体积90%的PCM,并保持在各种浴温下。观察到,对于所有胶囊尺寸,胶囊尺寸在较低温度驱动电势下对过冷有显着影响,并且在较高温度电位下被完全消除。大胶囊中的冷冻前沿比小胶囊中的冷冻前沿移动得更快,直到PCM质量达到75%。在较高的温度驱动电势下,这种影响更为明显。由于热通量的增加不明显,因此增加温度潜势对于74 mm胶囊没有好处。但是,对于直径更大的胶囊,在凝固75%的质量时,升高的温度潜能显着提高了热通量几倍。因此,考虑具有足够的温度潜能的较大尺寸的胶囊将是设计具有快速充放电的高能效CTES(冷热能存储)系统的最佳方法。 (C)2015 Elsevier Ltd.保留所有权利。

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