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Most published authors (scientific articles only) of the journal
|
| 1. |
A. A. Aksenov |
21 |
| 2. |
A. V. Gasnikov |
14 |
| 3. |
A. V. Koganov |
14 |
| 4. |
Y. A. Kholodov |
13 |
| 5. |
A. V. Shapovalov |
13 |
| 6. |
S. V. Zhluktov |
12 |
| 7. |
A. I. Lobanov |
12 |
| 8. |
D. A. Bratsun |
11 |
| 9. |
Yu. S. Nayshtut |
11 |
| 10. |
I. B. Petrov |
11 |
| 11. |
V. G. Tsybulin |
11 |
| 12. |
L. V. Yakushevich |
11 |
| 13. |
V. V. Shumov |
10 |
| 14. |
T. V. Yakovleva |
10 |
| 15. |
A. V. Bogdanov |
9 |
| 16. |
V. A. Grachev |
9 |
| 17. |
E. Ya. Frisman |
9 |
| 18. |
M. A. Sheremet |
9 |
| 19. |
F. S. Stonyakin |
9 |
| 20. |
M. S. Alkousa |
8 |
| 21. |
L. E. Varshavsky |
8 |
| 22. |
S. Yu. Malkov |
8 |
| 23. |
I. V. Matyushkin |
8 |
| 24. |
I. I. Potapov |
8 |
| 25. |
G. Yu. Riznichenko |
8 |
| 26. |
A. B. Rubin |
8 |
| 27. |
A. B. Sviridenko |
8 |
| 28. |
V. A. Tenenev |
8 |
| 29. |
A. E. Alekseenko |
7 |
| 30. |
V. A. Andrushchenko |
7 |
| 31. |
I. V. Konyuhov |
7 |
| 32. |
A. Yu. Krainov |
7 |
| 33. |
A. V. Nechaevskiy |
7 |
| 34. |
A. A. Polezhaev |
7 |
| 35. |
T. A. Rakcheeva |
7 |
| 36. |
I. G. Rusyak |
7 |
| 37. |
E. L. Stupitsky |
7 |
| 38. |
A. Yu. Trifonov |
7 |
| 39. |
G. A. Ougolnitsky |
7 |
| 40. |
A. B. Usov |
7 |
| 41. |
P. V. Fursova |
7 |
| 42. |
A. I. Abakumov |
7 |
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20 most published authors of the journal |
|
| Most cited authors of the journal |
| 1. |
A. A. Aksenov |
121 |
| 2. |
S. V. Zhluktov |
77 |
| 3. |
I. L. Kirilyuk |
47 |
| 4. |
I. A. Yevin |
46 |
| 5. |
M. P. Kulakov |
45 |
| 6. |
E. Ya. Frisman |
45 |
| 7. |
G. P. Neverova |
44 |
| 8. |
O. L. Zhdanova |
43 |
| 9. |
O. L. Revutskaya |
42 |
| 10. |
I. B. Petrov |
40 |
| 11. |
V. G. Tsybulin |
40 |
| 12. |
A. V. Gasnikov |
39 |
| 13. |
S. S. Simakov |
39 |
| 14. |
A. Yu. Krainov |
38 |
| 15. |
D. A. Bratsun |
37 |
| 16. |
V. A. Tenenev |
36 |
| 17. |
M. A. Kondrat'ev |
34 |
| 18. |
A. E. Chistyakov |
33 |
| 19. |
G. Yu. Riznichenko |
31 |
| 20. |
A. B. Rubin |
31 |
| 21. |
I. B. Kovalenko |
30 |
| 22. |
F. A. Maximov |
30 |
| 23. |
A. I. Sukhinov |
29 |
| 24. |
L. V. Yakushevich |
29 |
| 25. |
Y. A. Kholodov |
29 |
| 26. |
V. I. Golubev |
27 |
| 27. |
P. I. Karasev |
27 |
| 28. |
A. I. Lobanov |
27 |
| 29. |
A. V. Minakov |
27 |
| 30. |
V. V. Shumov |
27 |
| 31. |
V. A. Andrushchenko |
26 |
| 32. |
I. G. Rusyak |
26 |
| 33. |
A. B. Sviridenko |
26 |
| 34. |
D. M. Ustinin |
25 |
| 35. |
A. S. Katasev |
24 |
| 36. |
A. A. Polezhaev |
24 |
| 37. |
N. I. Khokhlov |
24 |
| 38. |
A. V. Koganov |
23 |
| 39. |
G. G. Malinetskii |
23 |
| 40. |
A. V. Nikitina |
22 |
| 41. |
E. V. Orlova |
22 |
|
20 most cited authors of the journal |
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| Most cited articles of the journal |
| 1. |
Flowvision: industrial computational fluid dynamics A. A. Aksenov Computer Research and Modeling, 2017, 9:1, 5–20 |
44 |
| 2. |
The key approaches and review of current researches on dynamics of structured and interacting populations E. Ya. Frisman, M. P. Kulakov, O. L. Revutskaya, O. L. Zhdanova, G. P. Neverova Computer Research and Modeling, 2019, 11:1, 119–151 |
36 |
| 3. |
Forecasting methods and models of disease spread M. A. Kondrat'ev Computer Research and Modeling, 2013, 5:5, 863–882 |
34 |
| 4. |
Models of production functions for the Russian economy I. L. Kirilyuk Computer Research and Modeling, 2013, 5:2, 293–312 |
34 |
| 5. |
Introduction to the theory of complex networks I. A. Yevin Computer Research and Modeling, 2010, 2:2, 121–141 |
34 |
| 6. |
Modern methods of mathematical modeling of blood flow using reduced order methods S. S. Simakov Computer Research and Modeling, 2018, 10:5, 581–604 |
28 |
| 7. |
Raising convergence order of grid-characteristic schemes for 2D linear elasticity problems using operator splitting V. I. Golubev, A. V. Shevchenko, I. B. Petrov Computer Research and Modeling, 2022, 14:4, 899–910 |
21 |
| 8. |
Theory of self-organization. On the cusp of IV paradigm G. G. Malinetskii Computer Research and Modeling, 2013, 5:3, 315–366 |
21 |
| 9. |
Supersonic flow of system of bodies F. A. Maximov Computer Research and Modeling, 2013, 5:6, 969–980 |
20 |
| 10. |
Wall functions for high-reynolds calculations in flowvision software S. V. Zhluktov, A. A. Aksenov Computer Research and Modeling, 2015, 7:6, 1221–1239 |
19 |
| 11. |
Numerical modeling of ecologic situation of the azov sea with using schemes of increased order of accuracy on multiprocessor computer system A. I. Sukhinov, A. E. Chistyakov, A. A. Semenyakina, A. V. Nikitina Computer Research and Modeling, 2016, 8:1, 151–168 |
18 |
| 12. |
Numerical simulation of heat and mass transfer processes in microchannels using CFD-package $\sigma$Flow A. S. Lobasov, A. V. Minakov Computer Research and Modeling, 2012, 4:4, 781–792 |
17 |
| 13. |
Multi-particle brownian dynamics software ProKSim for protein-protein interactions modeling S. S. Khruschev, A. M. Abaturova, A. N. Diakonova, D. M. Ustinin, D. V. Zlenko, V. A. Fedorov, I. B. Kovalenko, G. Yu. Riznichenko, A. B. Rubin Computer Research and Modeling, 2013, 5:1, 47–64 |
16 |
| 14. |
Modeling separated flow with use of two-equation turbulence model S. V. Zhluktov, A. A. Aksenov, P. I. Karasev Computer Research and Modeling, 2016, 8:1, 79–88 |
15 |
| 15. |
Model for operational optimal control of financial recourses distribution in a company E. V. Orlova Computer Research and Modeling, 2019, 11:2, 343–358 |
14 |
| 16. |
Nonlinear supratransmission in a Pt$_3$Al crystal at intense external influence A. I. Cherednichenko, P. V. Zakharov, M. D. Starostenkov, M. O. Sysoeva, A. M. Eremin Computer Research and Modeling, 2019, 11:1, 109–117 |
14 |
| 17. |
Mathematic modeling of thermal distillation of water in film flowing under vacuum S. M. Tokarev Computer Research and Modeling, 2013, 5:2, 205–211 |
14 |
| 18. |
Regularization, robustness and sparsity of probabilistic topic models K. V. Vorontsov, A. A. Potapenko Computer Research and Modeling, 2012, 4:4, 693–706 |
14 |
| 19. |
Mathematical modeling of SHS process in heterogeneous reactive powder mixtures D. S. Shultz, A. Yu. Krainov Computer Research and Modeling, 2011, 3:2, 147–153 |
14 |
| 20. |
Mathematical modeling of the human capital dynamics K. V. Ketova, Yu. M. Romanovsky, I. G. Rusyak Computer Research and Modeling, 2019, 11:2, 329–342 |
13 |
| 21. |
Parallel implementation of the grid-characteristic method in the case of explicit contact boundaries A. M. Ivanov, N. I. Khokhlov Computer Research and Modeling, 2018, 10:5, 667–678 |
13 |
| 22. |
Regarding the dynamics of cosymmetric predator - prey systems A. V. Epifanov, V. G. Tsybulin Computer Research and Modeling, 2017, 9:5, 799–813 |
12 |
| 23. |
Modeling bypass transition within $k-\varepsilon$ approach S. V. Zhluktov, A. A. Aksenov, P. I. Karasev Computer Research and Modeling, 2014, 6:6, 879–888 |
12 |
| 24. |
Model of cellular automata A. I. Lobanov Computer Research and Modeling, 2010, 2:3, 273–293 |
12 |
| 25. |
Difference scheme for solving problems of hydrodynamics for large grid Peclet numbers A. I. Sukhinov, A. E. Chistyakov, E. A. Protsenko Computer Research and Modeling, 2019, 11:5, 833–848 |
11 |
| 26. |
Neuro-fuzzy model of fuzzy rules formation for objects state evaluation in conditions of uncertainty A. C. Katasev Computer Research and Modeling, 2019, 11:3, 477–492 |
11 |
| 27. |
Cellular automata review based on modern domestic publications I. V. Matyushkin, M. A. Zapletina Computer Research and Modeling, 2019, 11:1, 9–57 |
11 |
| 28. |
Motion control simulating in a viscous liquid of a body with variablegeometry of weights E. V. Vetchanin, V. A. Tenenev Computer Research and Modeling, 2011, 3:4, 371–381 |
11 |
| 29. |
Modelling spatio-temporal dynamics of circadian rythms in Neurospora crassa D. A. Bratsun, A. P. Zakharov Computer Research and Modeling, 2011, 3:2, 191–213 |
11 |
| 30. |
Parallel implementation of a finite-element algorithms on a graphics accelerator in the software package FEStudio S. P. Kopysov, I. M. Kuz'min, N. S. Nedozhogin, A. K. Novikov, V. N. Rychkov, Yu. A. Sagdeeva, L. E. Tonkov Computer Research and Modeling, 2014, 6:1, 79–97 |
10 |
| 31. |
Numerical modeling of flows with flow swirling D. V. Platonov, A. V. Minakov, A. A. Dekterev, A. V. Sentyabov Computer Research and Modeling, 2013, 5:4, 635–648 |
10 |
| 32. |
Mathematical modeling of drying of coal particles in the gas stream I. M. Vasenin, A. Yu. Krainov, A. B. Isaychenkov Computer Research and Modeling, 2012, 4:2, 357–367 |
10 |
| 33. |
Mathematical models of combat and military operations V. V. Shumov, V. O. Korepanov Computer Research and Modeling, 2020, 12:1, 217–242 |
9 |
| 34. |
Quadratic Padé approximation: numerical aspects and applications M. Fasondini, N. Hale, R. Spoerer, J. Weideman Computer Research and Modeling, 2019, 11:6, 1017–1031 |
9 |
| 35. |
CFD analysis of hemodynamics in idealized abdominal aorta-renal artery junction: preliminary study to locate atherosclerotic plaque M. Ameenuddin, M. Anand Computer Research and Modeling, 2019, 11:4, 695–706 |
9 |
| 36. |
Numerical simulation of ethylene combustion in supersonic air flow A. A. Firsov, D. A. Yarantsev, S. B. Leonov, V. V. Ivanov Computer Research and Modeling, 2017, 9:1, 75–86 |
9 |
| 37. |
Modeling of Ñhelyabinsk meteorite fall V. A. Andrushchenko, N. G. Syzranova, Yu. D. Shevelev Computer Research and Modeling, 2013, 5:6, 927–940 |
9 |
| 38. |
Combination of different simulation techniques in the complex model of photosynthetic membrane D. M. Ustinin, I. B. Kovalenko, G. Yu. Riznichenko, A. B. Rubin Computer Research and Modeling, 2013, 5:1, 65–81 |
9 |
| 39. |
Identification of a mathematical model and research of the various modes
of methanogenesis in mesophilic environments S. A. Korolev, D. V. Maikov Computer Research and Modeling, 2012, 4:1, 131–141 |
9 |
| 40. |
Mathematical simulation of non-stationary ventilation processes of coal mining I. M. Vasenin, E. R. Shrager, A. Yu. Krainov, D. Yu. Paleev, O. Yu. Lukashov, V. N. Kosterenko Computer Research and Modeling, 2011, 3:2, 155–163 |
9 |
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20 most cited articles of the journal |
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| Most requested articles of the journal |
|
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| 1. |
Finding equilibrium in two-stage traffic assignment model E. V. Kotlyarova, A. V. Gasnikov, E. V. Gasnikova, D. V. Yarmoshik Computer Research and Modeling, 2021, 13:2, 365–379 | 49 |
| 2. |
Using RAG technology and large language models to search for documents and obtain information in corporate information systems I. V. Antonov, Yu. V. Bruttan Computer Research and Modeling, 2025, 17:5, 871–888 | 32 |
| 3. |
Algorithm for vortices identification based on flow velocity vectors using the simplest mathematical model of vortex dynamics V. N. Govorukhin Computer Research and Modeling, 2023, 15:6, 1477–1493 | 30 |
| 4. |
Detecting large fractures in geological media using convolutional neural networks I. B. Petrov, D. S. Konov, A. V. Vasyukov, M. V. Muratov Computer Research and Modeling, 2025, 17:5, 889–901 | 29 |
| 5. |
Computer modeling of the gross regional product dynamics: a comparative analysis of neural network models D. D. Vavilova, K. V. Ketova, R. Zerari Computer Research and Modeling, 2025, 17:6, 1219–1236 | 28 |
| 6. |
Calculating technogenic vibrations in urban environments using grid-characteristic method M. K. Gorkovets, A. V. Favorskaya, I. B. Petrov Computer Research and Modeling, 2025, 17:6, 1119–1129 | 26 |
| 7. |
Statistical analysis of the quasi-harmonic signal’s phase by method of moments as a tool of signal’s parameters estimation T. V. Yakovleva Computer Research and Modeling, 2025, 17:6, 1037–1049 | 26 |
| 8. |
On the modification of the method of component descent for solving some inverse problems of mathematical physics N. V. Pletnev, V. V. Matyukhin Computer Research and Modeling, 2023, 15:2, 301–316 | 25 |
| 9. |
Editor’s note N. A. Mitin Computer Research and Modeling, 2025, 17:5, 757–760 | 25 |
| 10. |
Model study of gas exchange processes in phytoplankton under the influence of photosynthetic processes and metabolism S. Ya. Pak, A. I. Abakumov Computer Research and Modeling, 2025, 17:5, 963–985 | 23 |
|
| Total publications: |
1317 |
| Scientific articles: |
1217 |
| Authors: |
2065 |
| Citations: |
2475 |
| Cited articles: |
726 |
|