Raman, V.; Pitsch, H.; Fox, R. O.
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Eulerian Transported Probability Density Function Sub-Filter Model for Large-Eddy Simulations of Turbulent Combustion.
Stanford Research Inst., Menlo Park, CA; Iowa State Univ., IA
Combustion Theory and Modelling,
Vol. 10,
No. 3,
439-458,
June 2006
Raman, V.; Fox, R. O.; Harvey, A. D.
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Hybrid Finite-Volume/Transported PDF Simulations of a Partially Premixed Methane-Air Flame.
Iowa State University, Ames, IA; Dow Chemical Company, Plaquemine, LA
Combustion and Flame,
Vol. 136,
No. 3,
327-350,
February 2004
Raman, V.; Pitsch, H.; Fox, R. O.
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Hybrid Large-Eddy Simulation/Lagrangian Filtered-Density-Function Approach for Simulating Turbulent Combustion.
Stanford Research Inst., Menlo Park, CA; Iowa State Univ., Ames
Combustion and Flame,
Vol. 143,
No. 1/2,
56-78,
October 2005
Xie, N.; Battaglia, F.; Fox, R. O.
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Simulations of Multiphase Reactive Flows in Fluidized Beds Using in situ Adaptive Tabulation.
Iowa State Univ., Ames
Combustion Theory Modelling,
Vol. 8,
No. 2,
195-209,
June 2004
Tang, Q.; Zhao, W.; Bockelie, M.; Fox, R. O.
view article (9.580606)
Multi-Environment Probability Density Function Method for Modeling Turbulent Combustion Using Realistic Chemical Kinetics.
Reaction Engineering International, Salt Lake City, UT; Aerodynamics, United Technology Research Center, East Hartford, CT; Iowa State Univ., Ames
Combustion Theory and Modelling,
Vol. 11,
No. 6,
889-907,
December 2007