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Study on the performance of heat storage and heat release of water storage tank with PCMs

机译:PCM对储水罐蓄热与放热性能的研究

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Due to the latent heat performance of the phase change materials during the phase change process, if they are used in a solar energy storage tank, the heat storage efficiency and the heat release capacity of the tank can be effectively improved. In this study, a water storage tank containing two types of phase change materials with different melting points was proposed. Then, based on simulation calculation, the tank with the highest performance of thermal storage was obtained by changing the thickness of the phase change materials. Finally, three water storage tanks with different contents of phase change materials, respectively equipped with a circulating water system were established; the time of storing and releasing heat as well as the total amount of heat release were measured at releasing heat temperature of 40 and 45 degrees C. Results show that the presence of the phase change materials with different melting points can significantly shorten the time of storing heat. An increase in the contents of phase change materials in the tank leads to evident growth of heat release. At 40 degrees C, the amount of heat release are 21.35, 27.01 and 29.78 MJ at the contents of 0, 11.12% and 19.17% respectively, which are larger than those at 45 degrees C. The storage tank can reduce the use of electric heating devices and can be used in solar hot water systems. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于相变材料在相变过程中的潜热性能,如果将它们用于太阳能储罐中,则可以有效地提高储罐的储热效率和放热能力。在这项研究中,提出了一种储水罐,其中装有两种具有不同熔点的相变材料。然后,基于模拟计算,通过改变相变材料的厚度,可以获得储热性能最高的储罐。最后,建立了三个分别装有不同相变材料的储水箱,分别装有循环水系统。在40和45摄氏度的散热温度下测量了热量的储存和释放时间,以及热量的释放总量。结果表明,具有不同熔点的相变材料的存在可以大大缩短储存时间。热。储罐中相变材料含量的增加会导致热量释放明显增加。在40摄氏度时,热量的释放量分别为21.35、27.01和29.78 MJ,含量分别为0、11.12%和19.17%,大于45摄氏度时的热量。储罐可以减少电加热的使用设备,可用于太阳能热水系统。 (C)2017 Elsevier B.V.保留所有权利。

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