DRAG FORCES ON NONSPHERICAL AEROSOL-PARTICLES

被引:20
作者
CHENG, YS
机构
[1] lnhalation Toxicology Research Institute, Louelace Biomedical and Environmental Research Institute, Albuquerque, NM 87185
关键词
DRAG FORCES; NONSPHERICAL AEROSOL PARTICLES; NON-STOKESIAN DRAG; DYNAMIC SHAPE FACTOR; SLIP CORRECTION;
D O I
10.1080/00986449108910959
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This report is a review of current knowledge, based on the modified Stokes drag, of drag forces on nonsphencal aerosol particles. The Knudsen numbers (Kn) for the aerosol studies are between 0 and 150, ranging from the continuum regime (Kn =0) to the transition regime (OcKn <20) to the free molecule regime (Kn > 20), The drag force on an aerosol particle can be expressed in terms of Stokes drag, dynamic shape factor, slip correction factor and non-Stokesian factor. The dynamic shape factor accounts for shape effects, the slip correction factor for the slip condition of gas-particle interaction, and the non-Stokesian effect for increased drag at a Reynolds number greater than 0.05. The dynamic shape factors of many shapes were measured in a sedimentation tank, using macroscopic objects, and also in aerosol systems. Theoretical and semi-theoretical equations have been developed for spheroids, cylinders, aggregates and rectangular prisms. The Knudsen-Weber equation with the adjustment for sphere diameter can be used to determine the slip correction factor for nonspherical particles. The non-Stokesian drag for rectangular prisms has been calculated numerically, and a general equation was formulated. The theory agrees well with the experimental data for cubes, tetrahedrons and aggregates. © 1991, Taylor & Francis Group, LLC. All rights reserved.
引用
收藏
页码:201 / 223
页数:23
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