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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
A. V. Sposobin, “Meshless algorithm for calculating the interaction of large particles with a shock layer in supersonic heterogeneous flows”, Computer Research and Modeling, 14:5 (2022), 1007–1027 |
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2020 |
2. |
D. L. Reviznikov, A. V. Sposobin, I. E. Ivanov, “Comparative analysis of calculated and experimental data on an oscillating flow induced by the gasdynamic interaction of a particle with a shock layer”, TVT, 58:6 (2020), 901–908 ; High Temperature, 58:6 (2020), 839–845 |
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3. |
D. L. Reviznikov, A. V. Sposobin, I. E. Ivanov, “Oscillatory flow regimes resulting from the shock layer–particle interaction”, High Temperature, 58:2 (2020), 278–283 |
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2018 |
4. |
D. L. Reviznikov, A. V. Sposobin, I. E. Ivanov, “A change in the structure of a flow under the action of highly inertial particle when a hypersonic heterogeneous flow passes over a body”, TVT, 56:6 (2018), 908–913 ; High Temperature, 56:6 (2018), 884–889 |
10
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2017 |
5. |
D. L. Reviznikov, A. V. Sposobin, T. Yu. Sukharev, “Numerical simulation of the flow around a blunt body in supersonic polydisperse stream”, TVT, 55:3 (2017), 418–425 ; High Temperature, 55:3 (2017), 400–406 |
14
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2009 |
6. |
V. V. Vinnikov, D. L. Reviznikov, A. V. Sposobin, “Two-phase shock layer in supersonic dusty gas flow”, Matem. Mod., 21:12 (2009), 89–102 ; Math. Models Comput. Simul., 2:4 (2010), 514–525 |
11
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2007 |
7. |
D. L. Reviznikov, A. V. Sposobin, “Numerical simulation of the solid phase impact on the blunt body surface in supersonic dusty flow”, Matem. Mod., 19:11 (2007), 101–111 |
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Organisations |
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