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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
Анализ RANS/ILES(i)-методом влияния турбулентности набегающего потока на течение в сверхзвуковом воздухозаборнике. Различные режимы работы воздухозаборника
TVT, Forthcoming paper |
2. |
L. A. Benderskiy, A. V. Goryachev, P. A. Goryachev, D. A. Goryachev, D. A. Lyubimov, E. S. Studennikov, “Особенности моделирования тепломассообменных процессов при формировании льда в условиях атмосферного облака, состоящего из переохлажденных капель”, TVT, 62:2 (2024), 250–263 |
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2023 |
3. |
D. A. Lyubimov, “Study of vortex-resolving method of throttling effect on pressure pulsation spectra in a paired supersonic air intake”, Matem. Mod., 35:9 (2023), 61–76 ; Math. Models Comput. Simul., 16:1 (2024), 39–49 |
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2022 |
4. |
A. S. Zhigalkin, D. A. Lyubimov, “Analysis of the influence of incoming flow turbulence on the flow in a supersonic air intake by the RANS/ILES method. Estimation of dissipative properties of the difference scheme by an example of modeling the decay of homogeneous isotropic turbulence in the ILES”, TVT, 60:1 (2022), 63–75 ; High Temperature, 60:1 (2022), 56–67 |
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2021 |
5. |
D. A. Lyubimov, A. O. Chestnykh, “Study by the RANS/ILES method throttling influence on pressure pulsations in a multiple-module supersonic air intake”, Matem. Mod., 33:7 (2021), 63–78 ; Math. Models Comput. Simul., 14:1 (2022), 110–119 |
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6. |
D. A. Lyubimov, I. V. Kukshinova, V. A. Vinogradov, “A RANS/ILES study of the features of the flow in the spatial air intake of a supersonic business-class aircraft in throttle modes”, TVT, 59:4 (2021), 576–583 ; High Temperature, 60:1, Suppl. 1 (2022), S86–S93 |
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2020 |
7. |
L. A. Benderskiy, D. A. Lyubimov, A. A. Terekhova, “Use of the RANS/ILES method to study the efficiency of synthetic jet application for flow control in an S-shaped intake integrated with an airframe”, TVT, 58:2 (2020), 287–299 ; High Temperature, 58:2 (2020), 266–277 |
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2019 |
8. |
D. A. Lyubimov, “Analysis by RANS/ILES method the influence of variable heat capacity on the characteristics of pressure pulsations in a high-speed air intake”, Matem. Mod., 31:10 (2019), 72–86 ; Math. Models Comput. Simul., 12:3 (2020), 403–412 |
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9. |
R. S. Ayupov, L. A. Benderskiy, D. A. Lyubimov, “Study of temperature field non-uniformity influence on pressure pulsations in inlet duct using RANS/ILES-method”, Matem. Mod., 31:10 (2019), 35–48 ; Math. Models Comput. Simul., 12:3 (2020), 378–387 |
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10. |
I. V. Kukshinova, D. A. Lyubimov, A. A. Solov'eva, A. E. Fedorenko, “Study of the possibilities of gasdynamic air flow control in the spatial air intake of a light supersonic business-class aircraft by the RANS/ILES method”, TVT, 57:1 (2019), 127–136 ; High Temperature, 57:1 (2019), 113–121 |
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2018 |
11. |
D. A. Lyubimov, A. O. Chestnykh, “Flow in a high-velocity mixed compression inlet studied by the RANS/ILES method in different operation modes”, TVT, 56:5 (2018), 729–737 ; High Temperature, 56:5 (2018), 702–710 |
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12. |
L. A. Benderskii, D. A. Lyubimov, A. O. Chestnikh, B. M. Shabanov, A. A. Rybakov, “The use of the RANS/ILES method to study the influence of coflow wind on the flow in a hot, nonisobaric, supersonic airdrome jet during its interaction with the jet blast deflector”, TVT, 56:2 (2018), 261–269 ; High Temperature, 56:2 (2018), 247–254 |
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2016 |
13. |
D. A. Lyubimov, I. V. Potekhina, “A study of unsteady-state operating conditions of a supersonic inlet by the RANS/ILES method”, TVT, 54:5 (2016), 784–791 ; High Temperature, 54:5 (2016), 737–744 |
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2013 |
14. |
D. A. Lyubimov, “Investigation of the effect of a pylon and a wing with flaps on the flow within an exhaust jet of a double-flow turbojet engine by a simulation method for large eddies”, TVT, 51:1 (2013), 120–137 ; High Temperature, 51:1 (2013), 111–127 |
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2012 |
15. |
D. A. Lyubimov, “Development and application of a high-resolution technique for jet flow computation using large eddy simulation”, TVT, 50:3 (2012), 450–466 ; High Temperature, 50:3 (2012), 420–436 |
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2011 |
16. |
D. A. Lyubimov, “Investigation of Impact of Jets with Zero-Net-Mass Flux on Flow in Curvilinear Diffusers”, TVT, 49:4 (2011), 557–567 ; High Temperature, 49:4 (2011), 539–549 |
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2010 |
17. |
D. A. Lyubimov, “The use of the hybrid RANS/ILES approach for the investigation of three-dimensional separated turbulent flows in curvilinear diffusers”, TVT, 48:2 (2010), 279–289 ; High Temperature, 48:2 (2010), 261–271 |
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2009 |
18. |
D. A. Lyubimov, “The application of hybrid RANS/ILES approach for the investigation of the effect of nozzle geometry and mode of efflux on the characteristics of turbulence of exhaust jets”, TVT, 47:3 (2009), 412–422 ; High Temperature, 47:3 (2009), 390–399 |
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2008 |
19. |
D. A. Lyubimov, “Development and applications of the efficient hybrid RANS/ILES approach for the calculation of complex turbulent jets”, TVT, 46:2 (2008), 271–282 ; High Temperature, 46:2 (2008), 243–253 |
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1998 |
20. |
V. I. Vasil'ev, D. V. Volkov, D. A. Lyubimov, “The use of a one-parameter differential model of turbulence in numerical calculations with the aid of Navier–Stokes equations”, TVT, 36:1 (1998), 65–73 ; High Temperature, 36:1 (1998), 61–69 |
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1991 |
21. |
D. A. Lyubimov, “An efficient method for calculating the spatial flow around air intakes at transonic speeds”, Zh. Vychisl. Mat. Mat. Fiz., 31:9 (1991), 1355–1368 ; U.S.S.R. Comput. Math. Math. Phys., 31:9 (1991), 65–75 |
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1990 |
22. |
V. V. Koretskii, D. A. Lyubimov, “A modified method of approximate factorization when calculating three-dimensional potential flows in channels”, Zh. Vychisl. Mat. Mat. Fiz., 30:10 (1990), 1553–1570 ; U.S.S.R. Comput. Math. Math. Phys., 30:5 (1990), 199–211 |
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