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Simulation of Coupled Heat and Mass Transfer in Granular Porous Media: Application to the Drying of Wheat

机译:多孔介质中传热传质的数值模拟:在小麦干燥中的应用

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A mathematical model was developed to simulate the deep-bed convective drying of Algerian wheat and barley using the characteristics of the selected local varieties. The nonequilibrium model, composed of a system of partial differential equations (PDEs), was solved using temporal and spatial discretization with some simplifying assumptions. The simulated results were compared with experimental data obtained during drying of wheat in deep beds (1-, 5-, and 10-cm depths) in a laboratory dryer under the experimental conditions of 60℃ temperature, 10% RH, 0.7 m/s air velocity, and initial grain moisture content of 25.0% (db). The simulation results obtained by the mathematical model were in good agreement with those obtained by experiments carried out on the Algerian wheat.
机译:建立了一个数学模型,利用所选地方品种的特征,模拟了阿尔及利亚小麦和大麦的深床对流干燥。使用时空离散化和一些简化的假设,解决了由偏微分方程(PDE)系统组成的非平衡模型。将模拟结果与在实验室干燥机中在60℃温度,10%RH,0.7 m / s的实验条件下将小麦深层干燥(深度分别为1、5和10 cm)期间获得的实验数据进行比较。空气流速和25.0%(db)的初始谷物水分含量。通过数学模型获得的模拟结果与通过在阿尔及利亚小麦上进行的实验获得的模拟结果非常吻合。

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