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Regular Articles

Thermophoretic Motion of a Cylindrical Particle with Chemical Reactions

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Pages 1156-1165 | Received 17 May 2014, Accepted 18 Aug 2014, Published online: 25 Sep 2014

REFERENCES

  • Balsara, N.P., and Subramanian, R.S. (1987). The Influence of Buoyancy on Thermophoretic Deposition of Aerosol Particles in a Horizontal Tube. J. Colloid Interface Sci., 118:3–14.
  • Brock, J.R. (1962). On the Theory of Thermal Forces Acting on Aerosol Particles. J. Colloid Sci. 17:768–780.
  • Chang, Y.C., and Keh, H.J. (2009). Thermophoresis of Axisymmetric Aerosol Particles Along Their Axes of Revolution. AIChE J., 55:35–48.
  • Chang, Y.C., and Keh, H.J. (2010a). Thermophoretic Motion of Slightly Deformed Aerosol Spheres. J. Aerosol Sci., 41:180–197.
  • Chang, Y.C., and Keh, H.J. (2010b). Thermophoresis of Axially and Fore-and-Aft Symmetric Aerosol Particles. Phys. Fluids, 22:113305-1
  • Chang, Y.C., and Keh, H.J. (2012). Effects of Thermal Stress Slip on Thermophoresis and Photophoresis, J. Aerosol Sci., 50:1–10.
  • Cheung, C.K. W., Fletcher, D.F., Barton, G.W., and McNamara, P. (2009). Simulation of Particle Transport and Deposition in the Modified Chemical Vapor Deposition Process. J. Non-Crystalline Solids, 355:327–334.
  • Dang, H., and Swihart, M.T. (2009). Computational Modeling of Silicon Nanoparticle Synthesis: II. A Two-Dimensional Bivariate Model for Silicon Nanoparticle Synthesis in a Laser-Driven Reactor Including Finite-Rate Coalescence. Aerosol Sci. Technol., 43:554–569.
  • Das, K. (2012). Influence of Thermophoresis and Chemical Reaction on MHD Micropolar Fluid Flow with Variable Fluid Properties. Int. J. Heat Mass Transfer, 55:7166–7174.
  • De Keizer, A., Van Der Drift, W.P. J. T., and Overbeek, J.Th. G. (1975). Electrophoresis of Randomly Oriented Cylindrical Particles. Biophys. Chem., 3:107–108.
  • Hsieh, T.H., and Keh, H.J. (2012). Thermophoresis of an Aerosol Sphere with Chemical Reactions. Aerosol Sci. Technol., 46:361–368.
  • Keh, H.J., and Chang, Y.C. (2009). Thermophoresis of an Aerosol Spheroid Along Its Axis of Revolution. Phys. Fluids, 21: 062001-1-15.
  • Keh, H.J., and Chen, S.H. (1995). Particle Interactions in Thermophoresis. Chem. Eng. Sci., 50:3395–3407.
  • Keh, H.J., and Ou, C.L. (2004). Thermophoresis of Aerosol Spheroids. Aerosol Sci. Technol., 38:675–684.
  • Keh, H.J., and Tu, H.J. (2001). Thermophoresis and Photophoresis of Cylindrical Particles. Colloids Surf. A, 176:213–223.
  • Koziel, J.A., Haddadi, S.H., Koch, W., and Pawliszyn, J. (2009). Sampling and Analysis of Nanoparticles with Cold Fibre SPME Device. J. Sep. Sci., 32:1975–1980.
  • Li, W.K., Soong, C.Y., Liu, C.H., and Tzeng, P.Y. (2010). Thermophoresis of a Micro-Particle in Gaseous Media with Effect of Thermal Stress Slip, Aerosol Sci. Technol., 44:1077–1082.
  • Messerer, A., Niessner, R., and Poschl, U. (2004). Miniature Pipe Bundle Heat Exchanger for Thermophoretic Deposition of Ultrafine Soot Aerosol Particles at High Flow Velocities. Aerosol Sci. Technol., 38:456–466.
  • Mohd Azahari, B.R., Mori, M., Suzuki, M., and Masuda, W. (2012). Effects of Gas Species on Pressure Dependence of Thermophoretic Velocity. J. Aerosol Sci. 54:77–87.
  • Nguyen, Q.T., Kidder, J.N., and Ehrman, S.H. (2002). Hybrid Gas-to-Particle Conversion and Chemical Vapor Deposition for the Production of Porous Alumina Films. Thin Solid Films 410:42–52.
  • Schadt, C.F., and Cadle, R.D. (1961). Thermal Forces on Aerosol Particles, J. Phys. Chem., 65:1689–1694.
  • Talbot, L., Cheng, R.K., Schefer, R.W., and Willis, D.R. (1980). Thermophoresis of Particles in a Heated Boundary Layer, J. Fluid Mech., 101:737–758.
  • Tan, S.M., Ng, H.K., and Gan, S. (2013). CFD Modelling of Soot Entrainment via Thermophoretic Deposition and Crevice Flow in a Diesel Engine, J. Aerosol Sci., 66:83–95.
  • Walsh, J.K., Weimer, A.W., and Hrenya, C.M. (2006). Thermophoretic Deposition of Aerosol Particles in Laminar Tube Flow with Mixed Convection. J. Aerosol Sci., 37:715–734.
  • Williams, M.M. R. (1986). Thermophoretic Forces Acting on a Spheroid. J. Phys. D, 19:1631–1642.
  • Williams, M.M. R., and Loyalka, S.K. (1991). Aerosol Science: Theory and Practice, with Special Applications to the Nuclear Industry, Pergamon Press, Oxford.
  • Young, J.B. (2011). Thermophoresis of a Spherical Particle: Reassessment, Clarification, and New Analysis, Aerosol Sci. Technol., 45:927–948.

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