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Turbulent Combustion, Dispersion and Multiphase Flow:

 
  • Archival journal publications (Articles may be downloaded for personal use only. Any other use requires prior permission of the author and the Publishers):
  1. R. Knikker, D. Veynante and C. Meneveau, 'A dynamic flame surface density model for large eddy simulation of turbulent premixed combustion' (2004), Phys. Fluids, 16, p. L91-L94,

  2. R. Knikker, D. Veynante and C. Meneveau, 'A priori testing of a similarity model for large eddy simulations of turbulent premixed combustion' (2003), Proc. Combustion Inst. 29, p. 2105-2111.

  3. F. Charlette, C. Meneveau and D. Veynante, 'A power-law flame wrinkling model for LES of premixed turbulent combustion. Part I: Non-dynamic formulation and initial tests' (2002), Comb. & Flame 131, p.159-180.

  4. F. Charlette, C. Meneveau and D. Veynante, 'A power-law flame wrinkling model for LES of premixed turbulent combustion. Part II: Dynamic formulation' (2002), Comb. & Flame 131, p.181-197.

  5. E. Etasse, C. Meneveau and T. Poinsot, 'Simple stochastic model for particle dispersion including inertia, trajectory-crossing and continuity effects' (1998), J. Fluid Eng. 120, p. 186.

  6. J. Katz and C. Meneveau, 'Wake-induced relative motion of bubbles rising in line' (1996), Int. J. Multiphase Flow 22, p. 239. Abstract (html)

  7. C. Meneveau and T. Poinsot, 'Stretching and quenching of flamelets in premixed turbulent combustion' (1991), Combustion and Flame 81, p. 91.

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Charles Meneveau, Department of Mechanical Engineering, Johns Hopkins University, 3400 N. Charles Street, Baltimore MD 21218, USA, Phone: 1-410-516-7802, Fax: 1-(410) 516-7254, email: meneveau@jhu.edu

 
Last update: 06/22/2012