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Influence of the storage period between charge and discharge in a latent heat thermal energy storage system working under partial load operating conditions

机译:在部分负载条件下工作的潜热热能存储系统中充放电之间的存储时间的影响

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The supply intermittency of energy sources like solar energy or industrial waste heat should be properly addressed when studying latent heat thermal energy storage (TES) systems, since it might cause an incomplete melting/solidification of phase change materials (PCM). In the present paper, and experimental study was performed to analyse the storage period (also known as stand-by period) in a latent heat TES system working under partial load operating conditions and the effect of its duration on the subsequent discharging process. In the experimental set-up, 99.5 kg of high density polyethylene (HDPE) was used as PCM in a 0.154 m(3) storage tank based on the shell-and-tube heat exchanger concept. Four different percentages of charge were evaluated: 58%, 73%, 83% (partial charge), and 97% (full charge). Each charging level was followed by three different periods of storage: 25 min, 60 min, and 120 min. The fact of working at different levels of charge caused that in some regions of the TES system the PCM was not completely melted. Thus, at the end of the charging process different levels of thermal homogenisation were observed. However, during the storage period, the PCM temperature showed a tendency to homogenisation, which was influenced by the energy distribution within the PCM, the heat losses, and the duration of the storage period. Focusing on the discharging period, it was observed that the duration of the storage period slightly affected the temperature and heat transfer profiles, causing the main differences of performance during the first 30 min of process.
机译:研究潜热热能存储(TES)系统时,应适当解决诸如太阳能或工业废热等能源的供应间歇性问题,因为这可能会导致相变材料(PCM)的熔化/固化不完全。在本文中,进行了实验研究以分析在部分负荷运行条件下工作的潜热TES系统的存储时间(也称为待机时间)及其持续时间对后续放电过程的影响。在实验设置中,基于壳管式热交换器的概念,在0.154 m(3)的储罐中将99.5 kg的高密度聚乙烯(HDPE)用作PCM。评估了四个不同的充电百分比:58%,73%,83%(部分充电)和97%(完全充电)。每个充电级别后都有三个不同的存储期:25分钟,60分钟和120分钟。在不同电荷水平下工作的事实导致在TES系统的某些区域中PCM并未完全融化。因此,在充电过程结束时,观察到不同程度的热均质化。但是,在存储期间,PCM温度显示出均匀化的趋势,这受PCM内的能量分布,热量损失和存储期间的持续时间影响。着眼于放电周期,观察到存储周期的持续时间对温度和传热特性略有影响,从而导致了过程的前30分钟内性能的主要差异。

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