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Phase change materials for solar thermal energy storage in residential buildings in cold climate

机译:寒冷气候下住宅建筑中太阳能热能存储的相变材料

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Heating accounts for a large proportion of energy consumption in residential buildings located in cold climate. Solar energy plays an important role in responding to the growing demand of energy as well as dealing with pressing climate change and air pollution issues. Solar energy is featured with low-density and intermittency, therefore an appropriate storage method is required. This paper reports a critical review of existing studies on thermal storage systems that employ various methods. Latent heat storage using phase change materials (PCMs) is one of the most effective methods to store thermal energy, and it can significantly reduce area for solar collector. During the application of PCM, the solid-liquid phase change can be used to store a large quantity of energy where the selection of the PCM is most critical. A numerical study is presented in this study to explore the effectiveness of NH4Al(SO4)(2)center dot 12H(2)O as a new inorganic phase change material (PCM). Its characteristics and heat transfer patterns were studied by means of both experiment and simulation. The results show that heat absorption and storage are more efficient when temperature of heat source is 26.5 degrees C greater than the phase transition temperature. According to heat transfer characteristics at both radial and axial directions, it is suggested to set up some small exchangers so that solar energy can be stored unit by unit in practice. Such system is more effective in low density residential buildings. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在寒冷气候下的住宅建筑中,供暖占能源消耗的很大比例。太阳能在应对不断增长的能源需求以及应对紧迫的气候变化和空气污染问题方面发挥着重要作用。太阳能具有低密度和间歇性的特点,因此需要适当的存储方法。本文报告了对采用各种方法的蓄热系统的现有研究的评论。使用相变材料(PCM)的潜热存储是存储热能的最有效方法之一,它可以显着减少太阳能收集器的面积。在PCM的应用过程中,固相变化可以用来存储大量能量,而PCM的选择最为关键。本研究中进行了数值研究,以探索NH4Al(SO4)(2)中心点12H(2)O作为新型无机相变材料(PCM)的有效性。通过实验和仿真研究了其特性和传热方式。结果表明,当热源温度比相变温度高26.5摄氏度时,吸热和储热效率更高。根据径向和轴向的传热特性,建议设置一些小型的换热器,以便在实践中可以逐个存储太阳能。这样的系统在低密度住宅建筑中更有效。 (C)2015 Elsevier Ltd.保留所有权利。

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