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首页> 外文期刊>Drying technology: An International Journal >The Proper Use of Mass Diffusion Equations in Drying Modeling: Introducing the Drying Intensity Number
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The Proper Use of Mass Diffusion Equations in Drying Modeling: Introducing the Drying Intensity Number

机译:在干燥建模中正确使用质量扩散方程式:引入干燥强度数

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This article intends to clearly define the possibilities and limitations offered by a simple diffusion approach of drying. Actually, many works use a simple diffusion equation to model mass transfer during drying, probably because a simple analytical solution of this equation does exist in the case of simple boundary conditions. However, one has to be aware of the limitations of this approach. Using a comprehensive formulation and a relevant computational solution, the most frequent assumptions of the diffusion approach were rigorously tested. It is concluded that analytical solutions must be discarded for several reasons: analytical solutions, either using Dirichlet or third kind boundary conditions, are often misleading and should be avoided; in the drying process, the coupling between heat and mass transfer is mandatory; nonlinearity (variation of diffusivity with moisture content) can hardly be avoided for mass transfer. In order to reach a verdict, a dimensionless number, the Drying Intensity Number (N-DI), is introduced. It allows the level of coupling between heat and mass transfer to be easily assessed. Thanks to this number, a guide is proposed for choosing the right level of modeling, depending on the drying configuration.
机译:本文旨在明确定义简单的干燥扩散方法所提供的可能性和局限性。实际上,许多工作使用简单的扩散方程来模拟干燥过程中的传质,这可能是因为在简单的边界条件下确实存在该方程的简单解析解。但是,必须意识到这种方法的局限性。使用全面的公式和相关的计算解决方案,对扩散方法的最常见假设进行了严格测试。得出的结论是,必须将分析解决方案丢弃是出于以下几个原因:使用Dirichlet或第三类边界条件的分析解决方案经常会产生误导,应避免使用;在干燥过程中,传热和传质之间的耦合是强制性的;传质很难避免非线性(扩散率随水分含量的变化)。为了得出结论,引入了无量纲数,即干燥强度数(N-DI)。它可以轻松评估传热与传质之间的耦合程度。由于有了这个数字,建议根据干燥配置选择正确建模水平的指南。

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