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Quantitative Comparison of Detailed Numerical Computations and Experiments in Counterflow Spray Diffusion Flames.
Yale Univ., New Haven, CT
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Adaptive Multilevel Local Defect Correction Technique With Application to Combustion.
Eindhoven University of Technology, The Netherlands; Yale Univ., New Haven, CT
Combustion Theory and Modelling,
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Walsh, K. T.; Fielding, J.; Smooke, M. D.; Long, M. B.; Linan, A.
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Comparison of Computational and Experimental Lift-Off Heights of Coflow Laminar Diffusion Flames.
Yale Univ., New Haven, CT; Universidad Politécnica de Madrid, 28040 Madrid, Spain
Combustion Institute, Symposium (International) on Combustion, 30th. Proceedings. Volume 30. Part 1. July 25-30, 2004,
Combustion Institute, Pittsburgh, PA,
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Amantini, G.; Frank, J. H.; Smooke, M. D.; Gomez, A.
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Computational and Experimental Study of Standing Methane Edge Flames in the Two-Dimensional Axisymmetric Counterflow Geometry.
Yale Univ., New Haven, CT; Sandia National Laboratories, Livermore, CA
Combustion and Flame,
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Bennett, B. A. V.; McEnally, C. S.; Pfefferle, L. D.; Smooke, M. D.; Colket, M. B.
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Computational and Experimental Study of the Effects of Adding Dimethyl Ether and Ethanol to Nonpremixed Ethylene/Air Flames.
Yale Univ., New Haven, CT; United Technologies Research Center, East Hartford, CT; United Technologies Research Center, East Hartford, CT
Combustion and Flame,
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Distributed-Memory Parallel Computation of a Forced, Time-Dependent, Sooting, Ethylene/Air Coflow Diffusion Flame.
Yale Univ., New Haven, CT; United Technologies Research Center, East Hartford, CT
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