Area of research
Fluid Flow and Transfer Processes · Biomedical Engineering
Research interest
Research focused on Combustion and Pyrolysis, with related work in Combustor, Catalysis, Inlet. Notable publications include 'Effect of intake method on ammonia/oxygen non-premixed combustion in the micro combustor with dual-inlet', 'Online evaluation of catalytic co-pyrolysis of hemicellulose and polypropylene over CaO catalyst', and 'Numerical investigation on the self-ignition and combustion characteristics of H2/air in catalytic micro channel'.
The effect of dual injection strategy on fuel distribution and combustion characteristics in ammonia/hydrogen rotary engines
Machine learning and SHapley Additive exPlanations to predict product characteristics from coal and plastic co-pyrolysis
Studies on co-pyrolysis of microalgae and polymeric waste (plastic/rubber): Thermal behavior, kinetics, and product characteristics
Fabrication and characterization of electrospun core-shell nanofibers of bilayer zein/pullulan emulsions crosslinked by genipin
Numerical investigation on the combustion characteristics and NOx emission of non-premixed H2/NH3/air in vase-shaped micro combustor
Metal-coated high-temperature strain optical fiber sensor based on cascaded air-bubble FPI-FBG structure
Effect of intake method on ammonia/oxygen non-premixed combustion in the micro combustor with dual-inlet
Online evaluation of catalytic co-pyrolysis of hemicellulose and polypropylene over CaO catalyst
Numerical investigation on the self-ignition and combustion characteristics of H2/air in catalytic micro channel
Online investigation on catalytic co-pyrolysis of cellulose and polyethylene over magnesium oxide by advanced mass spectrometry
Role of concentration gradient in the re-initiation of H2/O2 detonation in a 90° bifurcated channel