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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Particle dynamics in a multi-staged fluidized bed: Particle transport behavior on micro-scale by discrete particle modelling
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Particle dynamics in a multi-staged fluidized bed: Particle transport behavior on micro-scale by discrete particle modelling

机译:多阶段流化床中的粒子动力学:通过离散粒子建模微级粒子传输行为

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This work studies the particle exchange rates in horizontal fluidized beds equipped with different weir designs between compartments. These particle exchange rates provide information on the axial dispersion of the solid material within the process. For this purpose discrete particle modelling (DPM) was used to determine the particle exchange on microscopic level. This method uses a coupled CFD-DEM approach to observe particle dynamics in a fluid field. The model was validated against exchange rates in a lab-scale setup as determined by Particle Tracking Velocimetry (PTV) with very good quantitative agreement, showing the suitability of the method for the evaluation of weir designs. Simulations were performed for different weir designs and under variation of the hold-up mass, the feed rate and gas velocity to predict their transport behavior in a pilot-scale 3D horizontal fluidized bed. The results indicate that the solids transport behavior is strongly dependent on the used weir design and the main driving force for the particle transport that can be influenced by the process conditions. The installation of weirs between two compartments induces a transport resistance, while the base type without the installation of a weir between the two chambers represents the fastest possibility for mixing the particles of a two-compartment system. It has been observed that the general trend shows higher particle recirculation rates for the overflow weir and base configuration (no weir), whereas the underflow and sideflow weir applications improve the solids transport through the horizontal fluidized bed. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:这项工作研究了卧式流化床中的粒子交换率,在隔间之间配备不同的堰设计。这些粒子交换率提供了关于该过程内固体材料的轴向分散的信息。为此目的,使用离散粒子建模(DPM)来确定微观水平的粒子交换。该方法使用耦合的CFD-DEM方法观察流体场中的粒子动力学。通过具有非常好的定量协议的粒子跟踪Velocimetry(PTV)确定的实验室规模设置中的汇率验证了该模型,显示了该方法评估堰设计的适用性。针对不同的堰设计和在阻塞物质,进料速率和气体速度的变化下进行仿真,以预测其在先导3D水平流化床中的运输行为。结果表明,固体运输行为强烈依赖于使用的堰设计和可受到过程条件影响的颗粒运输的主要驱动力。在两个隔室之间的堰安装引起传输电阻,而在两个腔室之间的底型没有安装堰的底部代表了混合双隔室系统的颗粒的最快可能性。已经观察到,通用趋势显示出溢流堰和基础配置的粒子再循环率更高(没有堰),而下溢和侧流堰应用通过水平流化床改善固体输送。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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