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Zonal modelling of a counter-current spray drying tower

机译:逆流喷雾干燥塔的区域建模

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摘要

A generic multi-zonal modelling methodology for spray drying towers is proposed to provide relatively quick (seconds) simulations on desktop computers for decision making on changing process parameters for automatic process control. A multi-zonal model comprises combinations of all or some of six differing zones: plug-flow, semi-plug-flow and well-mixed zones in either co- or counter-current flow. This approach is demonstrated by predicting the dried powder characteristics of a detergent powder from a pilot-scale counter-current spray drying tower. The types, sizes and locations of the different zones are obtained by a detailed analysis of predictions from a previous 3-dimensional Computational Fluid Dynamics (CFD) simulation of gas and particle flow dynamics and drying kinetics within the tower. The multi-zonal model consists of seven zones five in counter-current and two in co-current flow. The trends of the predicted gas temperature profiles are close to those from the CFD results. The particle exit temperature, moisture content and residence times over the full particle size distribution (PSD) range are very close to the CFD values unlike the previous simulated results from our plug-flow model. The outcome clearly demonstrates that the prerequisite to have a sound conceptual model of spray drying towers, such as the multi-zonal model developed here, is a detailed knowledge of the gas and particle flow fields within the tower. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:提出了一种用于喷雾干燥塔的通用多区型建模方法,为桌面计算机提供相对较快的(秒)模拟,以便在改变自动过程控制的过程参数上进行决策。多Zonal模型包括六个不同区域中的所有或一些的组合:在共同或反电流中的插头流动,半堵塞流和良好的混合区域。通过从先导级逆流喷雾干燥塔预测洗涤剂粉末的干燥粉末特性来证明这种方法。通过从先前的三维计算流体动力学(CFD)模拟的预测的预测来获得不同区域的类型,尺寸和位置,所述气体和粒子流动动力学和塔内干燥动力学的预测。多Zonal模型由七区五个在逆流和两个中的相同流动组成。预测气体温度谱的趋势与CFD结果接近那些。与我们的插头流模型的先前模拟结果不同,粒子出口温度,水分含量和停留时间非常接近CFD值。结果清楚地表明,具有诸如在此开发的多地形模型的喷雾干燥塔的声音概念模型的先决条件是塔内的气体和颗粒流场的详细知识。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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