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Effect of varying extent of PCM capsule filling on thermal stratification performance of a storage tank

机译:PCM胶囊填充程度不同对储罐热分层性能的影响

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Among the different pathways of improving the energy storage and energy utilization in a thermal energy storage system, the formation of thermal stratification in hot water tanks is a promising technology. In this study, we developed a novel numerical model to assess the thermal stratification performance in a hot water tank due to addition of encapsulated phase change material (PCM) by varying the bed height, bed porosity and the encapsulation diameter. The formulation of the present numerical model is devoid of complicated momentum and energy equations. A set of simplified energy balance equations is developed to account for heat transfer between the heat transfer fluid (HTF) and the PCM considering local thermal non-equilibrium. The temperature profile at the outlet of the storage tank during charging process demonstrates an enhancement in the Richardson number by 58.3%, at the end of the charging process, upon doubling the PCM bed height, and the corresponding improvement in the charging efficiency is found to be 54.6%. The melting point of PCM plays a pivotal role on the extent of stratification and storage efficiency, as it dictates the amount of heat diffusion towards the bottom section of TES. During discharge phase, if the HTF flow rate is doubled from the nominal value of 2 L/min, the extraction efficiency is enhanced by similar to 16.7%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在改善热能存储系统中的能量存储和能量利用的不同途径中,在热水箱中形成热分层是一种有前途的技术。在这项研究中,我们开发了一种新颖的数值模型,通过改变床层高度,床层孔隙率和包封直径来评估由于添加了包封相变材料(PCM)而导致的热水罐中的热分层性能。本数值模型的公式没有复杂的动量和能量方程。开发了一组简化的能量平衡方程,以解决考虑局部热不平衡的传热流体(HTF)与PCM之间的传热问题。充电过程结束时,储罐出口处的温度曲线表明,在PCM床高度加倍时,在充电过程结束时,理查森数增加了58.3%,发现充电效率相应提高了是54.6%。 PCM的熔点在分层和存储效率方面起着关键作用,因为它决定了向TES底部扩散的热量。在排放阶段,如果HTF流量从2 L / min的标称值翻倍,提取效率将提高约16.7%。 (C)2019 Elsevier Ltd.保留所有权利。

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