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Original Articles

PREDICTION AND RATIONAL CORRELATION OF THERMOPHORETICALLY REDUCED PARTICLE MASS TRANSFER TO HOT SURFACES ACROSS LAMINAR OR TURBULENT FORCED-CONVECTION GAS BOUNDARY LAYERS†

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Pages 107-119 | Received 09 Aug 1985, Accepted 02 Dec 1985, Published online: 25 Apr 2007

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M. A. Gallis, D. J. Rader & J. R. Torczynski. (2002) Thermophoresis in Rarefied Gas Flows. Aerosol Science and Technology 36:12, pages 1099-1117.
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ALESSANDRO GOMEZ & DANIEL E ROSNER. (1993) Thermophoretic Effects on Particles in Counterflow Laminar Diffusion Flames. Combustion Science and Technology 89:5-6, pages 335-362.
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DOUGLASW. COOPER, ROBERTJ. MILLER, JIN JWANG WU & MICHAELH. PETERS. (1990) DEPOSITION OF SUBMICRON AEROSOL PARTICLES DURING INTEGRATED CIRCUIT MANUFACTURING: THEORY. Particulate Science and Technology 8:3-4, pages 209-224.
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Song Yu, Jun Wang, Guodong Xia & Luxiang Zong. (2018) Thermophoretic force on nonspherical particles in the free-molecule regime. Physical Review E 97:5.
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. 2002. VDI-Wärmeatlas. VDI-Wärmeatlas 1368 1500 .
Sandeep Nijhawan, Peter H. McMurry & Stephen A. Campbell. (2000) Particle transport in a parallel-plate semiconductor reactor: Chamber modification and design criterion for enhanced process cleanliness. Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films 18:5, pages 2198-2206.
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Robert J. Kee, Wenhua Yang, Laxminarayan L. Raja & Colin A. Wolden. (2000) The influence of pressure, fluid flow, and chemistry on the combustion-based oxidation of silicon. Proceedings of the Combustion Institute 28:1, pages 1381-1388.
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L. de Juan, S. Brown, K. Serageldin, N. Davis, J. Rosell, J. Lazcano & J. Fernández de la Mora. (1997) Electrostatic effects in inertial impactors. Journal of Aerosol Science 28:6, pages 1029-1048.
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Jose L. Castillo & Daniel E. Rosner. (1996) Role of high activation energy homogeneous chemical reactions in affecting CVD-rates and deposit quality for heated surfaces. Chemical Engineering Science 51:24, pages 5325-5340.
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Daniel E. Rosner & Dimitrios H. Papadopoulos. (1996) Jump, Slip, and Creep Boundary Conditions at Nonequilibrium Gas/Solid Interfaces. Industrial & Engineering Chemistry Research 35:9, pages 3210-3222.
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Jong Ho Lee, Won Seok Moon & Seung Bin Park. (1996) Numerical simulation of thermophoretic particle decontamination in clean rooms. Korean Journal of Chemical Engineering 13:1, pages 7-14.
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Noureddine Ait Messaoudene & James S. T’ien. 1993. Instabilities and Turbulence in Engineering Flows. Instabilities and Turbulence in Engineering Flows 351 365 .
. 1991. Dynamics of Deflagrations and Reactive Systems: Flames. Dynamics of Deflagrations and Reactive Systems: Flames 71 85 .
. 1991. Dynamics of Deflagrations and Reactive Systems: Flames. Dynamics of Deflagrations and Reactive Systems: Flames.
Michael H Peters & Douglas W Cooper. (1990) The effects of electrostatic forces on the thermophoretic suppression of particle diffusional deposition onto hot surfaces. Journal of Colloid and Interface Science 140:1, pages 48-56.
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Jose L. Castillo, Daniel W. Mackowski & Daniel E. Rosner. (1990) Photophoretic modification of the transport of absorbing particles across combustion gas boundary layers. Progress in Energy and Combustion Science 16:4, pages 253-260.
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M. Tassopoulos, J. A. O'Brien & D. E. Rosner. (1989) Simulation of microstructure/mechanism relationships in particle deposition. AIChE Journal 35:6, pages 967-980.
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I. Owen, A.A. El-Kady & J.W. Cleaver. (1989) Deposition of sub-micrometre particles onto a heated surface with widely spaced roughness elements. Journal of Aerosol Science 20:6, pages 671-681.
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Jose L. Castillo & Daniel E. Rosner. (1989) Equilibrium theory of surface deposition from particle-laden dilute, saturated vapor containing laminar boundary layers. Chemical Engineering Science 44:4, pages 939-956.
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H.M Park & D.E Rosner. (1989) Combined inertial and thermophoretic effects on particle deposition rates in highly loaded dusty-gas systems. Chemical Engineering Science 44:10, pages 2233-2244.
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S.K Friedlander, J Fernandez de la Mora & S.A Gokoglu. (1988) Diffusive leakage of small particles across the dust-free layer near a hot wall. Journal of Colloid and Interface Science 125:1, pages 351-355.
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