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Population balance modeling of volume and time dependent spray fluidized bed aggregation kernel using Monte Carlo simulation results

机译:人口平衡建模的体积和时间依赖喷雾流化床聚集核心使用蒙特卡罗模拟结果

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This paper seeks to extend the work of Hussain et al. (A new framework for population balance modeling of spray fluidized bed agglomeration, Particuology 19 (2015) 141-154) to develop a detailed one-dimensional population balance modeling (PBM) of the spatially homogeneous spray fluidized bed aggregation (SFBA) process. A new mathematical model of the volume and time dependent aggregation kernel is developed based on process specific microscopic mechanisms. In addition, the population balance equations of other important process related parameters (total number of available droplets and size distribution of wet particles) are presented. The developed PBM contains a new mathematical model which estimates the death rate of binder droplets due to the drying mechanism. For the verification of the developed PBM, a constant number Monte Carlo (MC) algorithm is used, which simulates important micro-mechanisms of the SFBA process (droplet addition, droplet drying, volume dependent particle collisions, aggregation, and rebound). The MC algorithm is capable of analyzing the effects of each microscopic event on the aggregation behavior. Volume dependency in particle collisions is used, while mimicking the SFBA process in the MC simulation algorithm. Furthermore, the volume and time dependent probability of successful wet position collisions is successfully extracted using the MC simulations and then transferred to the development of the PBM. Finally, the accuracy of the proposed PBM is verified by comparing its results against the predictions of the MC simulations.
机译:本文旨在扩展Hussain等人的工作。 (喷雾流化床集聚的人口平衡建模的新框架,分析19(2015)141-154),在空间均匀的喷雾流化床聚集(SFBA)过程中开发详细的一维群体平衡建模(PBM)。基于过程特定的微观机制开发了一种卷和时间相关聚合内核的新数学模型。此外,还提出了其他重要过程相关参数的人口平衡方程(可用液滴总数和湿粒子的尺寸分布)。开发的PBM含有一种新的数学模型,估计由于干燥机制引起的粘合剂液滴的死亡率。为了验证开发的PBM,使用恒定数蒙特卡罗(MC)算法,其模拟了SFBA工艺的重要微机制(液滴加法,液滴干燥,体积依赖性颗粒碰撞,聚集和反弹)。 MC算法能够分析每个微观事件对聚合行为的影响。使用粒子冲突的体积依赖性,同时在MC仿真算法中模拟SFBA过程。此外,使用MC仿真成功提取成功湿地冲突的体积和时间依赖性概率,然后转移到PBM的开发。最后,通过将其结果与MC模拟的预测进行比较来验证所提出的PBM的准确性。

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