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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
A. Aksenov, S. Timushev, D. Klimenko, S. Fedoseev, P. Moshkov, “Numerical modelling of noise generation by different propeller configurations of a multicopter”, Matem. Mod., 36:2 (2024), 99–112 ; Math. Models Comput. Simul., 16:4 (2024), 586–597 |
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2023 |
2. |
A. A. Aksenov, S. V. Zhluktov, M. D. Kalugina, V. S. Kashirin, A. I. Lobanov, D. V. Shaurman, “Reduced mathematical model of blood coagulation taking into account thrombin activity switching as a basis for estimation of hemodynamic effects and its implementation in FlowVision package”, Computer Research and Modeling, 15:4 (2023), 1039–1067 |
3. |
A. A. Aksenov, M. D. Kalugina, A. I. Lobanov, V. S. Kashirin, “Numerical simulation of fluid flow in a blood pump in the FlowVision software package”, Computer Research and Modeling, 15:4 (2023), 1025–1038 |
4. |
A. A. Aksenov, S. V. Zhluktov, V. I. Pokhilko, K. E. Sorokin, “Implicit algorithm for solving equations of motion of incompressible fluid”, Computer Research and Modeling, 15:4 (2023), 1009–1023 |
5. |
A. A. Aksenov, V. I. Pokhilko, A. P. Moryak, “Usage of boundary layer grids in numerical simulations of viscous phenomena in of ship hydrodynamics problems”, Computer Research and Modeling, 15:4 (2023), 995–1008 |
6. |
A. A. Aksenov, V. S. Kashirin, S. F. Timushev, E. V. Shaporenko, “Development of acoustic-vortex decomposition method for car tyre noise modelling”, Computer Research and Modeling, 15:4 (2023), 979–993 |
7. |
K. E. Sorokin, A. A. Aksenov, S. V. Zhluktov, A. A. Babulin, V. I. Shevyakov, “Methodology of aircraft icing calculation in a wide range of climate and speed parameters. Applicability within the NLG-25 airworthiness standards”, Computer Research and Modeling, 15:4 (2023), 957–978 |
8. |
M. T. Abshaev, A. M. Abshaev, A. A. Aksenov, J. V. Fisher, A. E. Shchelyaev, “Simulation results of field experiments on the creation of updrafts for the development of artificial clouds and precipitation”, Computer Research and Modeling, 15:4 (2023), 941–956 |
9. |
I. D. Fadeev, A. A. Aksenov, I. V. Dmitrieva, V. R. Nizamutdinov, V. V. Paholkov, S. A. Rogozhkin, M. L. Sazonova, S. F. Shepelev, “Development of a methodological approach and numerical simulation of thermal-hydraulic processes in the intermediate heat exchanger of a BN reactor”, Computer Research and Modeling, 15:4 (2023), 877–894 |
10. |
V. G. Ardaniani, T. V. Markova, A. A. Aksenov, M. A. Kochetkov, V. Yu. Volkov, L. A. Golibrodo, A. A. Krutikov, O. V. Kudryavtsev, “CFD-modeling of heat exchange beams with eutectic lead-bismuth alloy”, Computer Research and Modeling, 15:4 (2023), 861–875 |
11. |
A. A. Aksenov, N. A. Alexandrova, A. V. Budnikov, M. N. Zhestkov, M. L. Sazonova, M. A. Kochetkov, “Simulation of multi-temperature flows turbulent mixing in a T-junctions by the LES approach in FlowVision software package”, Computer Research and Modeling, 15:4 (2023), 827–843 |
12. |
A. A. Aksenov, S. F. Timushev, D. V. Klimenko, S. Yu. Fedoseev, “Application of acoustic-vortex method for CFD-CAA modelling of multicopter noise”, Matem. Mod., 35:6 (2023), 14–36 ; Math. Models Comput. Simul., 15:6 (2023), 1059–1074 |
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2020 |
13. |
A. L. Mitin, S. V. Kalashnikov, E. A. Yankovskiy, A. A. Aksenov, S. V. Zhluktov, S. A. Chernyshev, “Methodical questions of numerical simulation of external flows on locally-adaptive grids using wall functions”, Computer Research and Modeling, 12:6 (2020), 1269–1290 |
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14. |
K. E. Sorokin, P. M. Byval'tsev, A. A. Aksenov, S. V. Zhluktov, D. V. Savitskiy, A. A. Babulin, V. I. Shevyakov, “Numerical simulation of ice accretion in FlowVision software”, Computer Research and Modeling, 12:1 (2020), 83–96 |
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2018 |
15. |
S. V. Zhluktov, A. A. Aksenov, D. V. Savitskiy, “High-Reynolds number calculations of turbulent heat transfer in FlowVision software”, Computer Research and Modeling, 10:4 (2018), 461–481 |
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2017 |
16. |
A. A. Aksenov, S. V. Zhluktov, E. E. Son, A. A. Tokar', V. S. Karpenko, “Solving fluid-structure interaction problems using the FlowVision and CAE Fidesys software packages”, Chebyshevskii Sb., 18:3 (2017), 28–43 |
17. |
A. A. Aksenov, S. V. Zhluktov, V. V. Shmelev, E. V. Shaporenko, S. F. Shepelev, S. A. Rogozhkin, A. N. Krylov, “Numerical investigations of mixing non-isothermal streams of sodium coolant in T-branch”, Computer Research and Modeling, 9:1 (2017), 95–110 |
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18. |
A. A. Aksenov, S. V. Zhluktov, V. V. Shmelev, M. N. Zhestkov, S. A. Rogozhkin, V. V. Paholkov, S. F. Shepelev, “Development of methodology for computational analysis of thermo-hydraulic processes proceeding in fast-neutron reactor with FlowVision CFD software”, Computer Research and Modeling, 9:1 (2017), 87–94 |
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19. |
A. A. Aksenov, “Flowvision: industrial computational fluid dynamics”, Computer Research and Modeling, 9:1 (2017), 5–20 |
40
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20. |
T. V. Markova, A. A. Aksenov, S. V. Zhluktov, D. V. Savitskiy, A. D. Gavrilov, É. E. Son, “Numerical simulation of gas flow past scale model of hypersonic vehicle in wind tunnel”, High Temperature, 55:2 (2017), 280–285 |
3
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2016 |
21. |
S. V. Zhluktov, A. A. Aksenov, P. I. Karasev, “Modeling separated flow with use of two-equation turbulence model”, Computer Research and Modeling, 8:1 (2016), 79–88 |
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2015 |
22. |
S. V. Zhluktov, A. A. Aksenov, “Wall functions for high-reynolds calculations in flowvision software”, Computer Research and Modeling, 7:6 (2015), 1221–1239 |
18
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2014 |
23. |
S. A. Rogozhkin, A. A. Aksenov, S. V. Zhluktov, S. L. Osipov, I. D. Fadeev, E. V. Shaporenko, S. F. Shepelev, V. V. Shmelev, “Use of URANS approach for determination of temperature fluctuations when mixing triple-jet sodium at different temperatures”, Computer Research and Modeling, 6:6 (2014), 923–935 |
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24. |
S. V. Zhluktov, A. A. Aksenov, P. I. Karasev, “Modeling bypass transition within $k-\varepsilon$ approach”, Computer Research and Modeling, 6:6 (2014), 879–888 |
12
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25. |
A. A. Aksenov, “Editor's note”, Computer Research and Modeling, 6:6 (2014), 877–878 |
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2012 |
26. |
P. I. Karasev, A. S. Shishaeva, A. A. Aksenov, “Algorithm of mesh adaptation for accurate aerodynamic simulation in CFD code FlowVision”, Vestn. YuUrGU. Ser. Vych. Matem. Inform., 2012, no. 2, 46–58 |
1
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2010 |
27. |
A. A. Aksenov, A. S. Shishaeva, “Modeling of interaction between a moving structure and a fluid flow using
near-wall damping coefficients”, Num. Meth. Prog., 11:4 (2010), 366–372 |
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28. |
S. V. Zhluktov, A. A. Aksenov, S. A. Kharchenko, I. V. Moskalev, G. B. Sushko, A. S. Shishaeva, “Modeling of separated flows in CFD software FlowVision-HPC”, Num. Meth. Prog., 11:3 (2010), 234–245 |
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2009 |
29. |
A. A. Aksenov, A. A. Dyadkin, S. A. Kharchenko, “A study on efficiency of algorithms for calculating the flows bounded by moving solids and free surfaces implemented in FlowVision on distributed memory computers”, Num. Meth. Prog., 10:1 (2009), 132–140 |
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2023 |
30. |
A. A. Aksenov, T. V. Markova, “In memory of A. P. Tishin — scientist, engineer, teacher and friend”, Computer Research and Modeling, 15:4 (2023), 1091–1094 |
31. |
A. A. Aksenov, S. V. Zhluktov, V. S. Kashirin, M. L. Sazonova, S. G. Chernyi, E. A. Drozdova, A. A. Rode, “Numerical modeling of raw atomization and vaporization by flow of heat carrier gas in furnace technical carbon production into FlowVision”, Computer Research and Modeling, 15:4 (2023), 921–939 |
32. |
S. V. Zhluktov, A. A. Aksenov, N. S. Kuranosov, “Simulation of turbulent compressible flows in the FlowVision software”, Computer Research and Modeling, 15:4 (2023), 805–825 |
33. |
A. A. Aksenov, “Editor’s note”, Computer Research and Modeling, 15:4 (2023), 801–803 |
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