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Volumn 158, Issue 2, 2011, Pages 191-202
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A mixture fraction framework for the theory and modeling of droplets and sprays
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Author keywords
Combustion; Droplets; Evaporation; Mixture fraction; Sprays; Turbulence
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Indexed keywords
B-NUMBER;
CHEMICALLY REACTING SYSTEMS;
CHEMISTRY CALCULATIONS;
CLASSICAL APPROACH;
CLASSICAL THEORY;
CONDITIONAL MOMENT CLOSURE;
COUNTERFLOW;
DROPLET EVAPORATION;
DROPLET SURFACES;
DROPLETS;
ENVELOPE FLAME;
FLAMELETS;
GAS PHASIS;
GASPHASE;
LARGE SCALE STRUCTURES;
MIXING PROCESS;
MIXTURE FRACTION;
MODEL PROBLEMS;
NEW RESULTS;
PARAMETER SPACES;
SPHERICAL SYMMETRY;
SPRAY MODELING;
SPRAYS;
THEORY AND MODELING;
TRANSFER PROCESS;
TURBULENT SPRAY;
TURBULENT SPRAY JET;
TURBULENT VELOCITY FLUCTUATIONS;
COMBUSTION;
EVAPORATION;
MIXTURES;
TURBULENCE;
DROP FORMATION;
AEROSOL;
ARTICLE;
CALCULATION;
CHEMICAL COMPOSITION;
CHEMICAL MODEL;
CHEMICAL REACTION;
COMBUSTION;
EVAPORATION;
GAS;
HEAT TRANSFER;
PARAMETER;
PRIORITY JOURNAL;
TEMPERATURE DEPENDENCE;
THEORY;
TURBULENT FLOW;
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EID: 78650172302
PISSN: 00102180
EISSN: None
Source Type: Journal
DOI: 10.1016/j.combustflame.2010.08.008 Document Type: Article |
Times cited : (61)
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References (20)
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