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Mathematical modelling of thin layer drying process under open sun of some aromatic plants

机译:一些芳香植物在阳光直射下薄层干燥过程的数学模型

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In this work, the sun drying behaviour of aromatic plants as parsley, mint and basil was investigated. Drying experiments were conducted for parsley, mint and basil grown in Elazig, Turkey. The constant rate period is absent from the drying curves. The drying process took place in the falling rate period. The drying data were fitted to twelve the different mathematical models. Among the models, the Modified Page (Ⅰ) model for mint and basil leaves and the model given by Verma et al. for parsley leaves were found to best explain thin layer open sun drying behaviour of the aromatic plants. The performance of these models was investigated by comparing the determination of coefficient (R), reduced chi-square (χ~2) and root mean square error (RMSE) between the observed and predicted moisture ratios. The effective diffusivity coefficient of moisture transfer of parsley, mint and basil leaves were found within the range of 10~(-12)m~2s~(-1).
机译:在这项工作中,研究了香菜如香菜,薄荷和罗勒的日晒行为。对在土耳其Elazig种植的欧芹,薄荷和罗勒进行了干燥实验。干燥曲线没有恒定的速率周期。干燥过程在降速期间进行。干燥数据适合于十二种不同的数学模型。在这些模型中,薄荷叶和罗勒叶的改良Page(Ⅰ)模型以及Verma等人给出的模型。发现欧芹叶最能解释芳香植物的薄层露天晒干行为。通过比较确定的水分比与观测值之间的系数(R),减少的卡方(χ〜2)和均方根误差(RMSE)来确定这些模型的性能。欧芹,薄荷和罗勒叶的水分转移有效扩散系数在10〜(-12)m〜2s〜(-1)范围内。

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