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Simulation and Characterization of High-Porosity media for Aerosol Particle Processing: A Numerical Study

机译:气溶胶粒子处理高孔隙率介质的模拟与表征:数值研究

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Processes involving suspensions flow occur in many natural, biological, and industrial systems. Examples also include the production of many advanced materials, such as semiconductors, and new product formulations with importance in pharmaceutical and medical applications. In certain tasks microchannels and porous media are used to promote a rapid mixing of aerosol streams to produce more uniform dispersions and coatings. A major concern for industrial use is caused by the fact that the aerosol particles deposit onto the solid structure of channels and this must be controlled to avoid clogging. We report a study of the application of high-porosity media for the generation of uniform flow suspensions. Two key quantities were used to characterize the process: particle losses (deposition) within the porous medium and residence time distribution of the particles. This study clearly demonstrates that the geometric characteristics of the porous media, the fluid velocity, fluid viscosity, and particle size should be controlled in order to get more uniform dispersions and prevent the unwanted particle loss.
机译:涉及悬浮液流动的过程发生在许多自然,生物和工业系统中。实例还包括许多先进材料的生产,例如半导体,以及在医药和医疗应用中很重要的新产品配方。在某些任务中,使用微通道和多孔介质来促进气溶胶流的快速混合,以产生更均匀的分散体和涂层。对于工业用途的主要关注是由于以下事实:气溶胶颗粒沉积在通道的固体结构上,必须对其进行控制以避免堵塞。我们报告了对高孔隙率介质用于产生均匀流动悬浮液的研究。使用两个关键量来表征该过程:多孔介质中的颗粒损失(沉积)和颗粒的停留时间分布。这项研究清楚地表明,应该控制多孔介质的几何特征,流体速度,流体粘度和粒径,以便获得更均匀的分散体并防止不必要的颗粒损失。

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