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Discrete-element modeling of particulate aerosol flows

机译:颗粒气溶胶流的离散元建模

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A multiple-time step computational approach is presented for efficient discrete-element modeling of aerosol flows containing adhesive solid particles. Adhesive aerosol particulates are found in numerous dust and smoke contamination problems, including smoke particle transport in the lungs, particle clogging of heat exchangers in construction vehicles, industrial nanoparticle transport and filtration systems, and dust fouling of electronic systems and MEMS components. Dust fouling of equipment is of particular concern for potential human occupation on dusty planets, such as Mars. The discrete-element method presented in this paper can be used for prediction of aggregate structure and breakup, for prediction of the effect of aggregate formation on the bulk fluid flow, and for prediction of the effects of small-scale flow features (e.g., due to surface roughness or MEMS patterning) on the aggregate formation. After presentation of the overall computational structure, the forces and torques acting on the particles resulting from fluid motion, particle-particle collision, and adhesion under van der Waals forces are reviewed. The effect of various parameters of normal collision and adhesion of two particles are examined in detail. The method is then used to examine aggregate formation and particle clogging in pipe and channel flow. (c) 2008 Elsevier Inc. All rights reserved.
机译:提出了一种多步计算方法,可对含粘性固体颗粒的气溶胶流进行有效的离散元素建模。在许多灰尘和烟雾污染问题中发现了粘性气溶胶微粒,包括肺中的烟雾颗粒运输,建筑车辆中的热交换器颗粒堵塞,工业纳米颗粒运输和过滤系统以及电子系统和MEMS组件的灰尘污染。设备的粉尘结垢是潜在人类在尘土飞扬的星球(例如火星)上可能会受到的特别关注。本文提出的离散元方法可用于预测骨料的结构和破裂,预测骨料形成对整体流体流动的影响以及预测小规模流动特征的影响(例如,表面粗糙度或MEMS图案)。在介绍了整个计算结构之后,我们回顾了流体运动,粒子间的碰撞以及范德华力下的附着力对粒子产生的作用力和扭矩。详细检查了两个粒子正常碰撞和粘附的各种参数的影响。然后将该方法用于检查管道和通道流中的骨料形成和颗粒堵塞。 (c)2008 Elsevier Inc.保留所有权利。

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