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Dorodnicyn Ludwig Watslavovich

Publications in Math-Net.Ru

  1. The technique for modeling artificial turbulent fields by high-accuracy schemes on curvilinear grids in the presence of rigid boundaries

    Keldysh Institute preprints, 2025, 020, 20 pp.
  2. High-precision acoustic simulation of a turbulent flow over a curved body

    Russian Journal of Cybernetics, 6:4 (2025),  17–23
  3. Study of the turbulent velocity field evolutionary models based on the autocorrelation analysis

    Keldysh Institute preprints, 2022, 093, 18 pp.
  4. Direct tensor filter method for synthetic turbulent field generation

    Keldysh Institute preprints, 2021, 095, 15 pp.
  5. Generation of anisotropic turbulent velocity fields based on the randomized spectral method

    Mat. Model., 33:7 (2021),  35–46
  6. Stochastic algorithm for generation of a divergence-free anisotropic homogeneous turbulent velocity fluctuation field

    Keldysh Institute preprints, 2020, 118, 17 pp.
  7. Validation of stochastic algorithm for generation of a turbulent velocity fluctuation field based on the randomized spectral method

    Keldysh Institute preprints, 2020, 109, 18 pp.
  8. Generation of three-dimensional homogeneous isotropic turbulent velocity fields based on the randomized spectral method

    Mat. Model., 31:10 (2019),  49–62
  9. Generation of three-dimensional turbulent velocity fields on the base of a randomized spectral method

    Keldysh Institute preprints, 2018, 221, 18 pp.
  10. Using high-accuracy aeroacoustic schemes on regular grids for simulation of viscous flows

    Mat. Model., 29:1 (2017),  63–83
  11. High-accuracy finite-difference boundary conditions for two-dimensional aeroacoustic problems

    Mat. Model., 23:11 (2011),  131–154
  12. Nonreflecting boundary conditions and numerical simulation of external flows

    Zh. Vychisl. Mat. Mat. Fiz., 51:1 (2011),  152–169
  13. Stochastic quasi gas dynamics equations. Viscous gas case

    Mat. Model., 22:12 (2010),  49–64
  14. Comparison of nonreflecting boundary conditions as applied to an external oscillating source problem

    Mat. Model., 19:8 (2007),  55–65
  15. Nonreflecting boundary conditions and their application to subsonic gas dynamics

    Mat. Model., 18:5 (2006),  49–62
  16. Approximations of the quasi-gas-dynamic system of equations resulting in explicit algorithms

    Mat. Model., 18:4 (2006),  77–88
  17. Artificial boundary conditions for numerical simulation of subsonic gas flows

    Zh. Vychisl. Mat. Mat. Fiz., 45:7 (2005),  1251–1278
  18. On stability of small oscillations in a quasi-dynamic system of equations

    Zh. Vychisl. Mat. Mat. Fiz., 44:7 (2004),  1299–1305
  19. On a new version of the quasi-gas-dynamic system of equations

    Mat. Model., 15:1 (2003),  78–86
  20. The entropy theorem for a family of quasi-gas-dynamic systems of equations

    Mat. Model., 14:11 (2002),  3–9
  21. Transparent boundary conditions for systems of equations of gas dynamics

    Zh. Vychisl. Mat. Mat. Fiz., 42:4 (2002),  522–549
  22. Kinetically consistent difference schemes and quasi-gas-dynamic model for dense gas and liquid flows

    Mat. Model., 13:4 (2001),  47–57
  23. Kinetically consistent schemes for simulations of viscous gas flows

    Zh. Vychisl. Mat. Mat. Fiz., 40:12 (2000),  1875–1889
  24. On implicit kinetically consistent schemes

    Mat. Model., 11:7 (1999),  64–74
  25. Kinetically consistent schemes in gas dynamics

    Mat. Model., 11:5 (1999),  84–100
  26. On an implicit scheme for simulation of low Mach number gas flow

    Mat. Model., 9:5 (1997),  108–118
  27. Kinetically compatible difference schemes for modelling reacting flows

    Zh. Vychisl. Mat. Mat. Fiz., 33:12 (1993),  1864–1878
  28. Direct numerical modeling of the Blasius problem

    Differ. Uravn., 24:7 (1988),  1107–1113


© Steklov Math. Inst. of RAS, 2026