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Thermal analysis on charging and discharging behaviour of a phase change material-based evacuated tube solar air collector

机译:相变材料真空管太阳能集热器充放电行为的热分析

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The performance analysis on the phase change material-based evacuated tube solar air collector was examined under consecutive and simultaneous charging and discharging modes. Acetamide was used as phase change material. The system performance was evaluated on the basis of the phase change material storage system energy efficiency, exergy efficiency, collector efficiency, the instantaneous energy stored in the phase change material and total energy stored by the system at low and high air flow rates of 0.018 kg/s and 0.035 kg/s, respectively. The maximum average efficiency (17.9%) of the collector was obtained at a high air flow rate during simultaneously charging and discharging of the phase change material. The results obtained demonstrate that the system is more effective when it is operated with high air flow rate during simultaneously charging and discharging of the phase change material. The average total energy at high air flow rates is 1.01 to 1.02 times more in comparison to that at low air flow rates. The findings show the feasibility of the phase change material-based evacuated tube solar air collector for producing hot air for space heating during consecutive and simultaneous charging and discharging of the phase change material in northen Indian climatic conditions. This system would be relevant in areas with good sunlight.
机译:在相继充放电模式下,对相变材料真空管太阳能集热器进行了性能分析。乙酰胺用作相变材料。系统性能是基于相变材料存储系统的能效,火用效率,收集器效率,相变材料中存储的瞬时能量以及在0.018 kg的高低空气流量下系统存储的总能量进行评估的/ s和0.035 kg / s。在相变材料的同时充放电期间,在高空气流速下获得集电器的最大平均效率(17.9%)。所获得的结果表明,当在相变材料的同时充放电期间以高空气流量运行时,该系统更为有效。高风量时的平均总能量是低风量时的平均总能量的1.​​01至1.02倍。研究结果表明,在印度北部气候条件下,相变材料的连续和同时充放电期间,基于相变材料的真空管太阳能集热器可产生热空气用于空间加热。该系统将在阳光充足的区域使用。

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