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Mathematical model for solar drying of potato cylinders with thermal conductivity radially modulated

机译:径向调节热导率的马铃薯圆筒太阳能干燥的数学模型

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A mathematical model for drying potato cylinders using solar radiation is proposed and solved analytically. The model incorporates the energy balance for the heat capacity of the potato, the radiation heat transfer from the potato toward the drying chamber and the solar radiation absorbed by the potato during the drying process. Potato cylinders are assumed to exhibit a thermal conductivity which is radially modulated. The method of the Laplace transform, with integral Bromwich and residue theorem will be applied and the analytic solutions for the temperature profiles in the potato cylinder will be derived in the form of an infinite series of Bessel functions, when the thermal conductivity is constant; and in the form of an infinite series of Heun functions, when the thermal conductivity has a linear radial modulation. All computations are performed using computer algebra, specifically Maple. It is expected that the analytical results obtained will be useful in food engineering and industry. Our results suggest some lines for future investigations such as the adoption of more general forms of radial modulation for the thermal conductivity of potato cylinders; and possible applications of other computer algebra software such as Maxima and Mathematica.
机译:提出了利用太阳辐射干燥马铃薯圆筒的数学模型,并进行了解析求解。该模型结合了马铃薯热容量的能量平衡,从马铃薯向干燥室的辐射热传递以及马铃薯在干燥过程中吸收的太阳辐射。假定马铃薯圆筒显示出径向调节的热导率。当热导率恒定时,将应用具有积分Bromwich和残差定理的Laplace变换方法,并以无穷系列的Bessel函数形式得出马铃薯圆柱体中温度曲线的解析解。当热导率具有线性径向调制时,其形式为无限的Heun函数。所有计算均使用计算机代数(特别是Maple)执行。预期获得的分析结果将对食品工程和工业有用。我们的结果为未来的研究提出了一些思路,例如采用更一般形式的径向调制来调节马铃薯圆筒的热导率。以及其他计算机代数软件(例如Maxima和Mathematica)的可能应用。

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