Realization and Experimental Study of a Forced Convection Solar Dryer

B. Dianda, Labayè Yves Japhet Koussoubé, Lareba Adélaïde Ouédraogo, M. Ousmane, D. Bathiébo
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Abstract

Post-harvest losses represent a significant cause of food insecurity worldwide. These losses not only affect the availability of food, but they also impact the economic stability of farmers and communities dependent on these crops. Food drying presents itself as a viable solution to reduce these post-harvest losses and ensure greater availability of food for human consumption. It is in this context that our work on the creation of an indirect solar dryer with forced convection, integrating an automatic temperature control system, takes place. This study consisted of creating a prototype and subsequently carrying out drying experiments on onions in order to evaluate the performance of the device. Our experiments took place from October 25 to October 29, 2023 at Joseph KI-ZERBO University. After 8 hours of drying, only 12% of the initial mass of the onions remained. The solar thermal collector presented an efficiency of 62%. And a drying efficiency, estimated at 17% with an average sunshine of 600W/m2.
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强制对流太阳能干燥器的实现与实验研究
收获后损失是全球粮食不安全的一个重要原因。这些损失不仅影响到粮食的供应,而且还影响到依赖这些作物的农民和社区的经济稳定。粮食干燥是减少收获后损失、确保更多粮食可供人类消费的可行解决方案。正是在这一背景下,我们开展了一项工作,研制出一种带有强制对流功能的间接太阳能干燥机,并集成了自动温度控制系统。这项研究包括制作一个原型,然后对洋葱进行干燥实验,以评估该设备的性能。实验于 2023 年 10 月 25 日至 10 月 29 日在约瑟夫-基泽博大学进行。经过 8 小时的干燥,洋葱的初始质量只剩下 12%。太阳能集热器的效率为 62%。在平均日照为 600W/m2 的情况下,干燥效率估计为 17%。
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