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MATHEMATICAL MODELING OF CONTINUOUS CROSSFLOW DIFFUSION-CONTROLLED DRYERS

机译:连续贯流扩散控制式干燥机的数学模型

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A mathematical model has been developed for continuous cross-dow dryers operating in diffusion-controlled regime. In the model, a cross-dow dryer is treated as a series of gas-solid contact stages, each purged by a stream of drying gas while wet solids are passing through. By analyzing the gas-solid interactions in each stage, boundary conditions for intra-particle diffusion were established and model equations obtained. The model correlates the amount of moisture removed to a number of process variables (diffusivity, partition coefficient, particle size, residence time, total number of stages, solids loading, drying gas humidity and purge rate) and allows effects of these variables on drying to be studied. For drying fine powders, the effect of reduced mass transfer efficiency due to particle agglomeration and gas channeling is taken into account in the model by factoring an efficiency parameter into the Fourier number. Model predictions of product moisture concentration based on laboratory-measured partition coefficient, diffusivity, and efficiency factor were found to closely match data from a commercial cross-dow HDPE powder dryer. Copyright (C) 1996 Elsevier Science Ltd [References: 24]
机译:已经为在扩散控制状态下运行的连续横排干燥机开发了数学模型。在该模型中,横排干燥机被视为一系列气固接触阶段,每个阶段都在湿固体通过的同时被干燥气流吹扫。通过分析每个阶段的气固相互作用,建立了粒子内扩散的边界条件并获得了模型方程。该模型将去除的水分量与许多过程变量(扩散率,分配系数,粒径,停留时间,总阶段数,固体负荷,干燥气体湿度和吹扫速率)相关联,并允许这些变量对干燥产生影响。被研究。对于干燥细粉,通过将效率参数纳入傅里叶数,在模型中考虑了由于颗粒团聚和气体通道导致的传质效率降低的影响。发现基于实验室测得的分配系数,扩散系数和效率因子的产品水分浓度模型预测与商用跨膜式HDPE干粉机的数据非常匹配。版权所有(C)1996 Elsevier Science Ltd [参考:24]

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