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EFFECT OF CONCENTRATION OF DROPLETS IN AN AEROSOL CLOUD ON THE NUMBER AND OUTCOMES OF THEIR COLLISIONS IN A GAS MEDIUM Tkachenko PP, Vysokomornaya OV, Strizhak PA Atomization and Sprays, 31(8), 81, 2021 |
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Micro-explosion of droplets containing liquids with different viscosity, interfacial and surface tension Antonov DV, Kuznetsov GV, Strizhak PA, Fedorenko RM Chemical Engineering Research & Design, 165, 478, 2021 |
3 |
Micro-explosion of droplets containing liquids with different viscosity, interfacial and surface tension Antonov DV, Kuznetsov GV, Strizhak PA, Fedorenko RM Chemical Engineering Research & Design, 165, 478, 2021 |
4 |
The critical atomization conditions of high-potential fire suppressant droplets in an air flow Voytkov IS, Kuznetsov GV, Strizhak PA Powder Technology, 384, 505, 2021 |
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Micro-explosion of a two-component droplet: How the initial temperature of the water core affects the breakup conditions and outcomes Antonov DV, Kuznetsov GV, Fedorenko RM, Strizhak PA Powder Technology, 382, 378, 2021 |
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EFFECTS OF TARGET AND PROJECTILE PARAMETERS ON COLLISION CHARACTERISTICS OF WATER DROPLETS Piskunov M, Shlegel NE, Strizhak PA Atomization and Sprays, 30(3), 171, 2020 |
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Micro-explosion of droplets containing liquids with different viscosity, interfacial and surface tension Antonov DV, Kuznetsov GV, Strizhak PA, Fedorenko RM Chemical Engineering Research & Design, 158, 129, 2020 |
8 |
Secondary atomization of gas-saturated liquid droplets as a result of their collisions and micro-explosion Antonov DV, Shlegel NE, Strizhak PA Chemical Engineering Research & Design, 162, 200, 2020 |
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Experimental research into the characteristics of child droplets formed due to collisions of liquid fragments in a gas Shlegel NE, Solomatin YS, Strizhak PA Powder Technology, 363, 122, 2020 |
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Collision of water droplets with different initial temperatures Shlegel NE, Tkachenko PP, Strizhak PA Powder Technology, 367, 820, 2020 |