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Time scale analysis for fluidized bed melt granulation I: granule-granule and granule-droplet collision rates

机译:流化床熔体造粒的时间尺度分析I:颗粒-颗粒与颗粒-液滴的碰撞速率

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摘要

Fluidized bed spray granulators (FBMG) are widely used in the process industry for particle size growth; a desirable feature in many products, such as granulated food and medical tablets. In this paper, the first in a series of four discussing the rate of various microscopic events occurring in FBMG, theoretical analysis coupled with CFD simulations have been used to predict granule–granule and droplet–granule collision time scales. The granule–granule collision time scale was derived from principles of kinetic theory of granular flow (KTGF). For the droplet–granule collisions, two limiting models were derived; one is for the case of fast droplet velocity, where the granule velocity is considerable lower than that of the droplet (ballistic model) and another for the case where the droplet is traveling with a velocity similar to the velocity of the granules. The hydrodynamic parameters used in the solution of the above models were obtained from the CFD predictions for a typical spray fluidized bed system. The granule–granule collision rate within an identified spray zone was found to fall approximately within the range of 10-2–10-3 s, while the droplet–granule collision was found to be much faster, however, slowing rapidly (exponentially) when moving away from the spray nozzle tip. Such information, together with the time scale analysis of droplet solidification and spreading, discussed in part II and III of this study, are useful for probability analysis of the various event occurring during a granulation process, which then lead to be better qualitative and, in part IV, quantitative prediction of the aggregation rate.
机译:流化床喷雾造粒机(FBMG)在过程工业中广泛用于粒度增长;许多产品(例如颗粒状食品和药片)中的理想特性。在本文中,四个系列中的第一个讨论了在FBMG中发生的各种微观事件的发生率,将理论分析与CFD模拟相结合来预测颗粒-颗粒和液滴-颗粒的碰撞时间尺度。颗粒与颗粒的碰撞时间尺度是从颗粒流动力学理论(KTGF)得出的。对于液滴与颗粒的碰撞,导出了两个极限模型。一种是在液滴速度较快的情况下,其中颗粒的速度明显低于液滴的速度(弹道模型),另一种是在液滴以类似于颗粒速度的速度行进的情况。从典型的喷雾流化床系统的CFD预测中获得了上述模型的解中使用的流体动力学参数。发现在确定的喷雾区域内,颗粒与颗粒的碰撞速率大约在10-2–10-3 s范围内,而液滴与颗粒的碰撞速率要快得多,但是,当颗粒与颗粒之间的碰撞速率减慢时(指数级)从喷嘴尖端移开。在本研究的第二部分和第三部分中讨论了这些信息以及液滴凝固和扩散的时间尺度分析,这些结果可用于对制粒过程中发生的各种事件进行概率分析,从而获得更好的定性,并且第四部分,聚集率的定量预测。

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