This publication is cited in the following articles:
Dmitrii Gabyshev, “Semi-Analytical Refinement of Submicron Droplet Growth by Condensation”, Russian Journal of Earth Sciences, 2025, 1
Andrei Stancalie, Ionut -Relu Andrei, Mihai Boni, Angela Staicu, Mihail Lucian Pascu, “Droplet temperature measurement using a fiber Bragg grating”, Applied Thermal Engineering, 254 (2024), 123905
M. M. Kuznetsov, M. K. Kuzmin, J. D. Kuleshova, “Analysis of the trajectory of changes in the radius of spherical water droplets in the non-stationary process of their evaporation and calculation of the lifetime of such droplets”, Bulletin of State University of Education. Series: Physics and Mathematics, 2024, no. 2, 26
Alla V. Ivanova, Maria G. Markina, “Portable Device for Potentiometric Determination of Antioxidant Capacity”, Sensors, 23:18 (2023), 7845
P. V. Akulich, D. S. Slizhuk, “Heat and Mass Transfer in Spray Drying Processes with Convective-Radiant Energy Supply”, Theor Found Chem Eng, 57:4 (2023), 459
Semen Syrodoy, Geniy Kuznetsov, Kseniya Voytkova, Nadezhda Gutareva, “Mathematical Modeling of the Evaporation of a Water Drop from a Heated Surface”, Langmuir, 39:14 (2023), 5041
K. Hima Teja, Manas Kumar Pal, “A Numerical Study on Droplet Evaporation using Mass and Heat Transfer Approach”, jmmf, 2023, 1302
Kh. Hallaci, H. Fujita Yashima, “A Variant of the Fourier Series in a Spherical Domain and Its Application to Modeling the Evaporation of a Water Droplet”, Diff Equat, 58:2 (2022), 207
Foudhil W., Chen P., Fahem K., Harmand S., Jabrallah S.B., “Study of the Evaporation Kinetics of Pure and Binary Droplets: Volatility Effect”, Heat Mass Transf., 57:11 (2021), 1773–1790
Akulich P.V., Slizhuk D.S., “Thermohydrodynamic Processes in Spray Drying With Convective-Radiation Energy Supply”, Theor. Found. Chem. Eng., 55:1 (2021), 30–40
Gallo Jr. A., Tavares F., Das R., Mishra H., “How Particle-Particle and Liquid-Particle Interactions Govern the Fate of Evaporating Liquid Marbles”, Soft Matter, 2021
Gamini Piyadasa C.K., “Antigravity, An Answer to Nature'S Phenomena Including the Expansion of the Universe”, Adv. High. Energy Phys., 2020 (2020), 9315491
Young E.D., Shahar A., Nimmo F., Schlichting H.E., Schauble E.A., Tang H., Labidi J., “Near-Equilibrium Isotope Fractionation During Planetesimal Evaporation”, Icarus, 323 (2019), 1–15
Takenaka K., Setsuhara Yu., “Droplet-Vaporization Behavior During Plasma-Assisted Mist Chemical Vapor Deposition of Zinc Oxide Films”, Plasma Sources Sci. Technol., 28:6 (2019), 065015
Akulich P.V., “Simulation of Heat and Mass Transfer of Droplets in Drying An Overheated Liquid Under Conditions of Combined Energy Effect”, J. Eng. Phys. Thermophys., 92:2 (2019), 389–397
Zhakhovsky V.V., Kryukov A.P., Levashov V.Yu., Shishkova I.N., Anisimov S.I., “Mass and Heat Transfer Between Evaporation and Condensation Surfaces: Atomistic Simulation and Solution of Boltzmann Kinetic Equation”, Proc. Natl. Acad. Sci. U. S. A., 116:37 (2019), 18209–18217
Piyadasa C.K.G., “Antigravity, a Major Phenomenon in Nature Yet to Be Recognized”, Phys. Essays, 32:2 (2019), 141–150
Levashov V.Yu., Kryukov A.P., Shishkova I.N., “Influence of the Noncondensable Component on the Characteristics of Temperature Change and the Intensity of Water Droplet Evaporation”, Int. J. Heat Mass Transf., 127:B (2018), 115–122
Borodulin V.Yu., Letushko V.N., Nizovtsev M.I., Sterlyagov A.N., “Determination of Parameters of Heat and Mass Transfer in Evaporating Drops”, Int. J. Heat Mass Transf., 109 (2017), 609–618
Bochkareva E.M., Terekhov V.V., Nazarov A.D., Miskiv N.B., “Integrated Experimental and Theoretical Study of Evaporation Process of Nonideal Solutions”, International Conference Problems of Thermal Physics and Power Engineering (PTPPE-2017), Journal of Physics Conference Series, 891, IOP Publishing Ltd, 2017, UNSP 012010
Borodulin V., Nizovtsev M., “Effect of the Size of Droplets on Evaporation”, Interfacial Phenom. Heat Transf., 5:4 (2017), 251–261
V. Yu. Levashov, A. P. Kryukov, “Numerical simulation of water droplet evaporation into vapor–gas medium”, Colloid J, 79:5 (2017), 647
Rakshit D., Narayanaswamy R., Thiagarajan K.P., “Experimental Study of Fluid Phase Equilibrium Along Thermodynamically Optimized Interface of a Stored Liquid Container”, J. Therm. Sci. Eng. Appl., 8:4 (2016), 041012
Shishkova I.N., Yastrebov A.K., “Calculation of vapor mass flux upon isothermal condensation on spherical droplets in a wide range of Knudsen numbers based on the solution of the Boltzmann kinetic equation”, Colloid J., 78:5 (2016), 722–729
Akulich P.V., “Heat and Mass Exchange of a Drop of a Solution Subjected to a Combined Energy Action Under Conditions of Deepening of the Evaporation Zone”, J. Eng. Phys. Thermophys., 89:3 (2016)
Yavors'kyi V.T., Helesh A.B., “Determination of the Parameters of Evaporation of the Solutions of Sulfuric Acid with low Corrosion Activity of the Phases”, Mater. Sci., 51:5 (2016), 691–700
K. V. Shaitan, G. A. Armeev, A. K. Shaytan, “The dynamics of irreversible evaporation of a water–protein droplet and the problem of structural and dynamic experiments with single molecules”, BIOPHYSICS, 61:2 (2016), 177
V Y Borodulin, V N Letushko, M I Nizovtsev, A N Sterlyagov, “The surface temperature of free evaporating drops”, J. Phys.: Conf. Ser., 754 (2016), 032018
Rakshit D., Thiagarajan K.P., Narayanaswamy R., “Effect of Mild Sway on the Interfacial Mass Transfer Rate of Stored Liquids”, J. Heat Transf.-Trans. ASME, 137:11 (2015), 112001
Rakshit D., Narayanaswamy R., Thiagarajan K.P., “Characterization of Interfacial Mass Transfer Rate of Stored Liquids”, J. Therm. Sci. Eng. Appl., 7:2 (2015), 021002
E. A. Bedrikova, A. V. Latyshev, “Chemical potential jump during evaporation of Bose gases”, Low Temp. Phys, 40:3 (2014), 228
E. K. Titaeva, V. B. Fedoseev, “Specific features of crystallization of supersaturated solution in femtoliter-volume systems”, Crystallogr. Rep, 59:3 (2014), 437
E. A. Bedrikova, A. V. Latyshev, “Chemical Potential Jump During Evaporation of a Bose Gas with Variable Molecular Collision Frequency”, Russ Phys J, 2014
W.Z. Gao, Y.Z. Shi, X.L. Zhang, Keith Anderson, “Experimental investigation on a new method of regenerating dehumidification solution–release solution droplet into vacuum”, Applied Thermal Engineering, 2013
Michaela Hager, A.S.. Berezin, T.T.. Zinkicheva, D.K.. Bohme, Michael Probst, “Evaporation of silicon nanoparticles under scanning tunneling microscope control”, Chemical Physics, 425 (2013), 141
An{\i}l Aǧ{\i}ral, Tomohiro Nozaki, Masahiko Nakase, Shuhei Yuzawa, Ken Okazaki, J.G.E. (Han) Gardeniers, “Gas-to-liquids process using multi-phase flow, non-thermal plasma microreactor”, Chemical Engineering Journal, 167:2-3 (2011), 560
V. V. Kuznetsov, “Heat and mass transfer on a liquid-vapor interface”, Fluid Dyn, 46:5 (2011), 754
Vladimir V. Kuznetsov, “Usloviya perenosa tepla i massy na granitse razdela zhidkost-gaz pri diffuzionnom isparenii”, Zhurn. SFU. Ser. Matem. i fiz., 3:2 (2010), 216–227
D. Ogawa, I. Saraf, A. Sra, R. Timmons, M. Goeckner, L. Overzet, “The direct injection of liquid droplets into low pressure plasmas”, J Vac Sci Technol A, 27:2 (2009), 342
A. A. Kostikov, A. V. Latyshev, A. A. Yushkanov, “Chemical potential jump during evaporation of a Fermi gas”, Tech Phys, 54:4 (2009), 443
N. I. Alekseev, Yu. G. Osipov, S. V. Polovtsev, S. A. Kernozhitskaya, A. K. Sirotkin, N. A. Charykov, “The optimization of the procedure for the preparation of nanotubes under self-propagating high-temperature synthesis conditions: The influence of catalysts and reagents”, Russ. J. Phys. Chem. A, 82:5 (2008), 807
D. Jakubczyk, M. Zientara, K. Kolwas, M. Kolwas, “Temperature Dependence of Evaporation Coefficient for Water Measured in Droplets in Nitrogen under Atmospheric Pressure”, J Atmos Sci, 64:3 (2007), 996
A. V. Latyshev, A. A. Yushkanov, “Influence of the coefficient of vaporization on the parameters of the gas near the surface”, J Eng Phys Thermophys, 80:2 (2007), 339
L. V. Andreeva, A. S. Novoselova, P. V. Lebedev-Stepanov, D. A. Ivanov, A. V. Koshkin, A. N. Petrov, M. V. Alfimov, “Crystallization of solutes from droplets”, Tech Phys, 52:2 (2007), 164
S.S. Sazhin, I.N. Shishkova, A.P. Kryukov, V.Yu. Levashov, M.R. Heikal, “Evaporation of droplets into a background gas: Kinetic modelling”, International Journal of Heat and Mass Transfer, 50:13-14 (2007), 2675
L.V. Andreeva, A.V. Koshkin, P.V. Lebedev-Stepanov, A.N. Petrov, M.V. Alfimov, “Driving forces of the solute self-organization in an evaporating liquid microdroplet”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 300:3 (2007), 300
K. Ramamurthi, S. Sunil Kumar, B.S. Chaitanya, “Interface conditions governing evaporation of stored liquids in presence of non-condensable gas”, International Journal of Heat and Mass Transfer, 49:19-20 (2006), 3583
V. V. Ryazanov, “Statistical theory of evaporation and condensation processes in liquid droplets”, Colloid J, 68:2 (2006), 217
L. V. Andreeva, D. A. Ivanov, D. S. Ionov, A. V. Koshkin, P. V. Lebedev-Stepanov, O. Yu. Rybakov, A. S. Sinitsky, A. N. Petrov, M. V. Alfimov, “Investigations of crystallization of solutions in microdroplets on an Affymetrix GMS 417 Arrayer device”, Instrum Exp Tech, 49:6 (2006), 860
A.E. Muthunayagam, K. Ramamurthi, J. Robert Paden, “Modelling and experiments on vaporization of saline water at low temperatures and reduced pressures”, Applied Thermal Engineering, 25:5-6 (2005), 941
V. Babin, R. Hołyst, “Evaporation of a thin liquid film”, J Chem Phys, 122:2 (2005), 024713
Ö. Nordhage, Z.-K. Li, C.-J. Fridén, G. Norman, U. Wiedner, “On the behavior of micro-spheres in a hydrogen pellet target”, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 546:3 (2005), 391
Zientara M., Jakubczyk D., Derkachov G., Kolwas K., Kolwas M., “Simultaneous Determination of MASS and Thermal Accommodation Coeincients From Temporal Evolution of an Evaporating Water Microdroplet”, J. Phys. D-Appl. Phys., 38:12 (2005), 1978–1983
Babin V., Holyst R., “Evaporation of a Sub-Micrometer Droplet”, J. Phys. Chem. B, 109:22 (2005), 11367–11372
Jakubczyk D., Zientara M., Derkachov G., Kolwas K., Kolwas M., “Light Scattering by Microdroplets of Water and Water Suspensions”, 5th Workshop on Atomic and Molecular Physics, Proceedings of the Society of Photo-Optical Instrumentation Engineers (SPIE), 5849, eds. Kwela J., Drozdowski R., Wasowicz T., SPIE-Int Soc Optical Engineering, 2005, 62–69
G. Fridman, Mengyan Li, P.I. Lelkes, G. Friedman, A. Fridman, A.F. Gutsol, “Nonthermal plasma bio-active liquid micro and nano-xerography”, IEEE Trans. Plasma Sci., 33:3 (2005), 1061
A. V. Latyshev, A. A. Yushkanov, “Analytical solution of the problem of concentration jump during evaporation of a binary mixture”, Tech Phys Lett, 30:12 (2004), 1023
P. A. Aleksandrov, V. I. Kalechits, E. S. Khozyasheva, P. V. Chechuev, “Detecting small leaks in pipes in nuclear power plants by measuring aerosol parameters”, At Energy, 97:3 (2004), 620
Jakubczyk D., Zientara M., Derkachov G., Kolwas K., Kolwas M., “Investigation of the Evolution of the Charged Water Droplets in the Electrodynamic Trap”, Tenth Joint International Symposium on Atmospheric and Ocean Optics/Atmospheric Physics, Pt 2: Laser Sensing and Atmospheric Physics, Proceedings of the Society of Photo-Optical Instrumentation Engineers (SPIE), 5397, eds. Matvienko G., Krekov G., SPIE-Int Soc Optical Engineering, 2004, 23–33
P. A. Aleksandrov, V. I. Kalechits, E. S. Khozyasheva, P. V. Chechuev, “Detecting small leaks in pipes in nuclear power plants by measuring aerosol parameters”, At Energy, 97:3 (2004), 620
A. V. Kozyrev, A. G. Sitnikov, “Vaporization of Small Spherical Drops in a Gas”, Russian Physics Journal, 47:3 (2004), 300
A. V. Kozyrev, A. G. Sitnikov, “Evaporation of Charged Drops”, Russian Physics Journal, 46:7 (2003), 646