提高太阳能空气集热器热性能的实验研究

Souleymane Sinon, Salifou Tera, O. Sanogo, Sayouba Sandwidi, B. Korgo, S. Kam
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引用次数: 0

摘要

本文研究了用于加热果蔬干燥机干燥空气的太阳能集热器的热性能。通过减少收获后的损失和增加当地农业生产者的收入,这种原型收集器可能成为提高布基纳法索和其他发展中国家能源效率和粮食安全的可行解决方案。收集器首先通过使用黑色喷漆罐作为空气管道来实现,穿孔以增加湍流,并在收集表面覆盖玻璃。实现后,收集器连接到干燥器,并进行测量活动,以评估其热性能。在风速为0.3 m/s的条件下,测量的参数为日照和空气温度。分析结果表明,在142w /m2 ~ 837w /m2的辐照条件下,集热器进出口空气温差在0.1℃~ 74.4℃之间变化较大。风管的黑色涂漆表面以及湍流的增加有助于提高收集器的效率,在0.94%到50.68%之间变化,并允许记录空气温度范围从27.2°C到69.2°C在干燥器内。这个温度范围对大多数食品的干燥是有利的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation for Augmentation of Thermal Performance of Solar Air Collector
This paper presents a study of the thermal performance of a solar air collector used to heat the drying air of a fruit and vegetable dryer. The prototype collector could be a viable solution to improve energy efficiency and food security in Burkina Faso and other developing countries, by contributing to the reduction of post-harvest losses and the increase of income for local agricultural producers. The collector is first realized by using black painted cans as air ducts, perforated to increase turbulence, and a glass covering the collection surface. After realization, the collector is connected to the dryer and a measurement campaign is conducted to evaluate the thermal performance of it. The measured parameters are the sunshine and the air temperature by keeping the air speed fixed at 0.3 m/s. The analysis of the results shows an important variation of the air temperature difference going from 0.1°C to 74.4°C, between the inlet and the outlet of the collector for an irradiation which varies between 142 W/m2 and 837 W/m2. The black painted surface of the air ducts as well as the increase in turbulence contributed to improve the efficiency of the collector which varies between 0.94% and 50.68% and allowing to record air temperatures ranging from 27.2°C to 69.2°C inside the dryer. This temperature range is favorable for the drying of most food products.
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