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DSc Eugene D. Nikitin


     Birth Information Karabash, Chelyabinsk region, USSR, 01/18/1950

     Education BScEng, Ural Polytechnical Institute, Sverdlovsk, 1967-1973

     Professional Certification

  • DSc, Ural State Technical University, Ekaterinburg, 1999
  • Senior Research Scientist, Institute of Thermal Physics, Ekaterinburg, 1990
  • PhD, Ural Polytechnical Institute, Sverdlovsk, 1981

     Career History
  • Leading Research Scientist, Institute of Thermal Physics, Ekaterinburg, 1999/current
  • Senior Research Scientist, Institute of Thermal Physics, Ekaterinburg, 1982/1999
  • Junior Research Scientist, Institute of Thermal Physics, Sverdlovsk, 1973/1982

     Awards

     Diploma of the USSR Academy of Sciences for Young Scientists, 1983

     Main Topics of Scientific Interest
  • Phase Transitions
    • Liquid-Vapor Phase Transitions
      • Boiling-up of Superheated Liquids
        • Boiling-up of Superheated Liquids with Chemical Reactions
  • Critical Phenomena
    • Vapor-Liquid Critical Point
      • Measurement of Critical Properties of Substances
        • Measurement of Critical Properties of Thermally Unstable Substances
      • Methods of Calculation of Critical Properties
  • Equations of State for Chain Fluids

     Eugene Nikitin is the author of more than 80 scientific publications, including 1 book and 3 patents

     Selected Publications
  1. Bobryshev V.P., Mashkovtsev V.P., Nikitin E.D., Okonishnikov G.B., Pavlov P.A., Skripov P.V. Thermophysical Properties of Components of Composite Rocket Propellants, Explosive Boiling-up, and Combustion. NPO Inform TEI Press: Moscow, 1992.

  2. Bulanov N.V., Nikitin E.D., and Skripov V.P. Thermal Conductivity of Liquids in Metastable State. Inzh-Fiz. Zh. 1974, 26, N2, c. 204-207

  3. Skripov V., Ermakov G., Sinitsin E., Pavlov P., Baidakov V., Bulanov N., Danilov N., Nikitin E. Superheated liquids: Thermophysical Properties, Homogeneous Nucleation and Explosive Boiling-up. ASME Paper N 77-HT-87, AIChE-ASME Heat Transfer Conf., Salt Lake City, August 15-17, 1977. 12 pp.

  4. Nikitin E.D., Pavlov P.A. Stability of the Liquid-Vapor Interface. Heat Transfer - Soviet Research. 1979, c. 62-66

  5. Pavlov P.A. and Nikitin E.D. Kinetics of Nucleation in Superheated Water. Teplofiz. Vys. Temp. 1980, 18, N2, c. 354-358

  6. Nikitin E.D. and Pavlov P.A. Density of Boiling Centers in Water on a Platinum Heater. Teplofiz. Vys. Temp. 1980, 18, N6, c. 1237-1241

  7. Nikitin E.D., Pavlov P.A., and Popov A.P. Polyethylsiloxanes Critical Parameters and Attainable Superheat. High Temp. 1988, 26, N6, c. 1090-1093

  8. Nikitin E.D., and Bessonova N.V. Vaporization in Superheated Oligomer and Polymer Liquids. J. Eng. Phys. Thermodyn. 1992, 62, N2, c. 271-275

  9. Nikitin E.D., Pavlov P.A., and Skripov P.V. Measurement of the Critical Properties of Thermally Unstable Substances and Mixtures by the Pulse-Heating Method. J. Chem. Thermodyn. 1993, 25, p. 869-880

  10. Nikitin E.D., Pavlov P.A., and Bessonova N.V. Critical Constants of n-Alkanes with from 17 to 24 Carbon Atoms. J. Chem. Thermodyn. 1994, 26, p. 177-182

  11. Pavlov P.A., Nikitin E.D. On the Estimation of the Thermodynamical Critical Pressure of Long-Chain Liquids. Physics-Doklady. 1994, 337, N2, c. 187-188

  12. Nikitin E.D., Pavlov P.A., and Popov A.P. (Vapour + Liquid) Critical Properties and Acentric Factors of Five Low-Molar-Mass Methylphenylsiloxanes. J. Chem. Thermodyn. 1994, 26, p. 1047-1050

  13. Nikitin E.D., Pavlov P.A., and Popov A.P. (Gas + Liquid) Critical Temperatures and Pressures of Polyethene Glycols from to. J. Chem. Thermodyn. 1995, 27, p. 43-51

  14. Nikitin E.D., Pavlov P.A., Popov A.P., Nikitina H.E. Critical Properties of Hydrogen Peroxide Determined from Direct Measurements. J. Chem. Thermodyn. 1995, 27, p. 945-952

  15. Nikitin E.D., Pavlov P.A., and Skripov P.V. Estimation of the Critical Constants of Long-Chain Normal Alkanes. Inter. J. Thermophys. 1996, 17, N2, p. 455-469

  16. Nikitin E.D., Pavlov P.A., and Popov A.P. Vapour-Liquid Critical Temperatures and Pressures of Normal Alkanes with from 19 to 36 Carbon Atoms, Naphthalene and m-Terphenyl Determined by the Pulse-Heating Technique. Fluid Phase Equilib. 1997, 141, p. 155-164

  17. Nikitin E.D. The Critical Properties of Thermally Unstable Substances: Measurement Methods, Some Results and Correlations. High Temp. 1998, 36, N2, c. 322-337

  18. Nikitin E.D., Pavlov P.A., and Popov A.P. Critical Temperatures and Pressures of 1-Alkanols with 13 to 22 Carbon Atoms. Fluid Phase Equilib. 1998, 149, p. 223-232

  19. Nikitin E.D., Pavlov P.A., and Popov A.P. Liquid-Vapor Phase Transition in the Front of Chemical Reaction between Aqueous Solutions of Hydrogen Peroxide and Potassium Permanganate. High Temp. 1998, 36, N4, c. 565-571

  20. Yakoumis I.V., Nikitin E.D., and Kontogeorgis G.M. Validation of a Recent Generalized Expression of vs. the van der Waals Surface Area According to Recent Measurements. Fluid Phase Equilib. 1998, 153, p. 23-27

  21. Nikitin E.D., Pavlov P.A., and Skutin M.G. Acoustic Method of Measuring Critical Properties of Thermally Unstable Substances. Fluid Phase Equilib. 1999, 161, p. 119-134

  22. Nikitin E.D., Popov A.P. Critical Temperatures and Pressures of Linear Alk-1-enes with 13 to 20 Carbon Atoms Using the Pulse-Heating Technique. Fluid Phase Equilib. 1999, 166, p. 237-243

  23. Nikitin E.D. Asymptotic Behaviour of the Critical Properties of Substances Consisting of Long Chain Molecules. High Temp. 2000, 38, N2, c. 337-340

  24. Nikitin E.D. and Pavlov P.A. Van der Waals Chain Molecule Fluid in Self-Consistent Field Approximation: Some Thermal Properties. High Temp. 2000, 38, N5, c. 716-723

  25. Nikitin E.D. and Pavlov P.A. Boiling of Thermally Unstable Liquids in Processes with Rapid Heating. High Temp. 2000, 38, N6, c. 915-919

  26. Nikitin E.D., Pavlov P.A, and Popov A.P. Critical Temperatures and Pressures of Some Alkanoic Acids (C2 to C22) Using the Pulse-Heating Method. Fluid Phase Equilib. 2001, 39, N1, c. 97-100

  27. Nikitin E.D., Pavlov P.A, and Popov A.P. Critical Temperatures and Pressures of Some Alkanoic Acids (C2 to C22) Using the Pulse-Heating Method. Fluid Phase Equilib. 2001, 189, p. 151-161

  28. Nikitin E.D., Pavlov P.A, and Popov A.P. Temperatures of the Attainable Superheat of Some Thermally Unstable Liquids. Inter. J. Thermophys. 2002, 23, N2, p. 529-541

  29. Nikitin E.D., Popov A.P., Bogatishcheva N.S., Yatluk Y.G. Vapor-Liquid Critical Properties of n-Alkylbenzenes from Toluene to 1-Phenyltridecane. J. Chem. Eng. Data. 2002, 47, N4, p. 1012-1016

  30. Nikitin E.D., Popov A.P., and Bogatishcheva N.S. Critical Point Measurements for Five n-Alkylcyclohexanes (C6 to C10) by the Pulse-Heating Method. J. Chem. Eng. Data. 2003, 48, N5, p. 1137-1140

  31. Nikitin E.D., Popov A.P., Bogatishcheva N.S., Yatluk Y.G. Critical Temperatures and Pressures of Straight-Chain Saturated Dicarboxylic Acids (C4 to C14). J. Chem. Eng. Data, 2004, 49, p. 1515-1520

     Contact Information

     Institute of Thermal Physics,
     Ural Branch of the Russian Academy of Sciences
     Amundsena Street, 106
     Ekaterinburg, 620016
     Russia
     Tel: +7-343-2678810
     Fax: +7-343-2678800
     E-mail: e-nikitin@mail.ru
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