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首页> 外文期刊>Journal of food engineering >Mathematical modelling of solar tunnel drying of thin layer organic tomato
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Mathematical modelling of solar tunnel drying of thin layer organic tomato

机译:薄层有机番茄太阳隧道干燥的数学模型

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摘要

The thin layer solar drying experiments of organic tomato using solar tunnel dryer were conducted under the ecological conditions of Ankara, Turkey. During the experiments, organic tomatoes were dried to the final moisture content of 11.50 from 93.35% w.b. in four days of drying in the solar tunnel dryer as compared to five days of drying in the open sun drying. Experimental drying curves showed only a falling drying rate period. A non-linear regression procedure was used to fit 10 different thin layer mathematical models available in literature to the experimental drying curves. The models were compared using the coefficient of determination, mean relative percent error, root mean square error and the reduced chi-square. The approximation of diffusion model has shown a better fit to the experimental drying data as compared to other models. The effect of the drying temperature and relative humidity on the drying model constant and coefficients were also determined. Samples dried in the solar tunnel dryer were completely protected from insects, rain and dusts, and the dried samples were of high quality in terms of colour and hygienic. This system can be used for drying various agricultural products. Also, it is simple in construction and can be constructed at a low cost with locally obtainable materials.
机译:在土耳其安卡拉的生态条件下,使用太阳能隧道式干燥机对有机番茄进行了薄层太阳能干燥实验。在实验过程中,将有机番茄从93.35%w.b干燥至最终水分为11.50。在太阳能隧道式干燥机中干燥四天,而在阳光直射下干燥五天。实验干燥曲线仅显示干燥速率周期下降。使用非线性回归程序将文献中可用的10种不同的薄层数学模型拟合到实验干燥曲线。使用确定系数,平均相对百分比误差,均方根误差和减少的卡方对模型进行比较。与其他模型相比,扩散模型的近似值已显示出更适合实验干燥数据。还确定了干燥温度和相对湿度对干燥模型常数和系数的影响。在太阳能隧道式干燥机中干燥的样品得到了完全的保护,免受昆虫,雨水和灰尘的侵害,并且干燥后的样品在颜色和卫生方面均具有高品质。该系统可用于干燥各种农产品。而且,它的结构简单,并且可以用当地可获得的材料以低成本建造。

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