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Heat transfer characteristics of thermal energy storage for PCM (phase change material) melting in horizontal tube: Numerical and experimental investigations

机译:水平管中PCM(相变材料)熔化的热能存储的传热特性:数值和实验研究

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This paper focuses on the experimental and numerical study of the storage and release of thermal heat during melting and solidification of PCM (phase change material). Heat transfer enhancement techniques such as the use of conductors like graphite and metal tubes have been proven to be effective. The material used for thermal energy storage systems is a composite based on epoxy resin loaded with metal hollow tubes filled with paraffin wax. Differential Scanning Calorimetry has been used for measurement of melting enthalpy and determination of heat capacity. The thermophysical properties of the prepared composite phase change material have been characterized using a new transient hot plate apparatus. The results have shown that most important thermal properties of these composites at the solid and liquid states are the "apparent" thermal conductivity, the heat storage capacity and the latent heat of fusion. These experimental results have been simulated using numerical Comsol (R) Multiphysics 4.3 based models with success. The results of the experimental investigation are compared favorably with the numerical results and thus serve to validate the numerical approach. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文着重于相变材料PCM熔化和固化过程中热能的储存和释放的实验和数值研究。传热增强技术(例如使用诸如石墨和金属管的导体)已被证明是有效的。用于热能存储系统的材料是一种基于环氧树脂的复合材料,其中装有金属空心管,填充了石蜡。差示扫描量热法已用于测量熔融焓和确定热容量。使用新型瞬态热板设备对制备的复合相变材料的热物理性质进行了表征。结果表明,这些复合物在固态和液态时最重要的热性能是“表观”热导率,储热能力和熔融潜热。这些实验结果已经成功地使用基于数值Comsol(R)Multiphysics 4.3的模型进行了仿真。实验研究的结果与数值结果进行了比较,从而有助于验证数值方法。 (C)2015 Elsevier Ltd.保留所有权利。

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