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A review on thermal conductivity enhancement of paraffinwax as latent heat energy storage material

机译:石蜡作为潜热储能材料导热系数的研究进展

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摘要

Increasing energy demand calls for the implementation of proper thermal energy storage which is one of the most important components of solar energy conversion systems. Phase change material based latent heat energy storage systems have emerged as a promising option to effectively store thermal energy. Generally, paraffin wax is used as the most common phase change material for low to medium temperature storage applications because it has a large latent heat and low cost besides being stable, nontoxic and non-corrosive. The performance of paraffin wax based latent heat energy storage systems (LHESS) is limited by its poor thermal conductivity. In this paper, the previous experimental and theoretical research studies on LHESS using paraffin wax as phase change material with different performance enhancement techniques are reviewed. Further, research works related to dispersing different kind of nanoparticles in paraffin wax for the enhancement of its thermal conductivity are comprehensively reviewed with respect to synthesis, characterization and thermophysical properties of the nanoenhanced phase change material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:能源需求的增长要求实现适当的热能存储,这是太阳能转换系统最重要的组成部分之一。基于相变材料的潜热能存储系统已经成为有效存储热能的有前途的选择。通常,石蜡用作低温至中温储存应用的最常见的相变材料,因为它不仅具有稳定,无毒和无腐蚀性的潜热而且成本低廉。基于石蜡的潜热能存储系统(LHESS)的性能受到导热性差的限制。本文综述了以往使用石蜡作为相变材料并采用不同性能增强技术的LHESS的实验和理论研究。此外,关于纳米增强相变材料的合成,表征和热物理性质,对与在石蜡中分散不同种类的纳米颗粒以提高其导热性有关的研究工作进行了全面的综述。 (C)2016 Elsevier Ltd.保留所有权利。

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