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Publications in Math-Net.Ru
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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.
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High-precision acoustic simulation of a turbulent flow over a curved body
Russian Journal of Cybernetics, 6:4 (2025), 17–23
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Study of the turbulent velocity field evolutionary models based on the autocorrelation analysis
Keldysh Institute preprints, 2022, 093, 18 pp.
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Direct tensor filter method for synthetic turbulent field generation
Keldysh Institute preprints, 2021, 095, 15 pp.
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Generation of anisotropic turbulent velocity fields based on the randomized spectral method
Mat. Model., 33:7 (2021), 35–46
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Stochastic algorithm for generation of a divergence-free anisotropic homogeneous turbulent velocity fluctuation field
Keldysh Institute preprints, 2020, 118, 17 pp.
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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.
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Generation of three-dimensional homogeneous isotropic turbulent velocity fields based on the randomized spectral method
Mat. Model., 31:10 (2019), 49–62
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Generation of three-dimensional turbulent velocity fields on the base of a randomized spectral method
Keldysh Institute preprints, 2018, 221, 18 pp.
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Using high-accuracy aeroacoustic schemes on regular grids for simulation of viscous flows
Mat. Model., 29:1 (2017), 63–83
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High-accuracy finite-difference boundary conditions for two-dimensional aeroacoustic problems
Mat. Model., 23:11 (2011), 131–154
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Nonreflecting boundary conditions and numerical simulation of external flows
Zh. Vychisl. Mat. Mat. Fiz., 51:1 (2011), 152–169
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Stochastic quasi gas dynamics equations. Viscous gas case
Mat. Model., 22:12 (2010), 49–64
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Comparison of nonreflecting boundary conditions as
applied to
an external oscillating source problem
Mat. Model., 19:8 (2007), 55–65
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Nonreflecting boundary conditions and their application
to subsonic gas dynamics
Mat. Model., 18:5 (2006), 49–62
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Approximations of the quasi-gas-dynamic system of
equations resulting in explicit algorithms
Mat. Model., 18:4 (2006), 77–88
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Artificial boundary conditions for numerical simulation of subsonic gas flows
Zh. Vychisl. Mat. Mat. Fiz., 45:7 (2005), 1251–1278
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On stability of small oscillations in a quasi-dynamic system of equations
Zh. Vychisl. Mat. Mat. Fiz., 44:7 (2004), 1299–1305
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On a new version of the quasi-gas-dynamic system of equations
Mat. Model., 15:1 (2003), 78–86
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The entropy theorem for a family of quasi-gas-dynamic systems of equations
Mat. Model., 14:11 (2002), 3–9
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Transparent boundary conditions for systems of equations of gas dynamics
Zh. Vychisl. Mat. Mat. Fiz., 42:4 (2002), 522–549
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Kinetically consistent difference schemes and quasi-gas-dynamic model for dense gas and liquid flows
Mat. Model., 13:4 (2001), 47–57
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Kinetically consistent schemes for simulations of viscous gas flows
Zh. Vychisl. Mat. Mat. Fiz., 40:12 (2000), 1875–1889
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On implicit kinetically consistent schemes
Mat. Model., 11:7 (1999), 64–74
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Kinetically consistent schemes in gas dynamics
Mat. Model., 11:5 (1999), 84–100
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On an implicit scheme for simulation of low Mach number gas flow
Mat. Model., 9:5 (1997), 108–118
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Kinetically compatible difference schemes for modelling reacting flows
Zh. Vychisl. Mat. Mat. Fiz., 33:12 (1993), 1864–1878
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Direct numerical modeling of the Blasius problem
Differ. Uravn., 24:7 (1988), 1107–1113
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