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Thermal performance analysis of combined solar collector with triple concentric-tube latent heat storage systems

机译:三重同心管潜热系统组合式太阳能集热器的热性能分析

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摘要

In this paper, an analysis of the thermal performance of triple concentric-tube latent heat storage systems filled with a commercial phase change material (PCM: RT50) is presented. The triple concentrictube storage systems incorporating PCM are connected with a flat-plate solar collector. Water acting as heat transfer fluid (HTF) flows in the solar collector and receives solar thermal energy. The latter is then transferred by forced convection to the PCM and stored as latent heat in the storage unit. The finite volume method is used to model and numerically investigate the melting and heat transfer processes. The effect of natural convection on the melting heat transfer is taken into consideration through an effective thermal conductivity of the liquid phase of PCM. The thermal performance of the triple concentric-tube latent heat storage unit is evaluated and compared with the performance of the double concentric-tube storage unit under the meteorological conditions of a typical day of the month of July in Marrakesh city, Morocco. The results reveal that the combined solar collector with triple concentric-tube storage unit owns higher storage and collection efficiencies than that combined with double concentric-tube unit. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,分析了填充有商用相变材料(PCM:RT50)的三重同心管潜热存储系统的热性能。包含PCM的三重同心管存储系统与平板太阳能收集器相连。用作传热流体(HTF)的水在太阳能收集器中流动并接收太阳能。后者然后通过强制对流传递到PCM,并作为潜热存储在存储单元中。有限体积法用于建模和数值研究熔化和传热过程。通过PCM液相的有效热导率考虑了自然对流对熔融传热的影响。在摩洛哥的马拉喀什市,通常在7月的典型月份,对三重同心管潜热存储单元的热性能进行了评估,并将其与双同心管潜热存储单元的性能进行了比较。结果表明,三重同心管组合式太阳能集热器比双同心管组合式太阳能集热器具有更高的储热效率。 (C)2018 Elsevier B.V.保留所有权利。

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