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Performance analysis of a solar air heater modified with zig-zag shaped copper tubes using energy-exergy methodology

机译:利用Zig-ZAG形铜管改造的太阳能空气加热器的性能分析使用能量驱动方法

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This study has been performed to enhance the performance of the solar air heater (SAH) using copper tubes to the absorber plate. Thermodynamic analysis of the SAH with and without copper tubes attached to the absorber plate has been performed. The improvement potential, sustainability index, and waste energy ratio have also been studied. From the results, it has been found that the thermal and exergy efficiency of the absorber with copper tubes is higher as compared to the absorber without copper tubes for the same climatic conditions. The energy efficiency of the SAH with and without copper tubes absorber was ranged from 14.53 to 20.36% and 12.45-17.53% with an average of 18.26% and 16.29%, respectively in the natural convection mode. The exergetic efficiency was ranged from 1.2 to 1.939% and 0.95-1.53% with an average of 1.69% and 1.41%, respectively. Energy and exergy analysis of the SAH with copper tubes attached absorber have also been performed for the forced convection mode at varying air flowrate from 0.0166 to 0.058 kg/s. The maximum value of energy and exergy efficiency of the SAH was obtained as 62.8% and 5.848%, respectively at the airflow rate of 0.05 kg/s.
机译:已经进行了本研究以增强太阳能加热器(SAH)对吸收板的性能的性能。已经进行了具有连接到吸收板的铜管的SAH的热力学分析。还研究了改善潜力,可持续性指标和废能比。从结果中,已经发现,与铜管相比,吸收器的吸收器的热和漏极效率高于没有铜管的吸收器,用于相同的气候条件。具有铜管吸收器的SAH的能量效率为14.53至20.36%和12.45-17.53%,平均分别为自然对流模式,平均为18.26%和16.29%。前进效率范围为1.2%至1.939%和0.95-1.53​​%,平均分别为1.69%和1.41%。使用铜管附着的SAH的能量和漏极分析也已经针对从0.0166至0.058 kg / s的不同空气流量的强制对流模式进行了所连接的吸收器。 SAH的最大能量和漏胀效率的最大值分别为62.8%和5.848%,分别以0.05kg / s的气流速率。

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