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Energy and exergy analysis of a heat storage tank with a novel eutectic phase change material layer of a solar heater system

机译:具有新型共晶相变材料层的太阳能热水器储热罐的能量和火用分析

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Solar energy is one of the most important renewable energy sources, but it is not available every time and every season. Thus, storing of solar energy is important. One of the popular methods of heat storage is use of phase change materials (PCMs) which have large thermal energy storage capacity. In this study, the heat storage tank in a domestic solar water heating system was chosen as control volume. The experiments were performed in the province of Elazg, Turkey, in November when solar radiation was weak due to cloudy sky. The heat storage tank of the system was modified to fill PCM between insulation and hot water part. A few PCMs which are Potassium Fluoride, Lithium Metaborate Dihydrate, Strontium Hydroxide Octahydrate, Barium Hydroxide Octahydrate, Aluminum Ammonium Sulfate, and Sodium Hydrogen Phosphate were analyzed to proper operating conditions using a Differential Scanning Calorimeter (DSC) and the best PCM was obtained with the Aluminum Ammonium Sulfate and Sodium Hydrogen Phosphate mixture. Thus, eutectic PCM was obtained and used in a heat storage tank of the solar water heating system. Energy and exergy analysis of heat storage tank was performed with and without the PCM. Energy and exergy analysis has shown that the heat storage tank with the PCM is more efficient than without the PCM and the maximum exergy efficiency was obtained as 22% with the heat storage tank with the PCM.
机译:太阳能是最重要的可再生能源之一,但并非每时每刻都有。因此,太阳能的存储很重要。流行的储热方法之一是使用具有大储热能力的相变材料(PCM)。在这项研究中,选择家用太阳能热水系统中的储热罐作为控制量。该实验于11月在土耳其Elazg省进行,当时由于多云的天空太阳辐射微弱。对该系统的储热罐进行了改造,以在保温材料和热水部分之间填充PCM。使用差示扫描量热仪(DSC)将一些PCM(氟化钾,偏硼酸锂二水合物,氢氧化锶八水合物,氢氧化钡八水合物,硫酸铝铵和磷酸氢钠)分析到适当的操作条件,并通过PCM获得了最佳的PCM。硫酸铝铵和磷酸氢钠的混合物。因此,获得了共晶PCM并将其用于太阳能热水系统的储热罐中。使用和不使用PCM进行储热罐的能量和火用分析。能量和火用分析表明,带PCM的储热罐比不带PCM的储热罐效率更高,带PCM的储热罐的最大火用效率为22%。

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