首页> 外文期刊>American Journal of Food Science and Technology >Mathematical Modelling and Solar Tunnel Drying Characteristics of Yellow Maize
【24h】

Mathematical Modelling and Solar Tunnel Drying Characteristics of Yellow Maize

机译:黄玉米的数学模型和太阳隧道干燥特性

获取原文
           

摘要

Solar drying experiments of maizes were conducted at Gape- Kpodzi, in southern Togo. In this purpose, new type tunnel solar dryer was used. Solar dryer consist of an air collector, drying chamber and an air circulation system. Heated air in solar air collector was forced through the maizes by a blower. Yellow dent type maize was used for drying experiments. During the drying period, drying air temperature, relative humidity, air flow rates, solar radiation, and lose of mass were measured continuously in different levels of the dryer. Maize with initial moisture content of 0.37 dry basis (kg water / kg dry matter) were dried until they reached a final moisture content of 0.13 (kg water / kg dry matter) at different temperatures with respect to solar radiation variation. Drying time was examined with moisture content ratio as exponential and polynomial correlations. The effective diffusivity varied from 1.938x10-10 to 1.164x10-10 m2/s over the different level of temperature range. Fourteen different mathematical models available in literature were compared using their coefficient of determination to estimate solar drying curves. According to statistical analysis results, Midilli et al. drying model has shown a better fit to the experimental drying data of maize with a coefficient of determination R2 = 0.9975 as compared to other models. The results of this study revealed that the developed solar tunnel dryer can used for dehydration of maize crops under the climatic conditions of southern Togo.
机译:在多哥南部的加佩-科普齐进行了玉米的日光干燥实验。为此,使用了新型隧道太阳能干燥器。太阳能干燥机由空气收集器,干燥室和空气循环系统组成。太阳能空气收集器中的热空气被鼓风机吹过玉米。将黄色凹痕型玉米用于干燥实验。在干燥期间,在干燥机的不同高度连续测量干燥温度,相对湿度,空气流速,太阳辐射和质量损失。干燥初始水分含量为0.37干基(千克水/千克干物质)的玉米,直到在不同温度下相对于太阳辐射变化达到最终水分含量为0.13(千克水/千克干物质)。用水分含量比作为指数和多项式相关性检验干燥时间。在不同温度范围内,有效扩散率从1.938x10-10到1.164x10-10 m2 / s不等。使用它们的确定系数比较了文献中可用的十四种不同的数学模型,以估计太阳干燥曲线。根据统计分析结果,Midilli等。干燥模型与其他模型相比,显示出更适合玉米的实验干燥数据,测定系数R2 = 0.9975。这项研究的结果表明,开发的太阳能隧道干燥机可用于多哥南部气候条件下的玉米作物脱水。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号