A-Z Index
Strizhak, Pavel A.
National Research Tomsk Polytechnic University, Institute of Power Engineering, 30 Lenin
Avenue, Tomsk, 634050, Russia
30, Lenin Avenue Tomsk Tomsk region RUSSIA
Drops, Fire suppression, Experimental techniques, Heat Transfer
Articles:
DISINTEGRATION OF LARGE BALLS OF WATER-BASED LIQUIDS IN FREE FALL THROUGH HIGH-TEMPERATURE GASES(open in a new tab) - Vol. 27 '2017(open in a new tab) - Atomization and Sprays(open in a new tab)
SECONDARY ATOMIZATION OF FIREFIGHTING LIQUID DROPLETS BY THEIR COLLISIONS(open in a new tab) - Vol. 29 '2019(open in a new tab) - Atomization and Sprays(open in a new tab)
EFFECTS OF TARGET AND PROJECTILE PARAMETERS ON COLLISION CHARACTERISTICS OF WATER DROPLETS(open in a new tab) - Vol. 30 '2020(open in a new tab) - Atomization and Sprays(open in a new tab)
EFFECT OF CONCENTRATION OF DROPLETS IN AN AEROSOL CLOUD ON THE NUMBER AND OUTCOMES OF THEIR COLLISIONS IN A GAS MEDIUM(open in a new tab) - Vol. 31 '2021(open in a new tab) - Atomization and Sprays(open in a new tab)
A COMBINED ANALYTICAL/NUMERICAL APPROACH TO THE MODELING OF THE PROCESSES LEADING TO PUFFING AND MICRO-EXPLOSION IN A COMPOSITE MULTI-COMPONENT FUEL/WATER DROPLET(open in a new tab) - Vol. 34 '2024(open in a new tab) - Atomization and Sprays(open in a new tab)
EFFECT OF GAS PRESSURE AND TEMPERATURE ON THE REGIMES OF LIQUID DROPLET COLLISIONS(open in a new tab) - Vol. 10 '2022(open in a new tab) - Interfacial Phenomena and Heat Transfer(open in a new tab)
TWO-DIMENSIONAL SIMULATION OF COLLISION BETWEEN LIQUID DROPLET: DETERMINING THE CONDITIONS OF INTENSE SECONDARY ATOMIZATION(open in a new tab) - Vol. 10 '2022(open in a new tab) - Interfacial Phenomena and Heat Transfer(open in a new tab)
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS(open in a new tab) - Vol. 6 '2018(open in a new tab) - Interfacial Phenomena and Heat Transfer(open in a new tab)
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS(open in a new tab) - Vol. 4 '2018(open in a new tab) - International Heat Transfer Conference 16(open in a new tab)
HEAT TRANSFER DURING IGNITION OF THE GAS HYDRATE POWDER FLOW IN THE REACTOR(open in a new tab) - Vol. 4 '2023(open in a new tab) - International Heat Transfer Conference 17(open in a new tab)
INTERACTION OF DROPS AND PARTICLES OF COMPOSITE FUELS IN A GAS ENVIRONMENT FOR THEIR AGGLOMERATION AND SECONDARY GRINDING(open in a new tab) - Vol. 41 '2023(open in a new tab) - International Heat Transfer Conference 17(open in a new tab)
Antonov, Dmitrii
A COMBINED ANALYTICAL/NUMERICAL APPROACH TO THE MODELING OF THE PROCESSES LEADING TO PUFFING AND MICRO-EXPLOSION IN A COMPOSITE MULTI-COMPONENT FUEL/WATER DROPLET
HEAT TRANSFER DURING IGNITION OF THE GAS HYDRATE POWDER FLOW IN THE REACTOR
TWO-DIMENSIONAL SIMULATION OF COLLISION BETWEEN LIQUID DROPLET: DETERMINING THE CONDITIONS OF INTENSE SECONDARY ATOMIZATION
Islamova, Anastasia G.
INTERACTION OF DROPS AND PARTICLES OF COMPOSITE FUELS IN A GAS ENVIRONMENT FOR THEIR AGGLOMERATION AND SECONDARY GRINDING
EFFECT OF GAS PRESSURE AND TEMPERATURE ON THE REGIMES OF LIQUID DROPLET COLLISIONS
Solomatin, Yaroslav
SECONDARY ATOMIZATION OF FIREFIGHTING LIQUID DROPLETS BY THEIR COLLISIONS
Shlegel, Nikita E.
EFFECTS OF TARGET AND PROJECTILE PARAMETERS ON COLLISION CHARACTERISTICS OF WATER DROPLETS
INTERACTION OF DROPS AND PARTICLES OF COMPOSITE FUELS IN A GAS ENVIRONMENT FOR THEIR AGGLOMERATION AND SECONDARY GRINDING
SECONDARY ATOMIZATION OF FIREFIGHTING LIQUID DROPLETS BY THEIR COLLISIONS
EFFECT OF GAS PRESSURE AND TEMPERATURE ON THE REGIMES OF LIQUID DROPLET COLLISIONS
Shchepakina, E. A.
A COMBINED ANALYTICAL/NUMERICAL APPROACH TO THE MODELING OF THE PROCESSES LEADING TO PUFFING AND MICRO-EXPLOSION IN A COMPOSITE MULTI-COMPONENT FUEL/WATER DROPLET
Volkov, Roman S.
DISINTEGRATION OF LARGE BALLS OF WATER-BASED LIQUIDS IN FREE FALL THROUGH HIGH-TEMPERATURE GASES
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS
Gaidukova, O.
HEAT TRANSFER DURING IGNITION OF THE GAS HYDRATE POWDER FLOW IN THE REACTOR
Fedorenko, Roman M.
TWO-DIMENSIONAL SIMULATION OF COLLISION BETWEEN LIQUID DROPLET: DETERMINING THE CONDITIONS OF INTENSE SECONDARY ATOMIZATION
Sobolev, V. A.
A COMBINED ANALYTICAL/NUMERICAL APPROACH TO THE MODELING OF THE PROCESSES LEADING TO PUFFING AND MICRO-EXPLOSION IN A COMPOSITE MULTI-COMPONENT FUEL/WATER DROPLET
Kuznetsov, Genii V.
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS
Vysokomornaya, Olga V.
INTERACTION OF DROPS AND PARTICLES OF COMPOSITE FUELS IN A GAS ENVIRONMENT FOR THEIR AGGLOMERATION AND SECONDARY GRINDING
EFFECT OF CONCENTRATION OF DROPLETS IN AN AEROSOL CLOUD ON THE NUMBER AND OUTCOMES OF THEIR COLLISIONS IN A GAS MEDIUM
Sazhin, Sergei S.
A COMBINED ANALYTICAL/NUMERICAL APPROACH TO THE MODELING OF THE PROCESSES LEADING TO PUFFING AND MICRO-EXPLOSION IN A COMPOSITE MULTI-COMPONENT FUEL/WATER DROPLET
Piskunov, Maxim V.
DISINTEGRATION OF LARGE BALLS OF WATER-BASED LIQUIDS IN FREE FALL THROUGH HIGH-TEMPERATURE GASES
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS
EFFECTS OF TARGET AND PROJECTILE PARAMETERS ON COLLISION CHARACTERISTICS OF WATER DROPLETS
USING PLANAR LASER-INDUCED FLUORESCENCE TO STUDY THE PHASE TRANSFORMATIONS OF TWO-COMPONENT LIQUID AND SUSPENSION DROPLETS
Zabelin, M. V.
DISINTEGRATION OF LARGE BALLS OF WATER-BASED LIQUIDS IN FREE FALL THROUGH HIGH-TEMPERATURE GASES
Tkachenko, Pavel P.
INTERACTION OF DROPS AND PARTICLES OF COMPOSITE FUELS IN A GAS ENVIRONMENT FOR THEIR AGGLOMERATION AND SECONDARY GRINDING
EFFECT OF CONCENTRATION OF DROPLETS IN AN AEROSOL CLOUD ON THE NUMBER AND OUTCOMES OF THEIR COLLISIONS IN A GAS MEDIUM
EFFECT OF GAS PRESSURE AND TEMPERATURE ON THE REGIMES OF LIQUID DROPLET COLLISIONS