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Modeling coupled transport phenomena and mechanical deformation of shrimp during drying in a jet spouted bed dryer

机译:在喷射喷头干燥机中模拟虾在运输过程中的耦合运输现象和机械变形

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摘要

Heat and mass transfer in highly shrinkable and irregular-shape biomaterials such as shrimp during convective drying represents a complicated phenomenon since it is important to consider not only the transport phenomena occurring during drying but also the various changes of the drying materials. In order to describe drying of biomaterials adequately, a mathematical model that considers both of the above-mentioned aspects is needed. In this study, the formulation and validation of a mathematical model describing coupled transport phenomena and mechanical deformation of shrimp undergoing drying in a representative convective dryer, i.e., a jet spouted bed dryer, was conducted. The model consists of coupled heat conduction and mass diffusion equations along with the elastic solid mechanics equations. Governing equations and initial as well as boundary conditions were solved numerically using a finite element method via COMSOL Multiphysics (TM) Software (version 3.3a). The simulated results, in terms of the shrimp moisture content, mid-layer temperature and shrinkage, were compared with the experimental results also obtained in this study and good agreement between the theoretical simulation and experimental results was observed in general. The model was also used to predict the principal stress distributions within shrimp during drying. Moreover, the effect of including deformation in the model was also illustrated by comparing the simulated results with those obtained from the model assuming no deformation. (c) 2008 Elsevier Ltd. All rights reserved.
机译:对流干燥过程中,高度收缩且形状不规则的生物材料(如虾)中的传热和传质代表了一种复杂的现象,因为不仅要考虑干燥过程中发生的传输现象,而且还要考虑干燥材料的各种变化,这一点很重要。为了充分描述生物材料的干燥,需要考虑上述两个方面的数学模型。在这项研究中,进行了数学模型的建立和验证,该数学模型描述了在有代表性的对流干燥器(即喷射喷嘴干燥器)中干燥的虾的耦合运输现象和机械变形。该模型由耦合的热传导和质量扩散方程以及弹性固体力学方程组成。通过COMSOL Multiphysics(TM)软件(版本3.3a)使用有限元方法对控制方程,初始条件和边界条件进行了数值求解。将对虾的水分含量,中间层温度和收缩率等方面的模拟结果与本研究中获得的实验结果进行了比较,总体上观察到理论模拟与实验结果之间的吻合。该模型还用于预测虾在干燥过程中的主应力分布。此外,还通过将模拟结果与从不假设变形的模型获得的结果进行比较,来说明在模型中包括变形的效果。 (c)2008 Elsevier Ltd.保留所有权利。

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