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Thermal property study of fatty acid mixture as bio-phase change material for solar thermal energy storage usage in domestic hot water application

机译:脂肪酸混合物作为生物相变材料的热性质研究,用于家用热水中的太阳能储热

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摘要

For the correct design, simulation and specific application of the latent heat thermal energy storage (LHTES) system, detailed evaluation of phase change material (PCM) properties are essential. Present study aims to analyze the thermal and volume dependent behavior of available organic Bio-PCM OM55, using conventional thermal gravimetric analyzer (TGA), thermal constant analyzer (TCA), differential scanning calorimeter (DSC) and in-house T-history method (THM). Execution of the mentioned thermal analysis outcome with significant information of OM55. TGA shows that OM55 is thermally stable within the operating temperature 45-60 degrees C, because the maximum permissible degradation temperature 154.6 degrees C is much higher than operating temperature range. The OM55 has considerable thermal conductivity compared to the existing PCM, which is already used in domestic solar water heating (DSWH) applications. The evaluation of transition temperature, isothermal enthalpy, and specific heat by THM are well compared with the DSC analysis. Comparison of DSC and THM analysis showed that the behavior of OM55 is volume independent. The overall study concluded that OM55 is a potential Bio-PCM. However, for the optimum amount of energy storage and discharge in OM55, it is recommended to operate the LHTES unit over a temperature range between 46-59 degrees C for domestic hot water application.
机译:为了正确设计,模拟和潜热蓄热(LHTES)系统的特定应用,必须详细评估相变材料(PCM)特性。本研究旨在使用传统的热重分析仪(TGA),热常数分析仪(TCA),差示扫描量热仪(DSC)和内部T历史方法(T-history method)分析可用的Bio-PCM OM55有机物的热和体积依赖性行为( THM)。执行带有OM55重要信息的上述热分析结果。 TGA显示OM55在45-60摄氏度的工作温度下具有热稳定性,因为最高允许降解温度154.6摄氏度远高于工作温度范围。与现有PCM相比,OM55具有相当大的导热性,而现有PCM已用于家用太阳能热水(DSWH)应用中。通过THM与DSC分析相比,可以很好地评估转变温度,等温焓和比热。 DSC和THM分析的比较表明OM55的行为与体积无关。总体研究得出结论,OM55是一种潜在的Bio-PCM。但是,为了在OM55中获得最佳的能量存储和释放量,建议将LHTES单元在46-59摄氏度之间的温度范围内操作以用于生活热水。

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