Modification approach of Northern Wall to improve the performance of solar greenhouse dryers: A review

M.C. Ndukwu , Leonard Akuwueke , Godwin Akpan , M.F. Umunna , Godwin Usoh , Inemesit Ekop , Promise Etim , I. Okosa , Francis Orji , E.C. Ikechukwu-Edeh , Ifiok Ekop , Merlin Simo-Tagne , Lyes Bennamoun , Hongwei Wu , Fidelis Abam
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Abstract

Globally, interest is shifting toward green energy due to its environmental appeal. Therefore, to promote energy and environmental conservation in drying, several solar dryers have been developed which offers limitless, clean, and free energy to dry agricultural product. Among these solar dryers, solar greenhouse dryers offer a very simple low-temperature, energy-efficient structure capable of drying large beds of crops by harnessing thermal radiation energy from the sun. To improve the thermal performance in the passive mode especially, several modification approaches have been adopted. This article, therefore, reviewed various possible modification methods that have been adopted to improve the thermal performance of the greenhouse, with a focus on the modification of the northern wall. The various strategies involved in the modification of the north wall structure include creating an opaque north wall with black painted materials, installing a reflective north wall using a mirror, integrating heat storage materials like pebbles or brick, integrating phase change materials into the north wall, digging the soil depth to form a north wall and creating a variable southern roof with a modified north wall. Modifying the northern wall showed higher drying chamber temperature compared to completely transparent convectional greenhouse dryers in all the studies. These modifications can increase the temperature of the modified greenhouse by 13.38∼21.10% for a natural convection solar greenhouse dryer compared to the conventional type. With this approach, the radiation losses from the northern wall can be minimized and the energy management system of the greenhouse can be optimized for higher performance, making it more sustainable and eliminating the use of fossil fuel in agricultural product drying.

Abstract Image

提高日光温室干燥器性能的北墙改造方法综述
在全球范围内,由于绿色能源对环境的吸引力,人们的兴趣正在转向绿色能源。因此,为了促进干燥过程中的节能环保,人们开发了几种太阳能干燥机,为干燥农产品提供无限的、清洁的、免费的能源。在这些太阳能烘干机中,太阳能温室烘干机提供了一种非常简单的低温,节能的结构,能够通过利用太阳的热辐射能量来干燥大床的作物。为了改善被动模式下的热性能,采用了几种改进方法。因此,本文回顾了各种可能的改造方法,以改善温室的热性能,重点是北墙的改造。修改北墙结构的各种策略包括使用黑色涂料材料创建不透明的北墙,使用镜子安装反射的北墙,集成鹅卵石或砖等储热材料,将相变材料集成到北墙中,挖掘土壤深度形成北墙,并通过修改北墙创建可变的南屋顶。在所有的研究中,与完全透明的对流温室干燥器相比,修改北墙的干燥室温度更高。这些改进可以使改造后的温室温度比传统类型的自然对流太阳能温室干燥器提高13.38 ~ 21.10%。通过这种方法,可以最大限度地减少北墙的辐射损失,并优化温室的能源管理系统,使其具有更高的性能,使其更具可持续性,并消除了在农产品干燥过程中使用化石燃料。
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