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Numerical simulations of contact drying in agitated filter-dryer

机译:搅拌式干燥机中接触干燥的数值模拟

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Continuum mechanics based computational methods were used to study the heat transfer and particulate flow in an agitated filter-dryer. Numerical simulations of granular flow are presented using thermal particle dynamics. A previously developed thermal particle dynamics model was modified to include the effects of interstitial fluid, and heat transfer through liquid bridges in an agitated vessel for a three dimensional granular system. Temperature, solvent concentration, and velocity profiles obtained from the simulations were used to study the effect of operational parameters (wall temperature, impeller speed, bed depth) and particle properties. Trends observed in contact drying experiments, namely the dependence of drying rate on the driving force and effect of material properties on drying behavior, have been reproduced by the model both qualitatively and quantitatively. Apart from the operational variables, frictional characteristics of model material were also found to affect the flow patterns and hence the drying kinetics. For low friction coefficients, three dimensional recirculation zones were not formed which was confirmed from the velocity profiles obtained from simulations.
机译:基于连续力学的计算方法用于研究搅拌式干燥机中的传热和颗粒流。利用热粒子动力学对颗粒流动进行了数值模拟。对先前开发的热粒子动力学模型进行了修改,以包括间隙流体的影响,以及通过三维容器中搅拌容器中液桥的热传递。通过模拟获得的温度,溶剂浓度和速度曲线用于研究操作参数(壁温,叶轮速度,床层深度)和颗粒性质的影响。该模型从定性和定量地再现了接触干燥实验中观察到的趋势,即干燥速率对驱动力的依赖性以及材料性能对干燥行为的影响。除了操作变量外,还发现模型材料的摩擦特性会影响流型,进而影响干燥动力学。对于低摩擦系数,没有形成三维再循环区,这是通过模拟获得的速度分布得到证实的。

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