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Experimental performance of direct forced convection household solar dryer for drying banana

机译:直接迫使对流家用太阳能干燥机的实验性能干燥香蕉

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In this study, the performance of direct forced convection household solar dryer for drying banana is presented. A solar dryer with a polycarbonate plates cover on a ?at plate collector was constructed and it was designed in the parabolic shape. A polycarbonate cover is used to reduce heat losses while allowing the incident solar radiation to transmit into the dryer. Five batches of banana were dried in this solar dryer during January–July 2019. For each batch, 10 kg of bananas were dried. The results shown that the temperature of the drying air in the dryer varied between 35 °C to 60°C from 8:00 a.m. to 6:00 p.m. The moisture content of the banana in the dryer was reduced from an initial value 72% (wet basis, wb) to a fnal value of 28% (wb) within 4 days, whereas the moisture content of the sun dried samples was reduced to 40% (wb) in the same period. There was a considerable reduction in drying time in the solar dryer as compared to natural sun drying with 48% saving drying time. High quality of solar dried product in terms of ?avor, colour and texture were obtained. The payback period of the dryer is approximately 1.1 years.
机译:在这项研究中,提出了用于干燥香蕉的直接强制对流家用太阳能烘干机的性能。具有聚碳酸酯板盖上的太阳能干燥器在α上构造,并在抛物线形状中设计。聚碳酸酯盖用于减少热损失,同时允许入射的太阳辐射传递到干燥器中。在2019年1月至7月,在这家太阳能烘干机中干燥了五批香蕉。对于每批批次,干燥10千克香蕉。结果表明,干燥器中的干燥空气温度在上午8点至下午8点至下午6:00之间变化在35°C至60°C之间。干燥器中香蕉的水分含量从初始值72%(湿的基础,WB)减少到4天内的FNAL值为28%(WB),而阳光干燥样品的水分含量降至40 %(WB)在同一时期。与天然阳光干燥相比,在太阳能干燥机中,在48%节省干燥时间的情况下,在太阳能干燥器中有相当大的减少。获得高质量的太阳能干燥产品,获得了AVOR,颜色和纹理。干燥器的投资回收期约为1.1岁。

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