Amit Katoch
Amit Katoch
Post Doctoral Fellow, Clean Combustion Research Center,KAUST
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Cited by
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Experimental and numerical analysis for high intensity swirl based ultra-low emission flameless combustor operating with liquid fuels
VM Reddy, A Katoch, WL Roberts, S Kumar
Proceedings of the Combustion Institute 35 (3), 3581-3589, 2015
Measurement of laminar burning velocities of methanol-air mixtures at elevated temperatures
A Katoch, M Asad, S Minaev, S Kumar
Fuel 182, 57-63, 2016
Measurement of Laminar Burning Velocity of Ethanol-Air Mixtures at Elevated Temperatures
A Katoch, A Millán-Merino, S Kumar
Fuel 231, 37-44, 2018
Laminar burning velocity of n-propanol and air mixtures at elevated mixture temperatures
A Katoch, A Chauhan, S Kumar
Energy & Fuels 32 (5), 6363-6370, 2018
Laminar burning velocities and kinetic modeling of a renewable e-fuel: formic acid and its mixtures with H2 and CO2
SM Sarathy, P Bréquigny, A Katoch, A Elbaz, W Roberts, R Dibble, ...
Energy & Fuels, 2020
Measurement of laminar burning velocity of n-Pentanol+Air mixtures at elevated temperatures and a skeletal kinetic model
A Katoch, A Alfazazi, SM Sarathy, A Chauhan, R Kumar, S Kumar
Fuel 237, 10-17, 2019
Experimental investigations on laminar burning velocities of n-heptane+air mixtures at higher mixture temperatures using externally heated diverging channel method
R Kumar, A Singhal, A Katoch, S Kumar
Energy & Fuels 34, 2405-2416, 2020
Experimental Investigations on Laminar Burning Velocity Variation of Methyl Formate–Air Mixtures at Elevated Temperatures
R Kumar, A Katoch, A Singhal, S Kumar
Energy & Fuels 32 (12), 12936-12948, 2018
First step towards atomization at ultra-low flow rates using conventional twin-fluid atomizer
M Asad, A Katoch, H Gadgil, S Kumar
Experimental Thermal and Fluid Science, 2019
Experimental and numerical investigations on the laminar burning velocity of n-butanol+air mixtures at elevated temperatures
A Katoch, A Alfazazi, SM Sarathy, S Kumar
Fuel 249, 36-44, 2019
A Comprehensive Experimental Study to Measure Laminar and Turbulent Burning Velocity of Haltermann Gasoline with Ternary Additives (O3, H2, and CO)
F Khan, A Elbaz, A Katoch, J Badra, V Costanzo, W Roberts
SAE Technical Paper, 2021
Laminar Burning Velocities and Kinetic Modeling of a Renewable E-Fuel: Formic Acid and Its Mixtures with H₂ and CO₂
SM Sarathy, P Brequigny, A Katoch, AM Elbaz, WL Roberts, RW Dibble, ...
Effect of H2, CO and O3 addition on laminar flame speed of haltermann gasoline
F Khan, O MANNAA, A Elbaz, A Katoch, W L Roberts
Elevated Temperature effects on Laminar Burning Velocity Temperature Exponent of Liquid Fuels
A Katoch, R Kumar, S Kumar
26th ICDERS, 2017
Laminar burning velocity of n-pentanol air mixtures using meso-scale channels
A Katoch, A Chauhan, R Kumar, S Kumar
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