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Review on thermal conductivity enhancement, thermal properties and applications of phase change materials in thermal energy storage

机译:综述相变材料的导热系数提高,热性能及其在储热中的应用

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摘要

In recent years, energy conservation and environmental protection have become most important issues for humanity. Phase change materials (PCMs) for thermal energy storage can solve the issues of energy and environment to a certain extent, as PCMs can increase the efficiency and sustainability of energy. PCMs possess large latent heat, and they store and release energy at a constant temperature during the phase change process. Thereby PCMs have gained a wide range of applications in various fields, such as buildings, solar energy systems, power systems and military industry. However, low thermal conductivity of PCMs leads to low heat transfer rate, thus, numerous studies have been carried out to improve thermal conductivity of PCMs. The main purpose of this paper is to review the methods for enhancing thermal conductivity of PCMs, which include adding additives with high thermal conductivity and encapsulating phase change materials. It is found that addition of thermal conductivity enhancement fillers is a more effective method to improve thermal conductivity of PCMs, where carbon-based material additives possess a more promising application prospect. Finally, the applications of PCMs in solar energy system, buildings, cooling system, textiles and heat recovery system are also analyzed.
机译:近年来,节能环保已成为人类最重要的课题。用于热能存储的相变材料(PCM)可以在一定程度上解决能源和环境问题,因为PCM可以提高能源的效率和可持续性。 PCM具有很大的潜热,它们在相变过程中以恒定的温度存储和释放能量。因此,PCM已经在诸如建筑物,太阳能系统,电力系统和军事工业的各个领域中获得了广泛的应用。然而,PCM的低导热率导致低的热传递速率,因此,已经进行了许多研究来改善PCM的导热率。本文的主要目的是回顾增强PCM导热性的方法,包括添加具有高导热性的添加剂和封装相变材料。已经发现,添加导热性增强填料是提高PCM导热性的更有效方法,而碳基材料添加剂具有更广阔的应用前景。最后,分析了PCM在太阳能系统,建筑,冷却系统,纺织品和热回收系统中的应用。

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