SootLib
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Jörg Appel, Henning Bockhorn, and Michael Frenklach. Kinetic modeling of soot formation with detailed chemistry and physics: laminar premixed flames of C2 hydrocarbons. Combustion and Flame, 121(1-2):122–136, 2000.
Guillaume Blanquart and Heinz Pitsch. A joint volume-surface-hydrogen multi-variate model for soot formation. In Henning Bockhorn, Andrea D'Anna, Adel F. Sarofim, and Hai Wang, editors, Combustion Generated Fine Carbonaceous Particles, pages 437–463. KIT Scientific Publishing, 2009.
Michael Frenklach and Hai Wang. Detailed modeling of soot particle nucleation and growth. Symposium (International) on Combustion, 23(1):1559–1566, 1991.
Michael Frenklach. Method of moments with interpolative closure. Chemical Engineering Science, 57(12):2229–2239, 2002.
N.A Fuchs. The Mechanics of Aerosols, volume 91. Pergamon Press, revised and enlarged edition edition, 1964.
H. Guo, P.M. Anderson, and P.B. Sunderland. Optimized rate expressions for soot oxidation by OH and O2. Fuel, 172:248–252, 2016.
Alexander J. Josephson, Neil G. Gaffin, Sean T. Smith, Thomas F. Fletcher, and David O. Lignell. Modeling soot consumption with Bayesian Statistics. Energy and Fuels, 31:11291–11303, 2017.
Bok Jik Lee, M. W. Thring, and J. M. Beér. On the rate of combustion of soot in a laminar soot flame. Combustion and Flame, 6:137–145, 1962.
Kari E. J. Lehtinen and Michael R. Zachariah. Self-Preserving Theory for the Volume Distribution of Particles Undergoing Brownian Coagulation. Journal of Colloid and Interface Science, 242(2):314–318, 2001.
K. M. Leung, R. Peter Lindstedt, and W. P. Jones. A simplified reaction mechanism for soot formation in nonpremixed flames. Combustion and Flame, 87:289–305, 1991.
David O. Lignell. Direct Numerical Simulation of Soot Formation and Transport In Turbulent Nonpremixed Ethylene Flames, 2008.
R. Peter Lindstedt and H. Ozarovsky. Joint scalar transported PDF modeling of nonpiloted turbulent diffusion flames. Combustion and Flame, 143(4):471–490, 2005.
R. Peter Lindstedt. Simplified soot nucleation and surface growth steps for non-premixed flames. In Henning Bockhorn, editor, Soot Formation in Combustion, number 59 in Springer Series in Chemical Physics, pages 417–441. Springer-Verlag Berlin Heidelberg, 1994.
Daniele L. Marchisio and Rodney O. Fox. Computational Models for Polydisperse Particulate and Multiphase Systems. Cambridge University Press, 2013.
Koon Gee Neoh, J. B. Howard, and Adel F. Sarofim. Soot Oxidation in Flames. In Donald C. Siegla and George W. Smith, editors, Particulate Carbon: Formation During Combustion, pages 261–282. Springer US, 1981.
Koon Gee Neoh. Soot Burnout in Flames, 1980.
Sotiris E Pratsinis. Simultaneous nucleation, condensation, and coagulation in aerosol reactors. Journal of Colloid and Interface Science, 124(2):416–427, 1988.
John H. Seinfeld and Spyros N. Pandis. Atmospheric Chemistry and Physics. John Wiley & Sons, third edition edition, 2016.
Hai Wang. Formation of nascent soot and other condensed-phase materials in flames. Proceedings of the Combustion Institute, 33(1):41–67, 2011.
John C. Wheeler. Modified moments and Gaussian quadratures. Rocky Mountain Journal of Mathematics, 4(2), 1974.