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Experimental analysis of geometrical parameters on the performance of an inline jet plate solar air heater

机译:几何参数对直喷式平板太阳能空气加热器性能的实验分析

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An experimental investigation has been carried out to study flow and heat transfer in solar air heater for inline holes inserted between absorber and back plate. The analysis has been carried out for cross flow conditions. The effect of flow and geometrical parameters, especially jet diameter and hydraulic diameter has been studied. Mass flow rate for the study is varied corresponding to the Reynolds number range of 4600-12,000. The jet diameter, streamwise pitch, and spanwise pitch, each normalized by hydraulic diameter, i.e. D-j/D-h, X/D-h, and Y/D-h, are in the range: 0.053-0.084, 0.53-0.63, and 0.53-0.63 respectively. Performance is studied in terms of Temperature Rise Parameter (TRP), collector efficiency, and Nusselt number. Hourly variations of solar intensity have also been shown. Collector efficiency increases and Temperature Rise Parameter decreases with increase in mass flow rate for all geometrical configurations. All the above-listed performance parameters are found to be maximum at jet diameter to hydraulic diameter ratio of 0.07. A correlation for Nusselt number in terms of Reynolds number, jet diameter, and hydraulic diameter has also been developed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经进行了实验研究,以研究太阳能空气加热器中插入在吸收器和背板之间的直通孔的流动和传热。已经针对横流条件进行了分析。研究了流动和几何参数的影响,特别是射流直径和水力直径的影响。该研究的质量流率根据4600-12,000的雷诺数范围而变化。分别由水力直径(即D-j / D-h,X / D-h和Y / D-h)标准化的射流直径,沿流方向的螺距和沿跨度的螺距分别在0.053-0.084、0.53-0.63和0.53-0.63的范围内。根据温升参数(TRP),收集器效率和Nusselt数来研究性能。还显示了太阳强度的每小时变化。对于所有几何配置,随着质量流量的增加,收集器效率提高,而温升参数降低。发现所有上面列出的性能参数在射流直径与水力直径比为0.07时最大。还已经开发出根据雷诺数,射流直径和水力直径的努塞尔数的相关性。 (C)2017 Elsevier Ltd.保留所有权利。

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