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Publications by Ryoichi Kurose
Statistics of Reaction Progress Variable and Mixture Fraction Gradients of a Pulverised Coal Jet Flame Using Direct Numerical Simulation Data
Proceedings of the Combustion Institute
Theoretical Chemistry
Chemical Engineering
Mechanical Engineering
Physical
Effect of Droplet Size on Soot Formation in Spray Combustion
Journal of the Society of Powder Technology, Japan
Filtration
Fluid Flow
Process Chemistry
Separation
Transfer Processes
Catalysis
Technology
Related publications
Numerical Simulation of Water Jet Flow Using Diffusion Flux Mixture Model
Journal of Fluids
Direct Numerical Simulation of a Shocked Helium Jet
Evaluation of Partially Premixed Turbulent Flame Stability From Mixture Fraction Statistics in a Slot Burner
Combustion Science and Technology
Chemistry
Astronomy
Energy Engineering
Fuel Technology
Chemical Engineering
Power Technology
Physics
Effects of Reaction Progress Variable Definition on the Flame Surface Density Transport Statistics and Closure for Different Combustion Regimes
Combustion Science and Technology
Chemistry
Astronomy
Energy Engineering
Fuel Technology
Chemical Engineering
Power Technology
Physics
A Priori Investigation of Subgrid Correlation of Mixture Fraction and Progress Variable in Partially Premixed Flames
Combustion Theory and Modelling
Chemistry
Astronomy
Energy Engineering
Fuel Technology
Simulation
Chemical Engineering
Modeling
Power Technology
Physics
A Conceptual Model of the Flame Stabilization Mechanisms for a Lifted Diesel-Type Flame Based on Direct Numerical Simulation and Experiments
Combustion and Flame
Chemistry
Astronomy
Energy Engineering
Fuel Technology
Chemical Engineering
Power Technology
Physics
Numerical Simulation of Round Jet.
Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
Condensed Matter Physics
Mechanical Engineering
Numerical Simulation of Combustion Processes for Hydrogen-Air Mixture in a Variable Cross-Section Pipe
Politechnical student journal
Numerical Simulation of Flame Acceleration and Deflagration-To-Detonation Transition in Hydrogen-Air Mixtures With Concentration Gradients
International Journal of Hydrogen Energy
Condensed Matter Physics
Energy Engineering
Renewable Energy
Fuel Technology
Sustainability
Power Technology
the Environment