cool thermal energy storage (CTES) system comprised of a c'/> Heat transfer and parametric studies of an encapsulated phase change material based cool thermal energy storage system
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Heat transfer and parametric studies of an encapsulated phase change material based cool thermal energy storage system

机译:封装相变材料基酷热能存储系统的传热与参数研究

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This work investigates the transient behaviour of a phase change material based energy storage (CTES)%29&ck%5B%5D=abstract&ck%5B%5D=keyword'>cool thermal energy storage (CTES) system comprised of a cylindrical storage tank filled with encapsulated phase change materials (PCMs) in spherical container integrated with an ethylene glycol chiller plant. A simulation program was developed to evaluate the temperature histories of the heat transfer fluid (HTF) and the phase change material at any axial location during the charging period. The results of the model were validated by comparison with experimental results of temperature profiles of HTF and PCM. The model was also used to investigate the effect of porosity, Stanton number, Stefan number and Peclet number on CTES system performance. The results showed that increase in porosity contributes to a higher rate of energy storage. However, for a given geometry and heat transfer coefficient, the mass of PCM charged in the unit decreases as the increase in porosity. The St number as well as the Ste number is also influential in the performance of the unit. The model is a convenient and more suitable method to determine the heat transfer characteristics of CTES system. The results reported are much useful for designing CTES system.
机译:该工作研究了基于相变材料的能量存储(CTE)%29和CK%5B%5D =摘要和CK%5B%5D =关键字'>冷热能量存储(CTES)系统,其由填充有封装的圆柱形储罐。与乙二醇冷却器厂一体化的球形容器中的相变材料(PCM)。开发了一种模拟程序,以在充电时段期间评估传热流体(HTF)和相变材料的温度历史。通过与HTF和PCM的温度谱的实验结果进行验证,验证了模型的结果。该模型还用于研究孔隙率,斯坦顿数,斯特凡数和PECLET数对CTES系统性能的影响。结果表明,孔隙率的增加有助于更高的能量储存速率。然而,对于给定的几何形状和传热系数,在该单元中充电的PCM的质量随着孔隙率的增加而降低。 ST号码以及STE编号在单位性能方面也有影响力。该模型是一种方便更合适的方法来确定CTES系统的传热特性。报告的结果对于设计CTES系统非常有用。

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