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Original Articles

Inertial Deposition of Aerosol Particles in a Periodic Row of Porous Cylinders

, &
Pages 400-408 | Received 14 Jul 2014, Accepted 03 Mar 2015, Published online: 28 Apr 2015

Figures & data

FIG. 1. Scheme of the periodic row of porous cylinders.

FIG. 1. Scheme of the periodic row of porous cylinders.

FIG. 2. Scheme of the cell model of Kuwabara.

FIG. 2. Scheme of the cell model of Kuwabara.

FIG. 3. Efficiency curves of solid cylinder for various from Müller et al. (Citation2014) (1, 3, 5) and present calculations by Fluent—2, 4, 6.

FIG. 3. Efficiency curves of solid cylinder for various from Müller et al. (Citation2014) (1, 3, 5) and present calculations by Fluent—2, 4, 6.

FIG. 4. Streamlines from numerical model : (1) , (2) .

FIG. 4. Streamlines from numerical model : (1) , (2) .

FIG. 5. The dependence of (St) at . Solid lines—analytical model (10,17), dashed lines—CFD calculations.

FIG. 5. The dependence of (St) at . Solid lines—analytical model (10,17), dashed lines—CFD calculations.

FIG. 6. The dependencies and for .

FIG. 6. The dependencies and for .

FIG. 7. The dependence of on at . Solid lines—analytical model (10,17), dashed lines—formula (24).

FIG. 7. The dependence of on at . Solid lines—analytical model (10,17), dashed lines—formula (24).

FIG. 8. The meshing (a) and particle trajectories (b) for St = 10, , , and .

FIG. 8. The meshing (a) and particle trajectories (b) for St = 10, , , and .

FIG. 9. The dependencies of (St) and (St) at . 1,2—, at Da = 0.1, and 3— at Da = 0.

FIG. 9. The dependencies of (St) and (St) at . 1,2—, at Da = 0.1, and 3— at Da = 0.

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