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首页> 外文期刊>Journal of food engineering >Diffusive model with variable effective diffusivity considering shrinkage in thin layer drying of chitosan
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Diffusive model with variable effective diffusivity considering shrinkage in thin layer drying of chitosan

机译:考虑壳聚糖薄层干燥收缩的可变有效扩散率扩散模型

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摘要

In the thin layer drying of chitosan, a diffusive model considering the material volume change was used, due to the occurrence of shrinkage during the operation. The samples were placed in a rectangular tray with 4 mm of thickness, and inserted in the discontinuous dryer, with parallel air flow at 60℃ of temperature and air speed of 1.5 m/s. The sample shrinkage occurred in the thickness, and the linear shrinkage coefficient was constant. In the model, variable moisture effective diffusivity and equilibrium conditions at the material surface were considered. The dimensionless second order non linear partial differential equation, resulting from the model, was solved numerically by the finite differences technique. A good agreement between the numerical data of the average moisture content, obtained by the model, and the experimental data was observed.
机译:在壳聚糖的薄层干燥中,由于在操作过程中发生收缩,因此使用了考虑材料体积变化的扩散模型。将样品放在厚度为4 mm的矩形托盘中,然后插入不连续的干燥器中,在60℃的温度下平行气流,风速为1.5 m / s。样品的收缩发生在厚度上,并且线性收缩系数是恒定的。在模型中,考虑了材料表面的可变水分有效扩散率和平衡条件。该模型产生的无量纲二阶非线性偏微分方程是通过有限差分技术数值求解的。通过模型获得的平均水分含量的数值数据与实验数据之间观察到良好的一致性。

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