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Kashevarov Aleksei Vasil'evich

Publications in Math-Net.Ru

  1. Discrete-drop mode of ice accretion on a cylinder in transverse supercooled flow

    Zhurnal Tekhnicheskoi Fiziki, 90:1 (2020),  46–52
  2. Droplet dynamics on a body surface in a gas flow

    TVT, 57:2 (2019),  246–252
  3. On the hydrothermodynamics of the icing of a wing profile in the air-crystalline flow

    Zhurnal Tekhnicheskoi Fiziki, 88:6 (2018),  808–814
  4. Modeling of ice growth on the airfoil surface in an air flow containing ice particles

    Prikl. Mekh. Tekh. Fiz., 59:4 (2018),  80–88
  5. Hydro-thermodynamics of a liquid film with crystals on the body surface in an air flow containing ice particles

    Prikl. Mekh. Tekh. Fiz., 58:2 (2017),  103–114
  6. Model analysis of the stresses in the interior of an ice slab upon the body moving in electrically charged supercooled clouds

    Matem. Mod., 25:2 (2013),  86–96
  7. Characterization of a spherical probe in gas at rest upon ionization of alkali metals: The nonisothermal case

    TVT, 50:5 (2012),  700–704
  8. Mathieu functions and coulomb spheroidal functions in the electrostatic probe theory

    Zh. Vychisl. Mat. Mat. Fiz., 51:12 (2011),  2269–2278
  9. Temperature and stress field modeling in accreted ice on the cylinder in a supercooled gas-drop flow

    Matem. Mod., 22:10 (2010),  119–126
  10. Forced crystallization of drops in front of a body, moving in a supercooled cloud

    Matem. Mod., 22:2 (2010),  139–147
  11. Characteristic of a spherical probe in a stationary gas during ionization of alkaline metals

    Prikl. Mekh. Tekh. Fiz., 51:5 (2010),  17–24
  12. The saturation current to a double spherical probe in stationary collisional plasma

    TVT, 48:5 (2010),  788–789
  13. The charge and potential of dust particle in plasma under conditions of diffusion charging

    TVT, 46:5 (2008),  657–663
  14. Probe Diagnostics of Dusty Plasma

    TVT, 40:5 (2002),  702–705
  15. The characteristic of a probe in moving collisional plasma for the flow stagnation point

    TVT, 39:3 (2001),  381–386
  16. Heat transfer under conditions of plane potential flow past obstacles

    TVT, 38:5 (2000),  775–779
  17. A problem of nonstationary theory of electric probe in collision plasma: Analytical solution

    TVT, 38:1 (2000),  147–149
  18. Electric-probe diagnostics of two-temperature collision plasma

    TVT, 37:1 (1999),  150–152
  19. The use of electric probes for diagnostics of seeded flame plasma

    TVT, 36:5 (1998),  700–705
  20. Heat transfer from a cylinder and a plate to a liquid with a low Prandtl number

    TVT, 36:2 (1998),  260–266
  21. The second Painlevé equation in the electrostatic-probe theory: Numerical solutions

    Zh. Vychisl. Mat. Mat. Fiz., 38:6 (1998),  992–1000
  22. Characterization of a cooled cylindrical probe in a slowly-moving plasma at large potentials

    TVT, 34:4 (1996),  519–524
  23. The saturation current density at the critical point of an electric probe

    TVT, 33:1 (1995),  140–144
  24. Cooled cylindrical Langmuir probe in a slowly moving plasma

    Prikl. Mekh. Tekh. Fiz., 35:4 (1994),  3–12
  25. Volt-ampere characteristics of a cylindrical Langmuir probe in a slowly moving plasma form high probe potentials

    TVT, 32:2 (1994),  173–176
  26. Effect of recombination kinetics on the saturation current of a Langmuir probe in a seeded plasma flame

    TVT, 32:1 (1994),  12–15
  27. Voltage-current characteristics of a cylindrical Langmuir probe in a slowly moving plasma

    Prikl. Mekh. Tekh. Fiz., 34:2 (1993),  3–10
  28. Determination of charged particle concentration in the plasma of barium-seeded flame

    TVT, 31:2 (1993),  190–193
  29. О зондовых измерениях в плазме пламени

    TVT, 30:6 (1992),  1220–1223
  30. Ion saturation current to electric probes in flame plasmas with an alkali additive

    TVT, 30:3 (1992),  448–456
  31. Ion current saturation on electric probes in plasma flows at low Reynolds numbers

    Prikl. Mekh. Tekh. Fiz., 31:1 (1990),  159–163
  32. Measurement of the charged-particle density in a flame plasma with a cylindrical Langmuir probe

    TVT, 26:3 (1988),  577–581

  33. Капля, отвердевающая в поле центробежных сил

    Kvant, 2023, no. 3,  43–44
  34. Полет в кристаллическом облаке

    Kvant, 2017, no. 3,  30–32


© Steklov Math. Inst. of RAS, 2024