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Heat transfer enhancement in latent heat thermal storage systems: Comparative study of different solutions and thermal contact investigation between the exchanger and the PCM

机译:潜热蓄热系统中的传热增强:不同解决方案的比较研究和交换器与PCM之间的热接触研究

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Latent heat storage is a very efficient technique because of the high energy density of Phase Change Materials (PCM). However, these materials have low thermal conductivities which limit their use for industrial applications requesting a large power density. The purpose of this study is to present an experimental thermal energy storage using a phase change material associated with various configurations of conductive structures: finned exchangers, graphite powder and Expanded Natural Graphite (ENG) matrix. The experimental thermal conductivity enhancer setup consists of a heat exchanger tube. The outer annular portion of the exchanger is filled with the PCM. The Overall Heat Transfer Coefficient (OHTC) between the fluid and the PCM is measured for each configuration. PCM embedded in an ENG matrix appears to be the best configuration with an OHTC of about 3000 W m(-2) K-1 and confirms the interest of such a storage device for industrial processes. A study of the thermal properties of this composite material is detailed. The measured thermal conductivity of the ENG/PCM composite is about 100 times greater than the conductivity of the PCM alone. A numerical model for the simulation of the heat transfer within such a material is developed by an enthalpy method in an axisymmetric geometry. It is used for the identification of the thermal contact resistance between the tube and the composite material. The numerical simulations are also compared to the experimental results and used to investigate the impact of the thermal contact resistance on the heat transfer process of the LHTS system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于相变材料(PCM)的高能量密度,潜热存储是一种非常有效的技术。但是,这些材料的热导率低,这限制了它们在要求大功率密度的工业应用中的使用。这项研究的目的是提供一种使用相变材料的实验性热能存储设备,该相变材料与各种结构的导电结构相关联:翅片式换热器,石墨粉和膨胀天然石墨(ENG)基体。实验性导热率增强装置由一个热交换器管组成。交换器的外部环形部分充满了PCM。对于每种配置,都将测量流体与PCM之间的总传热系数(OHTC)。嵌入到ENG矩阵中的PCM似乎是OHTC约为3000 W m(-2)K-1的最佳配置,并证实了这种存储设备对工业过程的兴趣。详细研究了这种复合材料的热性能。测得的ENG / PCM复合材料的热导率大约是单独PCM的热导率的100倍。通过焓方法在轴对称几何形状中开发了用于模拟这种材料内传热的数值模型。它用于识别管和复合材料之间的热接触电阻。数值模拟也与实验结果进行了比较,并用于研究热接触电阻对LHTS系统传热过程的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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