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首页> 外文期刊>Journal of food engineering >D-optimal designs for sorption kinetic experiments: Cylinders
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D-optimal designs for sorption kinetic experiments: Cylinders

机译:吸附动力学实验的D优化设计:气瓶

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摘要

This project extends prior research in D-optimal design for sorption kinetics in a slab to cylindrical geometry. Combining Fick's second law of diffusion and a convective mass transfer boundary condition at the surface of the cylinder with D-optimal theory provides the experimental design which results in the best estimates of the model parameters: the material's diffusivity and the convective mass transfer coefficient. The results show that for a wide range of diffusivities and convective mass transfer coefficients, the D-optimal support points can be expressed in terms of the dimensionless Biot number and Fourier modulus. Furthermore, it is shown that when the Biot number is between 0.10 and 10.0, both the diffusivity and the convective mass transfer coefficient can be simultaneously estimated. Outside of this range, only one model parameter can be determined, and which one can be determined depends on the magnitude of the Biot number.
机译:该项目将先前在D最佳设计中将板中吸附动力学的研究范围扩展到圆柱几何形状。将Fick扩散的第二定律和圆柱体表面的对流传质边界条件与D最优理论相结合,提供了实验设计,可以对模型参数进行最佳估计:材料的扩散率和对流传质系数。结果表明,对于大范围的扩散率和对流传质系数,D最优支撑点可以用无因次比奥数和傅立叶模量表示。此外,示出了当毕奥数在0.10至10.0之间时,可以同时估计扩散率和对流传质系数。在此范围之外,只能确定一个模型参数,并且可以确定的那个参数取决于毕奥数的大小。

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