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首页> 外文期刊>Journal of Cleaner Production >Improvement of the efficiency of solar thermal energy storage systems by cascading a PCM unit with a water tank
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Improvement of the efficiency of solar thermal energy storage systems by cascading a PCM unit with a water tank

机译:通过将PCM单元与水箱级联来提高太阳能储热系统的效率

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For solar heating systems, adding phase change material (PCM) can significantly increase the thermal storage capacity. This paper proposes a system using a PCM thermal storage unit cascadely combined with a water tank and configures a composite PCM suitable for the system. This study investigates the impact of this system configuration on the system efficiency while developing a matching principle between components. The system model is built using TRNSYS software; considering the supercooling property, a numerical calculation program of the PCM unit is compiled and verified. The optimal parameters of the PCM are studied by simulations. Finally, sodium acetate trihydrate mixtures are configured and selected as the PCM. The results show that the phase change temperature range suitable for conventional heating systems is 47.5-57.5 degrees C. The combined use of the PCM unit and water tank can increase the efficiency of the heat storage system. The optimal volume ratio of the PCM unit is 0.67-0.78. Compared with a single water tank system, the solar fraction of the series system can be increased by approximately 30%. Compared with a water tank-PCM unit parallel system, the PCM in the series system effectively increases the system heat collection and enhances the solar fraction by 5%-12%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对于太阳能加热系统,添加相变材料(PCM)可以显着提高蓄热能力。本文提出了一种使用PCM蓄热单元与水箱级联的系统,并配置了适合该系统的复合PCM。这项研究调查了此系统配置对系统效率的影响,同时建立了组件之间的匹配原理。系统模型是使用TRNSYS软件构建的;考虑到过冷性,编译并验证了PCM单元的数值计算程序。通过仿真研究了PCM的最佳参数。最后,配置乙酸钠三水合物混合物并将其选择为PCM。结果表明,适用于常规加热系统的相变温度范围为47.5-57.5摄氏度。PCM单元和水箱的组合使用可以提高储热系统的效率。 PCM单元的最佳体积比为0.67-0.78。与单水箱系统相比,串联系统的太阳能比例可增加约30%。与水箱-PCM单元并联系统相比,串联系统中的PCM有效地增加了系统的热量收集,并提高了5%-12%的太阳能百分比。 (C)2019 Elsevier Ltd.保留所有权利。

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