645
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

Aggregation- and rarefaction-effects on particle mass deposition rates by convective-diffusion, thermophoresis or inertial impaction: Consequences of multi-spherule ‘momentum shielding

&
Pages 330-346 | Received 16 Jun 2017, Accepted 15 Nov 2017, Published online: 27 Dec 2017

References

  • Allen, M. D., and Raabe, O. G. (1982). Re-evaluation of Millikan's Oil Drop Data for the Motion of Small Particles in Air. J. Aerosol Sci., 10:537–547.
  • Corson, J., Mulholland, G. W., and Zachariah, M. R. (2017). Friction factor for aerosol fractal aggregates over the entire Knudsen range. Phys. Rev. E, 95(1):013103. doi:10.1103/PhysRevE.95.013103.
  • Dahneke, B. E. (1973a). Slip Correction Factors for Nonspherical Bodies—I Introduction and Continuum flow. J. Aerosol Sci., 4:139–145.
  • Dahneke, B. E. (1973b). Slip Correction Factors for Nonspherical Bodies—II Free Molecule Flow. J. Aerosol Sci., 4:147–161.
  • Dahneke, B. E. (1973c). Slip Correction Factors for Nonspherical Bodies—III the Form of the General Law. J. Aerosol Sci., 4:162.
  • Daniel, Rosner, and Pushkar Tandon (2017). Knudsen Transition Effects on the Thermophoretic Properties of Fractal-like Aggregates: Implications for Thermophoretic Sampling of High-Pressure Flames. Aerosol Sci. Technology, 51 (11): 1262–1274.
  • Dobbins, R. A., and Megaridis, C. M. (1987). Morphology of Flame-Generated Soot as Determined by Thermophoretic Sampling. Langmuir, 3:254–259.
  • Filippov, A. V., Zurita, M., and Rosner, D. E. (2000). Fractal-like Aggregates: Relation Between Morphology and Physical Properties. J. Colloid Interface Sci., 229:261–273.
  • Filippov, A. V. (2000). Drag and Torque on Clusters of N Arbitrary Spheres at Low Reynolds Numbers. J. Colloid Interface Sci., 229:184–195.
  • Friedlander, S. K. (2000). Smoke, Dust and Haze; Fundamentals of Aerosol Dynamics, 2nd ed. Oxford U Press, Oxford, UK.
  • Levich, V. G. (1962). Physicochemical Hydrodynamics, 2nd ed. Prentice Hall, Englewood Cliffs, NJ, USA.
  • McCoy, D. D., and Hanratty, T. J. (1977). Rate of Deposition of Droplets in Annular Two-phase Flow. Int. J. Multiphase Flow, 3:319.
  • Melas, A. D., Isella, L., Konstandopoulos, A. G., and Drossinos, Y. (2014). Friction Coefficient and Mobility Radius of Fractal-Like Aggregates in the Transition Regime Aerosol Science and Technology. 48:1320–1331 .
  • Meakin, P., Donn, B., and Mulholland, G. W. (1989). Collisions Between Point Masses and Fractal Aggregates. Langmuir, 5:510–518.
  • Otto, E., Strattman, F., Fissan, H., Vemury, S., and Pratsinis, S. E. (1994). Quasi-Self Preserving Log-Normal Size Distributions in the Transition Regime. Particles/Particle System Characterization(VCH), 11:359–366.
  • Rosner, D. E., and Tandon, P. (2017a). Mainstream Aggregation and Polydispersity Effects for Inertially-Dominated Deposition Rates on Cylinders (or Leading ‘Edges’) in Crossflow — Consequences of ‘Momentum Shielding’ for the Impaction of Large, “Compact” (2<Df<3) Multi-spherule Aggregates. Aerosol Sci. Technol., (in preparation).
  • Rosner, D. E., and Tandon, P. (2017b). Capture Rate Consequences of Multi-spherule Aggregate Formation in Gases—Combined Roles of Direct Interception and Interspherule Momentum ‘Shielding’. Aerosol Sci. Technol., (submitted to Aerosol Science and Technology, November 2017).
  • Rosner, D. E. (1989). Total Mass Deposition Rates from “Polydispersed” Aerosols. AIChE J., 35(1):164–167.
  • Rosner, D. E., and Fernandez de la Mora, J. (1982). Small Particle Transport Across Turbulent Non-Isothermal Boundary Layers. ASME J. Engineering for Power, 104:885–894 ( See Appendix 1)
  • Rosner, D. E. (2000). Transport Processes in Chemically Reacting Flow Systems. DOVER.
  • Rosner, D. E., and Tassopoulos, M. (1989). Deposition from Polydispersed Particle Populations of Arbitrary Spread. AIChE J., 35(9):1497–1508.
  • Sorensen, C. M. (2011). The Mobility of Fractal Aggregates: A Review. Aerosol Sci. Technol., 45:765–779.
  • Talbot, L., Cheng, R. K., Schefer, R. W., and Willis, D. R. (1980). Thermophoresis of Particles in a Heated Boundary Layer. J. Fluid Mechs., 80:737–758 .
  • Tandon, P., and Rosner, D. E. (1995). Translational Brownian Diffusion Coefficient of Large (multi-particle) Suspended Aggregates. Ind. Eng. Chem., 34:3265–3277.
  • Tassopoulos, M., O'Brien, J. A., and Rosner, D. E. (1989). Simulation of Microstructure/Mechanism Relationships in Particle Deposition. AIChE J., 35(6):967–980.
  • Thajudeen, T., Jeon, S., and Hogan, C. J. (2015). The Mobilities of Flame Synthesized Aggregates/Agglomerates in the Transition Regime. J. Aerosol Sci., 80:45–57.
  • Young, J. B. (2011). Thermophoresis of a Spherical Particle: Reassessment, Clarification, and New Analysis. Aerosol Sci. Technol., 45:927–948.
  • Zhang, C., Thajudeen, T., Larriba, C., Schwartzentruber, T. E., and Hogan, C. J. (2012). Determination of the Scalar Friction Factor for Nonspherical Particles and Aggregates Across the Entire Knudsen Number Range by Direct Simulation Monte Carlo (DSMC). Aerosol Sci. Technol., 46:1065–1078.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.