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Original Articles

Thermophoretic Effects on Particles in Counterflow Laminar Diffusion Flames

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Pages 335-362 | Received 08 May 1992, Accepted 23 Jul 1992, Published online: 17 Apr 2007

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Warumporn Pejpichestakul, Alessio Frassoldati, Alessandro Parente & Tiziano Faravelli. (2019) Soot Modeling of Ethylene Counterflow Diffusion Flames. Combustion Science and Technology 191:9, pages 1473-1483.
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V. Muntean & F. J. Higuera. (2016) Lean Methane-Air Flames Propagating Upward in Vertical Tubes. Combustion Science and Technology 188:4-5, pages 818-830.
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Wang Han & Zheng Chen. (2015) Effects of Soret Diffusion on Premixed Counterflow Flames. Combustion Science and Technology 187:8, pages 1195-1207.
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MarcR.J. Charest, ClintonP.T. Groth & ÖmerL. Gülder. (2010) A computational framework for predicting laminar reactive flows with soot formation. Combustion Theory and Modelling 14:6, pages 793-825.
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S.B. Dworkin, J.A. Cooke, B.A.V. Bennett, B.C. Connelly, M.B. Long, M.D. Smooke, R.J. Hall & M.B. Colket. (2009) Distributed-memory parallel computation of a forced, time-dependent, sooting, ethylene/air coflow diffusion flame. Combustion Theory and Modelling 13:5, pages 795-822.
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G. Amantini, J.H. Frank, M.D. Smooke & A. Gomez. (2007) Computational and experimental study of steady axisymmetric non-premixed methane counterflow flames. Combustion Theory and Modelling 11:1, pages 47-72.
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M. K. Akbar & S. M. Ghiaasiaan. (2005) RADIATION HEAT TRANSFER AND SOOT THERMOPHORESIS IN LAMINAR TUBE FLOW. Numerical Heat Transfer, Part A: Applications 47:7, pages 653-670.
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PUSHKAR TANDON & DANIELE. ROSNER. (1996) SINTERING KINETICS AND TRANSPORT PROPERTY EVOLUTION OF LARGE MULTI-PARTICLE AGGREGATES1 . Chemical Engineering Communications 151:1, pages 147-168.
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M. G. MUNGAL, L. M. LOURENCO & A. KROTHAPALLI. (1995) Instantaneous Velocity Measurements in Laminar and Turbulent Premixed Flames Using On-Line PIV. Combustion Science and Technology 106:4-6, pages 239-265.
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C. J. SUNG, C. K. LAW & R. L AXELBAUM. (1994) Thermophoretic Effects on Seeding Particles in LDV Measurements of Flames. Combustion Science and Technology 99:1-3, pages 119-132.
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