MILD combustion, Chemical Reactor Networks, Clustering, Machine learning, NOx emissions
Synthetic jets, proper orthogonal decomposition, higher order dynamic mode decomposition, vector quantization via principal component analysis, autoencoders, procrustes analysis.
PaSR, Chemical time scale, Mixing time scale
Radiative transfer equation (RTE), Physics-informed neural networks (PINNs), Integro-differential equations, Participating media, High temperature processes, Angular quadrature
CFD, Atmospheric Boundary layer, Urban wind comfort and safety, Improved k−ω SST model
Structural sensitivity, Flow Control, clustering, VQPCA, synthetic jets
computational fluid dynamics, turbulent combustion closure, detailed chemistry, reactor-based models
Evolutionary algorithm, Ammonia, Hydrogen, Rate constant, Arrhenius parameters
HCCI, Methane, Oxygen-enriched combustion
H2-rich fuels, NOx formation, aromatic doping, flame temperature, semi-industrial furnace, sooty flames
MILD combustion, Non-catalytic partial oxidation, Hydrogen production, Chemical kinetics, Water dilution, Hydrocarbons
Cell Agglomeration, Dimensionality Reduction, Principal Component Analysis (PCA), Dynamic Clustering, Dynamic Multi-Zone (DMZ)
Transported PDF models, Micro-mixing models, mixing time-scale, MILD combustion, Jet-in-Hot Coflow burner
Computational Fluid Dynamics Atmospheric Boundary LayerReduced-Order Models Clustering MethodsLocalized Dimensionality Reduction Gaussian Process Regression
Hydrogen-rich fuels, Nitrogen oxides (NOx), Aromatic doping, Semi-industrial combustion furnace, Sooty flames, Coke oven gas (COG)