George Kosaly
Affiliations: | 2005 | University of Washington, Seattle, Seattle, WA |
Area:
Mechanical Engineering, Fluid and Plasma PhysicsGoogle:
"George Kosaly"Bio:
https://www.me.washington.edu/files/news/MEssenger/docs/MEssenger_Spring2007.pdf
Mean distance: (not calculated yet)
Children
Sign in to add traineeAlireza Haghighat | grad student | 1986 | University of Washington (E-Tree) |
Paiboon Sripakagorn | grad student | 2002 | University of Washington |
Satoshi Mitarai | grad student | 2004 | University of Washington |
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Publications
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Mitarai S, Riley JJ, Kosály G. (2005) Testing of mixing models for Monte Carlo probability density function simulations Physics of Fluids. 17 |
Sripakagorn P, Mitarai S, Kosály G, et al. (2004) Extinction and reignition in a diffusion flame: A direct numerical simulation study Journal of Fluid Mechanics. 518: 231-259 |
Mitarai S, Kosály G, Riley JJ. (2004) A new Lagrangian flamelet model for local flame extinction and reignition Combustion and Flame. 137: 306-319 |
Sripakagorn P, Kosály G, Riley JJ. (2004) Investigation of the influence of the Reynolds number on extinction and reignition Combustion and Flame. 136: 351-363 |
Martin SM, Kramlich JC, Kosály G, et al. (2003) The premixed conditional moment closure method applied to idealized lean premixed gas turbine combustors Journal of Engineering For Gas Turbines and Power. 125: 895-900 |
Mitarai S, Riley JJ, Kosály G. (2003) A Lagrangian study of scalar diffusion in isotropic turbulence with chemical reaction Physics of Fluids. 15: 3856-3866 |
Cha CM, Kosály G, Pitsch H. (2001) Modeling extinction and reignition in turbulent nonpremixed combustion using a doubly-conditional moment closure approach Physics of Fluids. 13: 3824-3834 |
Kops SMdB, Riley JJ, Kosály G. (2001) Direct numerical simulation of reacting scalar mixing layers Physics of Fluids. 13: 1450-1465 |
Cha CM, Kosály G. (2000) Quasi-steady modeling of turbulent nonpremixed combustion Combustion and Flame. 122: 400-421 |
Nilsen V, Kosály G. (1999) Differential diffusion in turbulent reacting flows Combustion and Flame. 117: 493-513 |