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首页> 外文期刊>Energy Conversion & Management >Augmentation of thermal efficiency of the glass evacuated solar tube collector with coaxial heat pipe with different refrigerants and filling ratio
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Augmentation of thermal efficiency of the glass evacuated solar tube collector with coaxial heat pipe with different refrigerants and filling ratio

机译:制冷剂和填充率不同的同轴热管玻璃真空太阳能集热器的热效率提高

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Modified coaxial heat pipes have been designed and manufactured to improve the thermal performance of the glass evacuated solar collectors. Heat pipes were made up of two concentric copper tubes so that the annulus volume space between the concentric tubes was charged with refrigerant. In addition, the air as the working fluid at four different mass flow rates 0.0051, 0.0062, 0.007 and 0.009 kg/s flows through the inner tube of the heat pipe to the flow through the annulus between the heat pipe and glass evacuated solar tubes. The effect of the tilt angle of the evacuated tube on thermal performance of the evacuated solar tube collector was examined to obtain the optimum tilt angle during the experiments period. The influence of filling ratio for the two types of refrigerant R22 and R 134a on the thermal efficiency of the coaxial heat pipe solar collector at filing ratio range from 30% to 60% was conducted experimentally. Results show that the maximum increased in the thermal efficiency reached 67% corresponding to without heat pipes at mass flow rate 0.009 kg/s. The experiment results showed similarity between the two refrigerants. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经设计和制造了改进的同轴热管,以改善玻璃真空太阳能收集器的热性能。热管由两个同心的铜管组成,因此,在同心管之间的环形空间中充有制冷剂。另外,作为工作流体的空气以四种不同的质量流量0.0051、0.0062、0.007和0.009 kg / s的速度流经热管的内管,流经热管和玻璃真空太阳能管之间的环空。在实验期间,检查了真空管的倾斜角对真空太阳能管集热器的热性能的影响,以获得最佳的倾斜角。实验研究了两种制冷剂R22和R 134a的填充率对填充比在30%至60%范围内的同轴热管太阳能集热器的热效率的影响。结果表明,在质量流量为0.009 kg / s时,热效率的最大增加达到67%,相当于没有热管的情况。实验结果表明两种制冷剂之间具有相似性。 (C)2017 Elsevier Ltd.保留所有权利。

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