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Analysis on Particle Deposition onto a Heated Rotating Disk with Electrostatic Effect  

유경훈 (한국생산기술연구원에어로졸·필터연구실)
Publication Information
Korean Journal of Air-Conditioning and Refrigeration Engineering / v.14, no.5, 2002 , pp. 424-432 More about this Journal
Abstract
Numerical analysis has been conducted to characterize deposition rates of aerosol particles onto a heated, rotating disk with electrostatic effect under the laminar flow field. The particle transport mechanisms considered were convection, Brownian diffusion, gravitational settling, thermophoresis and electrophoresis. The aerosol particles were assumed to have a Boltzmann charge distribution. The electric potential distribution needed to calculate local electric fields around the disk was calculated from the Laplace equation. The Coulomb, the image, the dielectrophoretic and the dipole-dipole forces acting on a charged particle near the conducting rotating disk were included in the analysis. The averaged particle deposition vetocities and their radial distributions on the upper surface of the disk were calculated from the particle concentration equation in a Eulerian frame of reference, along with a rotation speed of 0∼1,000rpm, a temperature difference of 0∼5K and a charged disk voltage of 0∼1000V.Finally, an approximate deposition velocity model for the rotating disk was suggested. The present numerical results showed relatively good agreement with the results of the present approximate model and the available experimental data.
Keywords
Rotating disk; Particle deposition velocity; ; ThermophoresisElectrophoresis; Boltzmann charge distribution; Approximate deposition veloci model;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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