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首页> 外文期刊>Journal of Aerosol Science >Penetration of aerosol undergoing combined electrostatic dispersion and diffusion in a cylindrical tube
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Penetration of aerosol undergoing combined electrostatic dispersion and diffusion in a cylindrical tube

机译:在圆柱管中经过静电分散扩散的气溶胶的渗透

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摘要

The deposition of unipolarly charged aerosol particles by simultaneous Brownian diffusion and electrostatic dispersion (space-charge) in laminar flow tubes has been modelled in two different ways. In the first approach, the rigorous transport equation has been solved numerically under the restriction of negligible axial components of the particle Brownian motion and of the space-charge electric field. The thus calculated theoretical penetrations agree satisfactorily with the experimental results obtained for air ions. Second, the system has also been modelled from a phenomenological point of view, based on the fact that deposition by diffusion and space-charge follows first- and second-order kinetics, respectively. The latter approach yields a simple and practical equation correlating particle penetration with tube geometry, aerosol flow rate, and particle mobility and concentration.
机译:已经通过两种不同的方式对层流流管中同时布朗扩散和静电分散(空间电荷)的单极性带电气溶胶颗粒的沉积进行了建模。在第一种方法中,严格的输运方程在粒子布朗运动和空间电荷电场的轴向分量可忽略不计的情况下得到了数值求解。如此计算的理论渗透率与空气离子的实验结果令人满意。其次,该系统还从现象学的角度建模,基于以下事实:通过扩散和空间电荷进行的沉积分别遵循一阶和二阶动力学。后一种方法产生了一个简单而实用的方程式,该方程式将颗粒渗透与管的几何形状,气溶胶流速以及颗粒迁移率和浓度相关联。

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