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Stationary deep-bed drying: A comparative study between a logarithmic model and a non-equilibrium model

机译:固定式深床干燥:对数模型与非平衡模型的比较研究

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In this paper, a logarithmic model and Giner's differential model are compared in the process of simulating the stationary deep-bed drying of a product. The logarithmic model can be interpreted as the propagation of boundary conditions along characteristic lines throughout the bed. This propagation depends on drying air velocity and becomes less pronounced with respect to the depth of the bed. Therefore, transfer time, as defined by the ratio of the depth of the bed to the inlet velocity of drying air is a relevant parameter that can strongly influence the behaviour of the logarithmic model. The logarithmic model is formulated using dimensionless numbers derived from the theory of Transfer Units. The logarithmic model developed in this paper is compared to numerical approximations of the differential model. This comparison has been performed in terms of accuracy (with respect to Giner's differential model), parsimony (with respect to the number of variables and parameters of the models) and specialization (with respect to the scope of the application fields of the models). Drying conditions ensuring that the logarithmic model describes drying phenomena as well as Giner's partial differential equation model are determined. The application field of the logarithmic model appears to be more restrictive than Giner's model, however, it is much more parsimonious than the numerical approximations of the differential model and it may be used by decision-support systems for the design of driers. As an illustration, numerical simulations based on wheat drying are performed.
机译:在模拟产品固定式深床干燥过程中,对数模型和吉纳微分模型进行了比较。对数模型可以解释为边界条件沿着整个床层的特征线的传播。该传播取决于干燥空气的速度,并且相对于床的深度变得不太明显。因此,由床的深度与干燥空气的入口速度之比所定义的转移时间是一个相关参数,可以极大地影响对数模型的行为。对数模型是使用从传递单位理论得出的无量纲数来表示的。将本文开发的对数模型与微分模型的数值近似进行比较。这种比较是在准确性(相对于Giner的微分模型),简约(相对于模型的变量和参数的数量)和专业化(相对于模型的应用领域的范围)方面进行的。确定确保对数模型描述干燥现象的干燥条件以及吉纳的偏微分方程模型。对数模型的应用领域似乎比Giner模型更受限制,但是,它比微分模型的数值近似要简单得多,决策支持系统可以将其用于干燥器的设计。作为说明,进行了基于小麦干燥的数值模拟。

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