Modification and the Performance Enhancement of Solar Biomass Dryer

T. Ahmed, T. Zaman
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Abstract

Drying is an important agricultural process, particularly for crops, and shriveled products are used all over the world. The performance of drying green chili was also tested in this article, which created an alternate way of drying agricultural products. The goal of this study is to provide a solar biomass hybrid dryer with improved design, construction, and performance testing. During most hours of the trial, the temperature within the solar collector and dryer was sufficiently higher than the ambient temperature, according to the results obtained during the test period. The temperature of the ambient air at the collector intake ranged from 30 to 35 degrees Celsius. The temperature of the air at the collector's outlet ranged from 54 to 64 degrees Celsius, while the temperature of the drying chamber ranged from 51 to 60 degrees Celsius, making it suitable for drying green chili and a variety of other agricultural products. The collector was found to be 46.54 percent efficient. The findings revealed that the alteration of the collector, which produces turbulent air flow and improves chamber wall insulation, affects drying. Based on the results of this study, the created solar biomass hybrid drier is cost-effective for small-scale crop growers in rural areas of developing countries.
太阳能生物质干燥机的改造与性能提升
干燥是一个重要的农业过程,特别是对农作物来说,干燥产品在世界各地都被使用。本文还对青椒的干燥性能进行了测试,为农产品的干燥开辟了一条新的途径。本研究的目的是提供一种具有改进设计、结构和性能测试的太阳能生物质混合干燥机。根据测试期间获得的结果,在试验的大部分时间内,太阳能集热器和干燥器内的温度远远高于环境温度。集热器进气处的环境空气温度为30 ~ 35摄氏度。集热器出口空气温度为54 ~ 64℃,干燥室温度为51 ~ 60℃,适合干燥青椒等多种农产品。该收集器的效率为46.54%。研究结果表明,集热器的改变会产生湍流气流,提高室壁的保温性,从而影响干燥。根据本研究的结果,所创造的太阳能生物质混合干燥器对发展中国家农村地区的小规模作物种植者具有成本效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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