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Latent heat thermal energy storage using cylindrical capsule: Numerical and experimental investigations

机译:使用圆柱形胶囊的潜热热能存储:数值和实验研究

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This paper is aimed at analyzing the melting behavior of paraffin wax as a phase change material (PCM) encapsulated in a cylindrical capsule, used in a latent heat thermal energy storage system with a solar water heating collector. The heat for melting of PCM in the capsule is provided by hot water surrounding it. Since it is observed experimentally that the phase change occurs in a range of temperature, the present analysis considers this range instead of constant phase change temperature and the deviation between the results of these two is presented. The numerical analysis has been carried out by using enthalpy method and the results are verified with the experimental data. The experiments have been done by visualization technique without disturbing the actual process of melting. Three distinct stages of melting process have been identified as revealed by visualization studies. Results indicate that the melting process is chiefly governed by the magnitude of the Stefan number, Ste, phase change temperature range and the capsule radius. The analysis shows that the agreement between analytical and experimental results is significantly improved when the results are obtained considering phase change temperature range and the natural convection in the liquid phase instead of considering the process to be conduction dominated only.
机译:本文旨在分析石蜡作为相变材料(PCM)包裹在圆柱形胶囊中的熔融行为,该胶囊用于带有太阳能集热器的潜热热能存储系统中。胶囊中PCM融化的热量由其周围的热水提供。由于实验观察到相变发生在一定温度范围内,因此本分析考虑了该范围,而不是恒定的相变温度,并给出了两者结果之间的偏差。采用焓法进行了数值分析,并用实验数据验证了结果。实验已经通过可视化技术完成,没有干扰实际的熔化过程。可视化研究表明,已经确定了熔化过程的三个不同阶段。结果表明,熔化过程主要受Stefan数,Ste,相变温度范围和胶囊半径的大小控制。分析表明,在考虑相变温度范围和液相自然对流的情况下获得分析结果与实验结果之间的一致性得到了显着改善,而不是仅仅考虑以传导过程为主导。

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