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Publications in Math-Net.Ru |
Citations |
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2026 |
| 1. |
M. V. Abakumov, I. V. Abalakin, V. A. Isakov, T. K. Kozubskaya, “On implementation of monotonicity preserving reconstruction of variables in EBR schemes”, Mat. Model., 38:1 (2026), 42–58 |
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2025 |
| 2. |
A. V. Lipatov, I. V. Abalakin, “The hinged rotor mechanics”, Keldysh Institute preprints, 2025, 008, 24 pp. |
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2022 |
| 3. |
N. S. Zhdanova, I. V. Abalakin, O. V. Vasilyev, “Generalized Brinkman volume penalization method for compressible flows around moving obstacles”, Mat. Model., 34:2 (2022), 41–57 ; Math. Models Comput. Simul., 14:5 (2022), 716–726 |
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2021 |
| 4. |
V. O. Tsvetkova, I. V. Abalakin, V. G. Bobkov, N. S. Zhdanova, T. K. Kozubskaya, L. N. Kudryavtseva, “Simulation of flow near rotating propeller on adaptive unstructured meshes using immersed boundary method”, Mat. Model., 33:8 (2021), 59–82 ; Math. Models Comput. Simul., 14:2 (2022), 224–240 |
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| 5. |
I. V. Abalakin, O. V. Vasilyev, N. S. Zhdanova, T. K. Kozubskaya, “Characteristic based volume penalization method for numerical simulation of compressible flows on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 61:8 (2021), 1336–1352 ; Comput. Math. Math. Phys., 61:8 (2021), 1315–1329 |
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2020 |
| 6. |
V. G. Bobkov, I. V. Abalakin, T. K. Kozubskaya, “Method for prediction of aerodynamic characteristics of helicopter rotors based on edge-based schemes in code NOISEtte”, Computer Research and Modeling, 12:5 (2020), 1097–1122 |
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| 7. |
A. P. Duben, I. V. Abalakin, V. O. Tsvetkova, “About solid walls boundary conditions for viscous flow problems”, Mat. Model., 32:11 (2020), 79–98 ; Math. Models Comput. Simul., 13:4 (2021), 591–603 |
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| 8. |
I. V. Abalakin, P. A. Bakhvalov, V. G. Bobkov, A. V. Gorobets, “Parallel algorithm for flow simulation in rotor-stator systems based on edge-bases schemes”, Mat. Model., 32:6 (2020), 127–140 ; Math. Models Comput. Simul., 13:1 (2021), 172–180 |
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2019 |
| 9. |
I. V. Abalakin, V. A. Vershkov, N. S. Zhdanova, T. K. Kozubskaya, “Numerical simulation of acoustic fields induced by flow past oscillating solid”, Mat. Model., 31:10 (2019), 98–116 ; Math. Models Comput. Simul., 12:3 (2020), 422–432 |
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| 10. |
I. V. Abalakin, A. P. Duben, N. S. Zhdanova, T. K. Kozubskaya, L. N. Kudryavtseva, “Immersed boundary method on deformable unstructured meshes for airfoil aeroacoustic simulation”, Zh. Vychisl. Mat. Mat. Fiz., 59:12 (2019), 2046–2059 ; Comput. Math. Math. Phys., 59:12 (2019), 1982–1993 |
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2018 |
| 11. |
I. V. Abalakin, V. G. Bobkov, T. K. Kozubskaya, “Multimodel approach for helicopter rotor aeroacoustic and aerodynamic characteristics modeling using numerical simulation”, Keldysh Institute preprints, 2018, 047, 32 pp. |
| 12. |
I. V. Abalakin, A. P. Duben, N. S. Zhdanova, T. K. Kozubskaya, “Simulation of unsteady turbulent flow around a cylinder prescribed by immersed boundary method”, Mat. Model., 30:5 (2018), 117–133 ; Math. Models Comput. Simul., 11:1 (2019), 74–85 |
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| 13. |
I. V. Abalakin, P. A. Bahvalov, O. A. Doronina, N. S. Zhdanova, T. K. Kozubskaya, “Simulation of aerodynamics of a moving body prescribed by immersed boundaries on dynamically adaptative unstructured mesh”, Mat. Model., 30:5 (2018), 57–75 ; Math. Models Comput. Simul., 11:1 (2019), 35–45 |
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| 14. |
I. V. Abalakin, N. S. Zhdanova, T. K. Kozubskaya, “Immersed boundary method for numerical simulation of inviscid compressible flows”, Zh. Vychisl. Mat. Mat. Fiz., 58:9 (2018), 1462–1471 ; Comput. Math. Math. Phys., 58:9 (2018), 1411–1419 |
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2017 |
| 15. |
I. V. Abalakin, V. G. Bobkov, T. K. Kozubskaya, “Implementation the low Mach number method for calculation of flows in the software package NOISEtte”, Mat. Model., 29:4 (2017), 101–112 ; Math. Models Comput. Simul., 9:6 (2017), 688–696 |
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2016 |
| 16. |
I. V. Abalakin, N. S. Zhdanova, S. A. Soukov, “Reconstruction of body geometry on unstructured meshes when using immersed boundary method”, Mat. Model., 28:6 (2016), 77–88 ; Math. Models Comput. Simul., 9:1 (2017), 83–91 |
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2015 |
| 17. |
I. V. Abalakin, P. A. Bahvalov, V. G. Bobkov, T. K. Kozubskaya, V. A. Anikin, “Numerical simulation of aerodynamic and acoustic characteristics of rotor in ring”, Mat. Model., 27:10 (2015), 125–144 ; Math. Models Comput. Simul., 8:3 (2016), 309–324 |
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| 18. |
I. V. Abalakin, N. S. Zhdanova, T. K. Kozubskaya, “The implementation of immersed boundary method for simulation of external flow on unstructured meshes”, Mat. Model., 27:10 (2015), 5–20 ; Math. Models Comput. Simul., 8:3 (2016), 219–230 |
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2014 |
| 19. |
I. V. Abalakin, A. V. Gorobets, N. S. Zhdanova, T. K. Kozubskaya, “Using Brinkman penalization method for numerical simulation viscous compressible flows over obstacles”, Keldysh Institute preprints, 2014, 011, 14 pp. |
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2013 |
| 20. |
I. V. Abalakin, T. K. Kozubskaya, “Higher accuracy scheme based on edge-oriented quasi-1Â reconstruction of variables for solving aerodynamics and aeroacoustics problems on unstructured meshes”, Mat. Model., 25:8 (2013), 109–136 |
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2012 |
| 21. |
I. V. Abalakin, P. A. Bakhvalov, A. V. Gorobets, A. P. Duben, T. K. Kozubskaya, “Parallel research code NOISEtte for large-scale CFD and CAA simulations”, Num. Meth. Prog., 13:3 (2012), 110–125 |
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2007 |
| 22. |
I. V. Abalakin, A. V. Gorobets, T. K. Kozubskaya, “Numerical experiments on acoustic liners”, Mat. Model., 19:8 (2007), 15–21 |
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| 23. |
K. A. Daniel, I. V. Abalakin, T. K. Kozubskaya, “Study of impact of viscous-terms approximation on accuracy of numerical solution of gas dynamics equations”, Mat. Model., 19:7 (2007), 85–92 |
| 24. |
I. V. Abalakin, T. K. Kozubskaya, “High accuracy scheme for solving nonlinear aeroacoustics problems on unstructured meshes”, Mat. Model., 19:7 (2007), 56–66 |
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2005 |
| 25. |
B. N. Chetverushkin, V. A. Gasilov, S. V. Polyakov, E. L. Kartasheva, M. V. Iakobovski, I. V. Abalakin, V. G. Bobkov, A. S. Boldarev, S. N. Boldyrev, S. V. D'yachenko, P. S. Kriniv, A. S. Minkin, I. A. Nesterov, O. G. Olkhovskaya, I. V. Popov, S. A. Sukov, “CFD software project GIMM study of hydrodynamic problems by parallel computing”, Mat. Model., 17:6 (2005), 58–74 |
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2001 |
| 26. |
I. V. Abalakin, A. N. Antonov, M. A. Antonov, T. K. Kozubskaya, B. N. Chetverushkin, “Application of kinetically consistent finite difference schemes for turbulent supersonic jet noise prediction”, Mat. Model., 13:10 (2001), 56–76 |
| 27. |
I. V. Abalakin, A. V. Zhokhova, B. N. Chetverushkin, “Kinetically consistent schemes of a higher accuracy order”, Mat. Model., 13:5 (2001), 53–61 |
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2000 |
| 28. |
I. V. Abalakin, A. V. Zhokhova, B. N. Chetverushkin, “Difference schemes based on kinetic splitting of flux vector”, Mat. Model., 12:4 (2000), 73–82 |
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| 29. |
I. V. Abalakin, A. N. Antonov, I. A. Graur, B. N. Chetverushkin, “Application of the algebraic turbulent model to the unsteady flow simulation around a cavity”, Mat. Model., 12:1 (2000), 45–56 |
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| 30. |
I. V. Abalakin, A. N. Antonov, M. A. Antonov, B. N. Chetverushkin, “Numerical simulation of supersonic jets using kinetical-consistent finite difference schemes”, Mat. Model., 12:1 (2000), 25–37 |
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1998 |
| 31. |
I. V. Abalakin, A. V. Zhokhova, B. N. Chetverushkin, “Kinetically consistent difference algorithm for simulation of gasdynamic flows on triangular meshes”, Mat. Model., 10:4 (1998), 51–60 |
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1997 |
| 32. |
I. V. Abalakin, A. V. Zhokhova, B. N. Chetverushkin, “Kinetically consistent difference schemes on irregular grids”, Mat. Model., 9:7 (1997), 44–53 |
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1996 |
| 33. |
I. V. Abalakin, B. N. Chetverushkin, “Kinetically consistent finite difference schemes as a model for gasdynamic flow description”, Mat. Model., 8:8 (1996), 17–36 |
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1994 |
| 34. |
I. V. Abalakin, B. N. Chetverushkin, “On an improvement of the gas flow description via kinetically-consistent difference schemes”, Mat. Model., 6:7 (1994), 3–14 |
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1993 |
| 35. |
I. V. Abalakin, B. N. Chetverushkin, “Kinetically-consistent finite difference schemes as a model for the flows of slightly rarefied gases”, Mat. Model., 5:5 (1993), 61–70 |
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1992 |
| 36. |
I. V. Abalakin, B. N. Chetverushkin, “Using kinetically-consistent difference schemes for prediction of slightly rarefied gas flows”, Mat. Model., 4:11 (1992), 19–35 |
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| 37. |
I. V. Abalakin, A. B. Babakulov, Kh. A. Muzafarov, M. V. Iakobovski, “Prediction of slightly rarefied gas flows using transputer-based multiprocessor systems”, Mat. Model., 4:11 (1992), 3–18 |
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1988 |
| 38. |
I. V. Abalakin, L. W. Dorodnicyn, T. G. Elizarova, “Direct numerical modeling of the Blasius problem”, Differ. Uravn., 24:7 (1988), 1107–1113 ; Differ. Equ., 24:7 (1988), 701–706 |
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