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Simulation of Drying Behavior of Cotton Bobbins by a Simultaneous Heat and Mass Transfer Model

机译:同时传热传质模型模拟棉线轴的干燥行为

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In this study, the drying process of cotton bobbins for different drying air temperatures has been simulated by a simultaneous heat and mass transfer model. In the model, the mass transfer is assumed to be controlled by diffusion. In order to make the simulation, firstly, drying behavior of cotton bobbins for different drying air temperatures has been determined on an experimental bobbin dryer setup which was designed and manufactured based on hot-air bobbin dryers used in textile industry. In the experimental setup, temperatures of different points in cotton bobbins were measured by thermocouples placed inside the bobbins, and weights of the bobbins during the drying period were determined by means of a load cell. Then, moisture ratio and temperature values of the model have been fitted to the experimental ones. The fit was performed by selecting the values for the diffusion coefficient and the thermal diffusivity in the model in such a way that these values make the sum of the squared differences between the experimental and the model results for moisture ratio and temperature minimum. Results show that there is a good agreement between the model results and the experimental measurements. The results also show that temperature has a significant effect on mass transfer and the temperature dependence of the diffusion coefficient may be expressed by an Arrhenius type relation.
机译:在这项研究中,通过同时传热传质模型模拟了不同干燥温度下棉线轴的干燥过程。在模型中,假定传质受扩散控制。为了进行模拟,首先,在基于纺织工业中使用的热空气筒管干燥机的设计和制造的试验筒管干燥机装置上,确定了棉线筒在不同干燥空气温度下的干燥行为。在实验装置中,通过放置在线轴内部的热电偶测量棉线轴中不同点的温度,并通过称重传感器确定干燥期间线轴的重量。然后,将模型的水分比和温度值拟合到实验值。通过选择模型中扩散系数和热扩散率的值来进行拟合,以使这些值使水分比率和温度的实验值和模型结果之间的平方差之和最小。结果表明,模型结果与实验测量值之间有很好的一致性。结果还表明温度对传质有显着影响,扩散系数的温度依赖性可以用阿伦尼乌斯类型关系表示。

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