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Crop drying by indirect active hybrid solar - Electrical dryer in the eastern Algerian Septentrional Sahara

机译:间接主动混合太阳能进行作物干燥-阿尔及利亚东部撒哈拉沙漠以南地区的电气干燥机

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摘要

In the present work, a new specific prototype of an indirect active hybrid solar-electrical dryer for agricultural products was constructed and investigated at LENREZA Laboratory, University of Ouargla (Algerian Sahara). In the new configuration of air drying passage; the study was done in a somewhat high range of mass flow rate between 0.04 and 0.08 kg/m~2 s a range not properly investigated by most researchers. Experimental tests with and without load were performed in winter season in order to study the thermal behavior of the dryer and the effect of high air masse flow on the collector and system drying efficiency. The fraction of electrical and solar energy contribution versus air mass flow rate was investigated. Slice tomato was studied with different temperatures and velocities of drying air in order to study the influence of these parameters on the removal moisture content from the product and on the kinetics drying and also to determine their suitable values. Many different thin layer mathematical drying models were compared according to their coefficient of determination (R~2) and reduced chi square (χ~2) to estimate experimental drying curves. The Middli model in this condition proved to be the best for predicting drying behavior of tomato slice with (R~2 = 0.9995, X~2 = 0.0001). Finally an economic evaluation was calculated using the criterion of payback period which is found very small 1.27 years compared to the life of the dryer 15 years.
机译:在目前的工作中,在瓦尔瓦尔格拉大学(阿尔及利亚撒哈拉)大学的LENREZA实验室构造并研究了一种用于农业产品的间接有源混合太阳能电干燥机的新的特定原型。在新配置的空气干燥通道中;该研究是在质量流量介于0.04和0.08 kg / m〜2 s之间的较高范围内进行的,大多数研究人员并未对此进行适当研究。为了研究干燥机的热性能以及高空气质量流量对收集器和系统干燥效率的影响,在冬季进行了有负载和无负载的实验测试。研究了电能和太阳能对空气质量流量的贡献率。在不同温度和干燥空气速度下研究切片番茄,以研究这些参数对产品中水分去除量和动力学干燥的影响,并确定其合适的值。根据确定系数(R〜2)和简化卡方(χ〜2)比较了许多不同的薄层数学干燥模型,以估算实验干燥曲线。在此条件下,Middli模型被证明是最佳的番茄切片干燥行为的预测模型,R〜2 = 0.9995,X〜2 = 0.0001。最后,使用回收期标准计算了经济评估,与烘干机15年的使用寿命相比,回收期很小,为1.27年。

著录项

  • 来源
    《Solar Energy》 |2009年第12期|2223-2232|共10页
  • 作者单位

    Laboratory of New and Renewable Energy in Aride Zones, University Kasdi Merhah, BP511 Ouargla, Algeria;

    Faculty of Science, Department of Mechanics, University Hadj Lakhdar, Batna, Algeria;

    Laboratory of New and Renewable Energy in Aride Zones, University Kasdi Merhah, BP511 Ouargla, Algeria;

    Laboratory of New and Renewable Energy in Aride Zones, University Kasdi Merhah, BP511 Ouargla, Algeria;

    Laboratory of New and Renewable Energy in Aride Zones, University Kasdi Merhah, BP511 Ouargla, Algeria;

    Laboratory of New and Renewable Energy in Aride Zones, University Kasdi Merhah, BP511 Ouargla, Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar dryer; moisture ratio; drying kinetics; mathematical drying models; slice tomato; efficiency;

    机译:太阳能干燥机水分比干燥动力学数学干燥模型;番茄片效率;
  • 入库时间 2022-08-18 00:26:40

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