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CFD modelling of a pilot-scale counter-current spray drying tower for the manufacture of detergent powder

机译:用于制造洗涤剂粉末的中试规模逆流喷雾干燥塔的CFD建模

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摘要

A steady-state, three-dimensional, multiphase CFD modelling of a pilot-plant counter-current spray drying tower is carried out to study the drying behavior of detergent slurry droplets. The software package ANSYS Fluent is employed to solve the heat, mass and momentum transfer between the hot gas and the polydispersed droplets/particles using the Eulerian-Lagrangian approach. The continuous phase turbulence is modelled using the differential Reynolds stress model. The drying kinetics is modelled using a single droplet drying model[1] which is incorporated into the CFD code using user-defined functions. Heat loss from the insulated tower wall to the surrounding is modelled by considering thermal resistances due to deposits on the inside surface, wall, insulation and outside convective film. For the particle-wall interaction, the restitution coefficient is specified as a constant value as well as a function of particle moisture content. It is found that the variation in the value of restitution coefficient with moisture causes significant changes in the velocity, temperature and moisture profiles of the gas as well as the particles. Overall, a reasonably good agreement is obtained between the measured and predicted powder temperature, moisture content and gas temperature at the bottom and top outlets of the tower; considering the complexity of the spray drying process, simplifying assumptions made in both the CFD and droplet drying models and the errors associated with the measurements.
机译:进行了中试逆流喷雾干燥塔的稳态,三维,多相CFD模拟,以研究洗涤剂浆料液滴的干燥行为。 ANSYS Fluent软件包用于使用Eulerian-Lagrangian方法解决热气与多分散液滴/颗粒之间的热量,质量和动量传递。使用微分雷诺应力模型对连续相湍流进行建模。使用单个液滴干燥模型[1]对干燥动力学进行建模,该模型使用用户定义的函数并入到CFD代码中。从隔热塔壁到周围环境的热损失可通过考虑由于内表面,壁,隔热层和对流外膜上的沉积物引起的热阻来模拟。对于颗粒与壁的相互作用,恢复系数被指定为一个常数值以及颗粒水分含量的函数。发现恢复系数值随水分的变化会导致气体以及颗粒的速度,温度和水分分布发生显着变化。总体而言,在塔的底部和顶部出口的实测粉末温度和预测粉末温度,水分含量和气体温度之间获得了相当好的一致性;考虑到喷雾干燥过程的复杂性,可以简化CFD和液滴干燥模型中的假设以及与测量相关的误差。

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