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首页> 外文期刊>British Journal of Applied Science and Technology >Comparative Analysis and Performance ofSolar Dryers with Backup Incinerators forNsukka Sub-tropical and Makurdi HumidLocations Using Selected Farm Produce
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Comparative Analysis and Performance ofSolar Dryers with Backup Incinerators forNsukka Sub-tropical and Makurdi HumidLocations Using Selected Farm Produce

机译:Nsukka亚热带和Makurdi潮湿场所使用精选农产品的带备用焚化炉的太阳能干燥机的比较分析和性能

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A solar dryer and hybrids incorporating back up incinerators were designed and constructed for performance evaluation and analysis of efficiencies for selected farm produce of cassava grates, okra and chilli pepper in two climatic locations (sub-tropical of Nsukka and humid of Makurdi in Nigeria) at the University of Nigeria, Nsukka and Federal University of Agriculture, Makurdi, Nigeria. It consists of a solar collector, drying chamber, and incinerator. The dryer was used for drying at night; sunshine days and cloudy days. They were used for test drying, termed ‘no-load’ test (without any farm produce) and ‘on-load’ (cassava grates, okra and chilli pepper) as selected farm produce. Their respective weight losses were used to determine the reduction in moisture content. Drying was assumed to have taken place in the falling rate periods, which enabled the use of only one drying rate constant. Graphs of drying rates against time were plotted in each case and used to obtain the drying rate constant, K for the various conditions and locations. Comparison was made for the drying rate at the two locations. The efficiencies of the equipment at various locations were calculated and the drying rate efficiencies were also obtained. Results obtained showed that drying was fastest during the solar drying and least during the incinerator drying and the control drying respectively. The drying rate was also faster at Nsukka tropical location than Makurdi humid location. The mean location drying rate efficiencies obtained were 98.8%, 94.7%, and 87.4% for solar dryer, solar-incinerator dryer and incinerator dryer respectively. The computed efficiencies for the equipment were 56%, 13% and 16% for solar dryer, solar incinerator dryer and incinerator dryer respectively. The dryers can be used to substitute garri dehydration and drying of other farm produce in rural and semi-urban areas for improved quality.
机译:设计并建造了带有后备焚化炉的太阳能干燥机和混合动力车,用于在以下两个气候地点(Nsuk​​ka亚热带和尼日利亚Makurdi潮湿)的木薯),秋葵和辣椒精选农产品的性能评估和效率分析。尼日利亚大学Nsukka和联邦农业大学(尼日利亚马克库尔迪)。它由一个太阳能收集器,干燥室和焚化炉组成。干燥机在夜间干燥。阳光明媚的日子和多云的日子。它们被用于测试干燥,被称为“空载”测试(没有任何农产品)和“有载”(木薯gr,秋葵和辣椒)作为选定的农产品。它们各自的重量损失被用来确定水分含量的减少。假定干燥发生在下降速率期间,这使得只能使用一个恒定的干燥速率。分别绘制干燥速率与时间的关系图,并用于获得各种条件和位置下的干燥速率常数K。比较了两个位置的干燥速率。计算了设备在不同位置的效率,并且还获得了干燥速率效率。所得结果表明,在太阳能干燥过程中干燥最快,而在焚化炉干燥过程中和对照干燥过程中干燥最少。 Nsukka热带地区的干燥速度也快于Makurdi潮湿地区。太阳能干燥机,太阳能焚化炉干燥机和焚化炉干燥机的平均位置干燥率效率分别为98.8%,94.7%和87.4%。对于太阳能干燥器,太阳能焚化炉干燥器和焚化炉干燥器,设备的计算效率分别为56%,13%和16%。该干燥机可用于替代加里尔脱水和农村和半城市地区其他农产品的干燥,以提高质量。

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