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Kuznetsov G.V., Strizhak P.A. Evaporation of Single Droplets and Dispersed Liquid Flow in Motion through High Temperature Combustion Products // High Temperature, 2014, V. 52, № 4, P. 568–575.
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Glushkov D.O., Kuznetsov G.V., Strizhak P.A. Numerical Investigation of Water Droplets Shape Influence on Mathematical Modeling Results of Its Evaporation in Motion through a High-Temperature Gas // Mathematical Problems in Engineering. Volume 2014 (2014), Article ID 920480.
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Volkov R.S., Vysokomornaya O.V., Kuznetsov G.V., Strizhak P.A. Investigation of Regularities of Heat and Mass Transfer and Phase Transitions during Water Droplets Motion through High-Temperature Gases // Advances in Mechanical Engineering. Volume 2014 (2014), Article ID 865856.
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Volkov R.S., Kuznetsov G.V., Strizhak P.A. The influence of initial sizes and velocities of water droplets on transfer characteristics at high-temperature gas flow // International Journal of Heat and Mass Transfer. 2014. V. 79. P. 838–845.
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Vysokomornaya O.V., Kuznetsov G.V., Strizhak P.A. Experimental investigation of atomized water droplet initial parameters influence on evaporation intensity in flaming combustion zone // Fire Safety Journal. 2014. V. 70. P. 61–70.
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Volkov R.S., Kuznetsov G.V., Strizhak P.A. Experimental investigation of mixtures and foreign inclusions in water droplets influence on integral characteristics of their evaporation during motion through high-temperature gas area // International Journal of Thermal Sciences. 2015. V. 88. P. 193–200.
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Volkov R.S., Kuznetsov G.V., Strizhak P.A. Water droplet deformation in gas stream: Impact of temperature difference between liquid and gas // International Journal of Heat and Mass Transfer. 2015. V. 85. P. 1–11.
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Kuznetsov G.V., Kuibin P.A., Strizhak P.A. Estimation of the Numerical Values of the Evaporation Constants of the Water Drops Moving in the High Temperature Gas Flow // High Temperature. 2015. V. 53, № 2. P. 254–258.
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Kostornov A.G., Moroz A.L., Shapoval A.A., Kabov O., Strizhak P., Legros J.C. Composite structures with gradient of permeability to be used in heat pipes under microgravity // Acta Astronautica. 2015. V. 115. P. 52–57.
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Vysokomornaya O.V., Kuznetsov G.V., Strizhak P.A. Numerical Analysis of Integral Characteristics for the Condenser Setups of Independent Power-Supply Sources with the Closed-Looped Thermodynamic Cycle // Mathematical Problems in Engineering. 2015. V. 2015, Article ID 535747, 7 p.
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Kuznetsov G.V., Piskunov M.V., Strizhak P.A. Evaporation, boiling and explosive breakup of heterogeneous droplet in a high-temperature gas // International Journal of Heat and Mass Transfer. 2016. V. 92. P. 360–369.
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Volkov R.S., Piskunov M.V., Kuznetsov G.V., Strizhak P.A. Water Droplet With Carbon Particles Moving Through High Temperature Gases // Journal of Heat Transfer. 2016. V. 138, № 1. 014502. P. 1–5.
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Glushkov D.O., Kuznetsov G.V., Strizhak P.A. Influence of radiative heat and mass transfer mechanism in system water droplet – high-temperature gases on integral characteristics of liquid evaporation // Thermal Science. 2015. V. 19, № 5. P. 1541–1552.
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Volkov R.S., Kuznetsov G.V., Legros J.C., Strizhak P.A. Experimental investigation of consecutive water droplets falling down through high-temperature gas zone // International Journal of Heat and Mass Transfer. 2016. V. 95. P. 184–197.
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Volkov R.S., Kuznetsov G.V., Strizhak P.A. Influence of droplet concentration on evaporation in a high-temperature gas // International Journal of Heat and Mass Transfer. 2016. V. 96. P. 20–28.
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Strizhak P.A., Volkov R.S. The integral characteristics of the deceleration and entrainment of water droplets by the counter flow of high-temperature combustion products // Experimental Thermal and Fluid Science. 2016. V. 75. P. 54–65.
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Glushkov D.O., Kuznetsov G.V., Strizhak P.A., Volkov R.S. Experimental investigation of evaporation enhancement for water droplet containing solid particles in flaming combustion area // Thermal Science. 2016. V. 20, № 1. P. 131–141.
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Piskunov M.V., Strizhak P.A., Shcherbinina A.A. Intensive evaporation and boiling of a heterogeneous liquid droplet with an explosive disintegration in high-temperature gas area // Thermal Science. 2016. V. 20, № 2. P. 541–553.
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Kuznetsov G.V., Strizhak P.A., Volkov R.S., Vysokomornaya O.V. Integral characteristics of water droplet evaporation in high temperature combustion products of typical flammable liquids using SP and IPI methods // International Journal of Thermal Sciences. 2016. V. 108. P. 218–234.
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Volkov R.S., Kuznetsov G.V., Kuibin P.A., Strizhak P.A. Features of Water Droplet Deformation during Motion in a Gaseous Medium under Conditions of Moderate and High Temperatures // High Temperature. 2016. V. 54, № 5. P. 722–730.
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Kuznetsov G.V., Strizhak P.A., Volkov R.S. Temperature measurement in the trace of water droplet when heating by hot air // Experimental Thermal and Fluid Science. 2017. V. 81. P. 256–264.
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Kuznetsov G.V., Strizhak P.A., Volkov R.S., Voytkov I.S. Gas temperature in the trace of water droplets streamlined by hot air flow // International Journal of Multiphase Flow. 2017. V. 91. P. 184–193.
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Legros J.C., Miadlin A., Strizhak P., Shevtsova V. Permeation of supercritical CO2 through perfluoroelastomers // The Journal of Supercritical Fluids. 2017. V. 126. P. 1–13.
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Voytkov I.S., Volkov R.S., Strizhak P.A. Reducing the flue gases temperature by individual droplets, aerosol, and large water batches // Experimental Thermal and Fluid Science. 2017. V. 88. P. 301–316.
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Volkov R.S., Strizhak P.A. Planar laser-induced fluorescence diagnostics of water droplets heating and evaporation at high-temperature // Applied Thermal Engineering. 2017. V. 127. P. 141–156.
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Kuznetsov G.V., Piskunov M.V., Strizhak P.A. How to improve efficiency of using water when extinguishing fires through the explosive breakup of drops in a flame: Laboratory and field tests // International Journal of Thermal Sciences. 2017. V. 121. P. 398–409.
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Vysokomornaya O.V., Piskunov M.V., Strizhak P.A. Breakup of heterogeneous water drop immersed in high-temperature air // Applied Thermal Engineering. 2017. V. 127. P. 1340–1345.
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Strizhak P.A., Piskunov M.V., Volkov R.S., Legros J.C. Evaporation, boiling and explosive breakup of oil-water emulsion drops under intense radiant heating // Chemical Engineering Research and Design. 2017. V. 127. P. 72–80.
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Volkov R.S., Strizhak P.A. Motion of water droplets in the counter flow of high-temperature combustion products // Heat Mass Transfer. 2017. P. 1–15. 10.1007/s00231-017-2121-5.
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Strizhak P.A., Volkov R.S., Piskunov M.V., Zabelin M.V. Transformation of water ball falling in high-temperature gases // Atomization and Sprays. 2017. V. 27. No 10. P. 893–911.
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Voitkov I.S., Volkov R.S., Strizhak P.A. Temperature of gases in a trace of water droplets during their motion in a flame // Thermal Science. Year 2017, Vol. 21, No. 6B, pp. 2993-3004.
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Piskunov M.V., Strizhak P.A. Using planar laser-induced fluorescence to explain the mechanism of heterogeneous water droplet boiling and explosive breakup // Experimental Thermal and Fluid Science. 2018. V. 91. P. 103–116.
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Kuznetsov G.V., Piskunov M.V., Volkov R.S., Strizhak P.A. Unsteady temperature fields of evaporating water droplets exposed to conductive, convective and radiative heating // Applied Thermal Engineering. 2018. V. 131. P. 340–355.
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Legros J.C., Lutoshkina O.S., Piskunov M.V., Voytkov I.S. Water drops with graphite particles triggering the explosive liquid breakup // Experimental Thermal and Fluid Science. 2018. V. 96. P. 154-161.
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Volkov R.S., Strizhak P.A. Research of temperature fields and convection velocities in evaporating water droplets using Planar Laser-Induced Fluorescence and Particle Image Velocimetry // Experimental Thermal and Fluid Science. 2018. V. 97. P. 392-407.
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Voytkov I.S., Volkov R.S., Lutoshkina O.S., Kuznetsov G.V. Temperature traces of water aerosols, water-based emulsions, solutions and slurries moving in a reversed flow of high-temperature gases // Experimental Thermal and Fluid Science. 2018. V. 98. P. 20-29.
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Vysokomornaya O.V., Voytkov I.S., Kuznetsov G.V., Abramova A.V. High-temperature evaporation of water emulsion droplets used in thermal fluid treatment // International Journal of Heat and Mass Transfer. 2018. V. 126. P. 1043-1048.