Folgen
Viktor Józsa
Viktor Józsa
Bestätigte E-Mail-Adresse bei energia.bme.hu
Titel
Zitiert von
Zitiert von
Jahr
Progress in utilisation of waste cooking oil for sustainable biodiesel and biojet fuel production
BHH Goh, CT Chong, Y Ge, HC Ong, JH Ng, B Tian, V Ashokkumar, S Lim, ...
Energy Conversion and Management 223, 113296, 2020
1832020
Droplet dynamics and size characterization of high-velocity airblast atomization
A Urbán, M Zaremba, M Malý, V Józsa, J Jedelský
International Journal of Multiphase Flow 95, 1-11, 2017
752017
Recent advancements in catalytic conversion pathways for synthetic jet fuel produced from bioresources
BHH Goh, CT Chong, HC Ong, T Seljak, T Katrašnik, V Józsa, JH Ng, ...
Energy Conversion and Management 251, 114974, 2022
652022
Thermal analysis of the SMOG-1 PocketQube satellite
R Kovács, V Józsa
Applied Thermal Engineering 139, 506-513, 2018
422018
Spectroscopic analysis of crude rapeseed oil flame
V Józsa, A Kun-Balog
Fuel processing technology 139, 61-66, 2015
422015
Stability and emission analysis of crude rapeseed oil combustion
V Józsa, A Kun-Balog
Fuel Processing Technology 156, 204-210, 2017
352017
Effect of liquid preheating on high-velocity airblast atomization: From water to crude rapeseed oil
A Urbán, M Malý, V Józsa, J Jedelský
Experimental Thermal and Fluid Science 102, 137-151, 2019
312019
Pollutant emission of gaseous and liquid aqueous bioethanol combustion in swirl burners
A Kun-Balog, K Sztankó, V Józsa
Energy Conversion and Management 149, 896-903, 2017
282017
Flame emission spectroscopy measurement of a steam blast and air blast burner
V Jozsa, K Sztanko
Thermal Science 21 (2), 1021-1030, 2017
272017
Solving Problems in Thermal Engineering: A Toolbox for Engineers
V Józsa, R Kovács
Springer Nature, 2019
26*2019
Empirical correlation for spray half cone angle in plain-jet airblast atomizers
A Urbán, B Katona, M Malý, J Jedelský, V Józsa
Fuel 277, 118197, 2020
212020
Dual-fuel operation of biodiesel and natural gas in a model gas turbine combustor
CT Chong, MC Chiong, JH Ng, MV Tran, A Valera-Medina, V Józsa, ...
Energy & fuels 34 (3), 3788-3796, 2020
212020
Mixture temperature-controlled combustion: A revolutionary concept for ultra-low NOX emission
V Józsa
Fuel 291, 120200, 2021
202021
Ultra-low emission combustion of diesel-coconut biodiesel fuels by a mixture temperature-controlled combustion mode
V Józsa, G Hidegh, A Kun-Balog, JH Ng, CT Chong
Energy conversion and management 214, 112908, 2020
162020
Evaporation of Renewable Fuels in a Lean Premixed Prevaporized Burner
V Józsa, D Csemány
Periodica Polytechnica. Engineering. Mechanical Engineering 60 (2), 82-88, 2016
162016
Fuel evaporation in an atmospheric premixed burner: sensitivity analysis and spray vaporization
D Csemány, V Józsa
Processes 5 (4), 80, 2017
152017
Comparison of volatility characteristics and temperature-dependent density, surface tension, and kinematic viscosity of n-butanol-diesel and ABE-diesel fuel blends
D Csemány, O DarAli, SAH Rizvi, V Józsa
Fuel 312, 122909, 2022
142022
Numerical modeling of distributed combustion without air dilution in a novel ultra-low emission turbulent swirl burner
D Füzesi, M Malý, J Jedelský, V Józsa
Physics of Fluids 34 (4), 2022
132022
Application of big data analysis technique on high-velocity airblast atomization: Searching for optimum probability density function
A Urbán, A Groniewsky, M Malý, V Józsa, J Jedelský
Fuel 273, 117792, 2020
132020
Dynamics and emission of nearly flameless combustion of waste cooking oil biodiesel in an ultra-low emission non-MILD swirl burner
V Jozsa, GT Hidegh, D Csemany, RA Kardos, CT Chong
Fuel 319, 123743, 2022
122022
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20