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Study on performance of a packed bed latent heat thermal energy storage unit integrated with solar water heating system

机译:结合太阳能热水系统的填充床潜热蓄热单元性能研究

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摘要

In thermal systems such as solar thermal and waste heat recovery systems, the available energy supply does not usually coincide in time with the process demand. Hence some form of thermal energy storage (TES) is necessary for the most effective utilization of the energy source. This study deals with the experimental evaluation of thermal performance of a packed bed latent heat TES unit integrated with solar flat plate collector. The TES unit contains paraffin as phase change material (PCM) filled inspherical capsules, which are packed in an insulated cylindrical storage tank. The water used as heat transfer fluid (HTF) to transfer heat from the solar collector to the storage tank also acts as sensible heat storage material. Charging experiments were carried out at varying inlet fluid temperatures to examine the effects of porosity and HTF flow rate on the storage unit performance. The performance parameters such as instantaneous heat stored, cumulative heat stored, charging rate and system efficiency are studied. Discharging experiments were carried out by both continuous and batchwise processes to recover the stored heat, and the results are presented.
机译:在诸如太阳热能和废热回收系统的热力系统中,可用的能量供应通常在时间上与工艺需求不一致。因此,某种形式的热能存储(TES)对于最有效地利用能源是必需的。这项研究处理与太阳能平板集热器集成的填充床潜热TES单元的热性能的实验评估。 TES单元包含石蜡作为相变材料(PCM)填充的非球形胶囊,包装在绝缘的圆柱形储罐中。用作传热流体(HTF)的水将热量从太阳能集热器传递到储水箱,也可用作显热储热材料。在变化的入口流体温度下进行装料实验,以检查孔隙率和HTF流量对存储单元性能的影响。研究了瞬时蓄热,累积蓄热,充电率和系统效率等性能参数。通过连续和间歇过程进行排放实验,以回收储存的热量,并给出了结果。

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