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Solidification characteristics of water based graphene nanofluid PCM in a spherical capsule for cool thermal energy storage applications

机译:用于冷热能存储应用的球形胶囊中水基石墨烯纳米流体PCM的凝固特性

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摘要

This study aimed to investigate the solidification behavior of water dispersed with graphene nanoplatelets (GNPs) in a spherical container during solidification. The nanofluid phase change materials (NFPCMs) with GNP mass concentrations of 0.3%, 0.6%, 0.9% and 1.2% were prepared and their corresponding thermal conductivity was measured both in liquid and solid states. The thermal conductivity data showed the linear and nonlinear enhancement in liquid and solid state, respectively. The addition of GNPs resulted to an appreciable reduction in the subcooling of water from -7 degrees C to -2.5 degrees C along with reduction of 25% in solidification time owing to its high thermal conductivity and larger specific surface area. The onset of solidification got advanced in the case of NFPCM due to higher cooling rate in the subcooling region for any given driving potential. The accelerated mode of energy charging occurred during 78% of total solidification time. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:这项研究旨在研究在固化过程中,用石墨烯纳米片(GNP)分散在球形容器中的水的固化行为。制备了GNP质量浓度为0.3%,0.6%,0.9%和1.2%的纳米流体相变材料(NFPCM),并在液态和固态下测量了它们相应的热导率。导热系数数据分别显示了液态和固态的线性和非线性增强。由于其高导热率和较大的比表面积,GNP的添加可将水的过冷度从-7摄氏度显着降低到-2.5摄氏度,并且固化时间减少了25%。在NFPCM的情况下,由于在任何给定的驱动潜力下,过冷区域中的冷却速度都较高,因此凝固的开始变得更加先进。加速充电模式发生在总固化时间的78%期间。 (C)2016 Elsevier Ltd和IIR。版权所有。

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