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Residence time distributions of different size particles in the spray zone of a Wurster fluid bed studied using DEM-CFD

机译:使用DEM-CFD研究Wurster流化床喷雾区中不同尺寸颗粒的停留时间分布

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Particle cycle and residence time distributions in different regions, particularly in the spray zone, play an important role in fluid bed coating. In this study, a DEM-CFD (discrete element method, computational fluid dynamics) model is employed to determine particle cycle and residence time distributions in a laboratory-scale Wurster fluid bed coater. The calculations show good agreement with data obtained using the positron emission particle tracking (PEPT) technique. The DEM-CFD simulations of different size particles show that large particles spend a longer time in the spray zone and in the Wurster tube than small particles. In addition, large particles are found on average to move closer to the spray nozzle than small particles, which implies that the large particles could shield small particles from the spray droplets. Both of these effects suggest that large particles receive a greater amount of coating solution per unit area per cycle than small particles. However, the simulations in combination with the PEPT experiments show that this is partly compensated for by a longer cycle time for large particles. Large particles thus receive more coating per unit area per pass through the spray zone, but also travel through the spray zone less frequently than small particles. (C) 2015 Elsevier B.V. All rights reserved.
机译:在不同区域,特别是在喷雾区域中的颗粒循环和停留时间分布在流化床涂层中起重要作用。在这项研究中,采用DEM-CFD(离散元方法,计算流体动力学)模型来确定实验室规模的Wurster流化床包衣机中的颗粒循环和停留时间分布。计算结果与使用正电子发射粒子跟踪(PEPT)技术获得的数据具有很好的一致性。不同大小颗粒的DEM-CFD模拟显示,大颗粒比小颗粒在喷雾区和Wurster管中花费的时间更长。另外,发现大颗粒平均比小颗粒更靠近喷嘴移动,这意味着大颗粒可以将小颗粒与喷雾隔离。这两种效果都表明,大颗粒比小颗粒每单位面积每单位面积接受的涂料溶液量更多。但是,与PEPT实验相结合的模拟表明,大颗粒的较长循环时间可以部分弥补这一点。因此,大颗粒每次通过喷涂区域每单位面积获得的涂层更多,但与小颗粒相比,通过喷涂区域的频率也更低。 (C)2015 Elsevier B.V.保留所有权利。

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