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Residence Time Distribution of Glass Ballotini in Isothermal Swirling Flows in a Counter-Current Spray Drying Tower

机译:玻璃Ballotini在逆流喷雾干燥塔中等温旋流的停留时间分布

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摘要

The particle residence time in counter-current spray drying towers has a significant influence on the moisture content of the powder exiting the tower. Therefore, the reliability of predictions of residence time by numerical methods is highly desirable. A combined experimental and computational fluid dynamics investigation is reported for the prediction of the residence time distributions of glass beads with a narrow size range of 300-425 m in a counter-current tower with isothermal swirling flows of air. The particle-wall collision is taken into account using a rough-wall collision model. Overall, a reasonably good agreement is obtained between the measurements and predictions. Consideration of wall roughness results in greater axial dispersion of particles in the tower compared to a smooth wall assumption. The rough particle-wall collision is important for a reliable prediction of residence time distributions. In addition, analysis of the results infers that the clustering effect of particles on drag and particle-particle interactions are important and should be investigated in a future study.
机译:逆流喷雾干燥塔中的颗粒停留时间对离开塔的粉末的水分含量有重要影响。因此,非常需要通过数值方法预测停留时间的可靠性。据报道,结合实验和计算流体动力学研究,可以预测在等温气流的逆流塔中,窄尺寸范围为300-425μm的玻璃珠的停留时间分布。使用粗糙壁碰撞模型将粒子壁碰撞考虑在内。总体而言,在测量和预测之间获得了相当好的一致性。与光滑壁假设相比,考虑壁粗糙度会导致塔中颗粒的轴向分散更大。粗糙的粒子-壁碰撞对于可靠地预测停留时间分布很重要。此外,对结果的分析表明,颗粒对阻力和颗粒-颗粒相互作用的聚集作用很重要,应在以后的研究中进行研究。

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