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Numerical Investigation of PCM in Vertical Triplex Tube Thermal Energy Storage System for CSP Applications

机译:CSP应用垂直三重管热能存储系统中PCM的数值研究

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Numerical study for phase change material (PCM) in high temperature vertical triplex tube thermal energy storage system (TTTESS) were performed, using ANSYS FLUENT 15. For validation purposes, numerical modelling of a low temperature PCM was initially conducted and the predicted results were compared with the numerical and experimental data from the literature. The average temperature for freezing and melting agree well with the results from the literature. The validated model for the low temperature PCM was extended to high temperature TTTESS; the supercritical CO_2 as the heat transfer fluid (HTF) flows in the inside and outside tubes during the charging and discharging processes, whereas the Lithium and Potassium carbonate (Li_2CO_3-K_2CO_3) (35%-65%) as the PCM is enclosed between them. To enhance the heat transfer inside the PCM, eight fins have been incorporated between the internal and external tubes. This study also provides results demonstrating the effect of adding more fins relative to the case of no fins on the freezing and melting fraction of the PCM. Compared to 2 tank system, the TTTESS with eight fins can provide significant performance with less size.
机译:使用ANSYS FLUENT 15进行高温垂直三重运动管热能储存系统(TTTESS)中相变材料(PCM)的数值研究。为了验证目的,最初进行了低温PCM的数值建模,并进行了预测结果来自文献的数值和实验数据。冷冻和熔化的平均温度与文献的结果很好。低温PCM的验证模型扩展到高温TTTESS;超临界Co_2作为传热流体(HTF)在充电和放电过程中在内部和外部管中流动,而锂锂和碳酸钾(Li_2CO_3-K_2CO_3)(35%-65%),在它们之间封闭。为了增强PCM内的传热,在内部和外部管之间结合了八个翅片。本研究还提供了表明在PCM的冷冻和熔化部分上添加更多翅片,表明添加更多翅片的效果。与2个罐系统相比,带有八个翅片的TTTES可以提供​​显着性能,尺寸较小。

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