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Experimental investigations on a cross flow solar air heater having perforated circular absorber plate for thermal performance augmentation

机译:带有穿孔圆形吸热板的错流太阳能空气加热器用于提高热性能的实验研究

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摘要

Conventional solar air heaters are associated with low thermal and thermohydraulic efficiencies due to the formation of laminar sub-layer created in the region where the flowing air comes in contact with the absorber plate. Hence there is a need to break this laminar sub-layer to improve the convective heat transfer capability of the collector. In this study, a solar air heater with perforated circular absorber plate is adopted with cross-flow configuration. The thermal performance is investigated for 5, 8 and 10 mm perforation vent diameters as well as 24, 36 and 54 number of vents. The configuration with perforated absorber plate provides a better convective heat transfer and thereby leads to better thermal and thermohydraulic efficiencies. This is compared with the base model in the absence of perforated absorber plate for a wide operating range of Reynolds numbers from 3000 to 21000. It is found from the study that when there is an increase in the number of perforations, there is a significant increase in thermohydraulic efficiency, even though there is a marginal drop in thermal efficiency. Also, with an increase in diameter of the perforated vents there is a remarkable improvement in the thermo-hydraulic efficiency though there is a marginal drop in the thermal efficiency. The best operating range of Reynolds number for the perforated solar collector is found to be between 9,000 to 15,000 having 54 vent perforations corresponding to 8 mm diameter and offers an efficiency of 75.55%.
机译:常规的太阳能空气加热器由于在流动的空气与吸收板接触的区域中形成的层状子层的形成而具有低的热力和热工液压效率。因此,需要破坏该层状子层以提高收集器的对流传热能力。在这项研究中,采用带穿孔圆形吸收板的太阳能空气加热器具有错流配置。研究了5、8和10毫米穿孔排气孔直径以及24、36和54个排气孔的热性能。带有多孔吸收板的结构提供了更好的对流传热,从而带来了更好的热力和热工液压效率。在没有雷诺数的宽工作范围(从3000到21000)下,将其与没有多孔吸收板的基本模型进行了比较。从研究中发现,当穿孔数量增加时,穿孔数量会显着增加即使热效率略有下降,热液效率也不会降低。而且,随着穿孔的直径的增加,尽管热效率略有下降,但热工液压效率也有了显着提高。发现多孔太阳能集热器的最佳雷诺数工作范围是9,000至15,000,具有54个对应于8毫米直径的通风孔,效率为75.55%。

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