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Volkov, Konstantin Nikolaevich

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Total publications: 56
Scientific articles: 56

Number of views:
This page:1668
Abstract pages:11445
Full texts:4494
References:655
Doctor of physico-mathematical sciences (2006)
Speciality: 01.02.05 (Mechanics of fluids, gases and plasmas)
Birth date: 12.10.1973
Phone: (812)251 47 53
E-mail: ,
Keywords: turbulence, two-phase flows, heat and mass transfer.
UDC: 532.526.6, 519.634

Subject:

Turbulent gas-particle flows.

   
Main publications:
  • Volkov K. N. Near-wall modelling in computations of turbulent flows on unstructured grids. Thermophysics and Aeromechanics. 2007. Vol. 14. No. 1. P. 1–17.
  • Volkov K. N. Interaction of a circular turbulent jet with a flat target. Journal of Applied Mechanics and Technical Physics. 2007. Vol. 48. No. 1. P. 55–67.
  • Volkov K. N. Large-eddy simulation of circle turbulent impingement jet. Mathematical Simulation. 2007. Vol. 19. No. 2. P. 3–22.
  • Volkov K. N. Solving the coupled thermal problems and the thermal load transfer between a fluid and a solid body. Numerical Methods and Programming. 2007. Vol. 8. No. 1. P. 265–274.
  • Volkov K. N. Development and implementation of numerical algorithms for solving the problems of fluid dynamics. Numerical Methods and Programming. 2007. Vol. 8. No. 1. P. 40–56.

http://www.mathnet.ru/eng/person26289
List of publications on Google Scholar
List of publications on ZentralBlatt
https://mathscinet.ams.org/mathscinet/MRAuthorID/663493

Publications in Math-Net.Ru
2019
1. P. V. Bulat, K. N. Volkov, “Visualization of gas dynamics discontinuities in supersonic flows using digital image processing methods”, Vychisl. Metody Programm., 20:3 (2019),  237–253  mathnet  elib
2. K. N. Volkov, V. N. Emelyanov, A. G. Karpenko, I. V. Teterina, “Моделирование течений вязкой несжимаемой жидкости на графических процессорах при помощи схемы расщепления и многосеточного метода”, Zh. Vychisl. Mat. Mat. Fiz., 59:1 (2019),  143–157  mathnet  elib
2018
3. K. N. Volkov, V. N. Emelyanov, I. V. Teterina, “Visualization of numerical results obtained for gas-particle flows using Lagrangian approaches to the dispersed phase description”, Vychisl. Metody Programm., 19:4 (2018),  522–539  mathnet
4. K. N. Volkov, V. N. Emelyanov, I. E. Kapranov, I. V. Teterina, “Lagrangian coherent vortex structures and their numerical visualization”, Vychisl. Metody Programm., 19:3 (2018),  293–313  mathnet
5. K. N. Volkov, V. N. Emelyanov, M. S. Yakovchuk, “Multiparameter optimization of operating control by the trust vector based on the jet injection into the supersonic part of a nozzle”, Vychisl. Metody Programm., 19:2 (2018),  158–172  mathnet
2017
6. K. N. Volkov, V. N. Emel'yanov, A. G. Karpenko, “Numerical simulation of gas dynamic and physical-chemical processes in hypersonic flows past bodies”, Vychisl. Metody Programm., 18:4 (2017),  387–405  mathnet
7. N. A. Brykov, K. N. Volkov, V. N. Emelyanov, I. V. Teterina, “Flows of ideal and real gases in channels of variable cross section with unsteady localized energy supply”, Vychisl. Metody Programm., 18:1 (2017),  20–40  mathnet
8. K. N. Volkov, A. S. Kozelkov, S. V. Lashkin, N. V. Tarasova, A. V. Yalozo, “A parallel implementation of the algebraic multigrid method for solving problems in dynamics of viscous incompressible fluid”, Zh. Vychisl. Mat. Mat. Fiz., 57:12 (2017),  2079–2097  mathnet  elib; Comput. Math. Math. Phys., 57:12 (2017), 2030–2046  isi  scopus
9. K. N. Volkov, V. N. Emel'yanov, I. V. Teterina, M. S. Yakovchuk, “Visualization of vortical flows in computational fluid dynamics”, Zh. Vychisl. Mat. Mat. Fiz., 57:8 (2017),  1374–1391  mathnet  elib; Comput. Math. Math. Phys., 57:8 (2017), 1360–1375  isi  scopus
2016
10. P. V. Bulat, K. N. Volkov, M. S. Yakovchuk, “Flow visualization with strong and weak gas dynamic discontinuities in computational fluid dynamics”, Vychisl. Metody Programm., 17:3 (2016),  245–257  mathnet
11. K. N. Volkov, V. N. Emelyanov, I. V. Teterina, M. S. Yakovchuk, “Methods and concepts of vortex flow visualization in the problems of computational fluid dynamics”, Vychisl. Metody Programm., 17:1 (2016),  81–100  mathnet
12. K. N. Volkov, V. N. Emel'yanov, I. V. Teterina, “Geometric and algebraic multigrid techniques for fluid dynamics problems on unstructured grids”, Zh. Vychisl. Mat. Mat. Fiz., 56:2 (2016),  283–300  mathnet  elib; Comput. Math. Math. Phys., 56:2 (2016), 286–302  isi  scopus
2015
13. K. N. Volkov, V. N. Emel'yanov, A. G. Karpenko, “Preconditioning of Navier–Stokes equations in the computation of free convective flows”, Zh. Vychisl. Mat. Mat. Fiz., 55:12 (2015),  2109–2122  mathnet  mathscinet  elib; Comput. Math. Math. Phys., 55:12 (2015), 2080–2093  isi  scopus
14. K. N. Volkov, A. G. Karpenko, “Preconditioning of gas dynamics equations in compressible gas flow computations at low mach numbers”, Zh. Vychisl. Mat. Mat. Fiz., 55:6 (2015),  1058–1075  mathnet  mathscinet  elib; Comput. Math. Math. Phys., 55:6 (2015), 1051–1067  isi  elib  scopus
2014
15. K. N. Volkov, V. N. Emelyanov, A. V. Pustovalov, “Supersonic flows of an inviscid compressible gas in aerodynamic windows of gas lasers”, Vychisl. Metody Programm., 15:4 (2014),  712–725  mathnet
16. K. N. Volkov, Yu. N. Deryugin, V. N. Emelyanov, A. S. Kozelkov, I. V. Teterina, “An algebraic multigrid method in problems of computational physics”, Vychisl. Metody Programm., 15:2 (2014),  183–200  mathnet
17. K. N. Volkov, “Formulation of wall boundary conditions in turbulent flow computations on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 54:2 (2014),  336–351  mathnet  elib; Comput. Math. Math. Phys., 54:2 (2014), 353–367  isi  scopus
2013
18. K. N. Volkov, Yu. N. Deryugin, V. N. Emelyanov, A. G. Karpenko, A. S. Kozelkov, P. G. Smirnov, I. V. Teterina, “Implementation of parallel calculations on graphics processor units in the LOGOS computational fluid dynamics package”, Vychisl. Metody Programm., 14:3 (2013),  334–342  mathnet
19. K. N. Volkov, V. N. Emelyanov, A. G. Karpenko, P. G. Smirnov, I. V. Teterina, “Implementation of a finite volume method and calculation of flows of a viscous compressible gas on graphics processor units”, Vychisl. Metody Programm., 14:1 (2013),  183–194  mathnet
20. K. N. Volkov, V. N. Emelyanov, A. G. Karpenko, I. V. Kurova, A. E. Serov, P. G. Smirnov, “Numerical solution of fluid mechanics problems on general-purpose graphics processor units”, Vychisl. Metody Programm., 14:1 (2013),  82–90  mathnet
21. K. N. Volkov, “Implementation and comparison of various approaches to solving coupled thermal analysis problems on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 53:4 (2013),  656–674  mathnet  mathscinet  elib; Comput. Math. Math. Phys., 53:4 (2013), 503–519  isi  scopus
22. K. N. Volkov, “Simulation of coupled heat exchange on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 53:3 (2013),  396–416  mathnet  zmath  elib
2012
23. K. N. Volkov, “Load balancing of processors when solving the problems of fluid and gas mechanics by mesh methods”, Vychisl. Metody Programm., 13:1 (2012),  107–129  mathnet
24. K. N. Volkov, “Finite-volume discretization of the Euler equations on unstructured deformable lattices”, Zh. Vychisl. Mat. Mat. Fiz., 52:9 (2012),  1707–1723  mathnet
2011
25. K. N. Volkov, “Turbulent flow of a viscous compressible gas in a pre-swirl chamber of a high-pressure turbine”, Vychisl. Metody Programm., 12:3 (2011),  303–316  mathnet
26. K. N. Volkov, “Comparison of two- and three-dimensional models of turbulent flow in the drive cone cavity of a gas turbines engine”, Vychisl. Metody Programm., 12:1 (2011),  1–15  mathnet
2010
27. K. N. Volkov, “Multigrid techniques as applied to gasdynamic simulation on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 50:11 (2010),  1938–1952  mathnet; Comput. Math. Math. Phys., 50:11 (2010), 1837–1850  isi  scopus
2009
28. K. N. Volkov, “Speeding up the solution of coupled heat transfer problems on unstructured meshes”, Vychisl. Metody Programm., 10:2 (2009),  184–201  mathnet
29. K. N. Volkov, “Preconditioning of the Euler and Navier–Stokes equations in low-velocity flow simulation on unstructured grids”, Zh. Vychisl. Mat. Mat. Fiz., 49:10 (2009),  1868–1884  mathnet; Comput. Math. Math. Phys., 49:10 (2009), 1789–1804  isi  scopus
2008
30. K. N. Volkov, “Large eddy simulation of a nonisothermal turbulent jet flowing out into submerged space”, TVT, 46:5 (2008),  690–699  mathnet  elib; High Temperature, 46:5 (2008), 630–638  isi  elib  scopus
31. K. N. Volkov, “Discretization of Navier-Stokes equations on moving unstructured meshes”, Vychisl. Metody Programm., 9:3 (2008),  256–273  mathnet
32. K. N. Volkov, V. N. Emelyanov, “Implementation of the Lagrangian approach to the description of gas -particle flows on unstructured meshes”, Vychisl. Metody Programm., 9:1 (2008),  19–33  mathnet
33. K. N. Volkov, “Unstructured-grid finite-volume discretization of the Navier–Stokes equations based on high-resolution difference schemes”, Zh. Vychisl. Mat. Mat. Fiz., 48:7 (2008),  1250–1273  mathnet; Comput. Math. Math. Phys., 48:7 (2008), 1181–1202  isi  scopus
2007
34. K. N. Volkov, “Calculation of free mixing layer on the base of large-eddy simulation”, Matem. Mod., 19:9 (2007),  114–128  mathnet  mathscinet  zmath
35. K. N. Volkov, “Large-eddy simulation of circle turbulent impingement jet”, Matem. Mod., 19:2 (2007),  3–22  mathnet  mathscinet  zmath
36. K. N. Volkov, “Unsteady-state heat transfer in the region of interaction between a turbulent jet and an obstacle”, TVT, 45:6 (2007),  896–904  mathnet  elib; High Temperature, 45:6 (2007), 818–825  isi  scopus
37. K. N. Volkov, “Solving the coupled thermal problems and the thermal load transfer between a fluid and a solid body”, Vychisl. Metody Programm., 8:3 (2007),  265–274  mathnet
38. K. N. Volkov, “Development and implementation of numerical algorithms for solving the problems of fluid dynamics”, Vychisl. Metody Programm., 8:3 (2007),  40–56  mathnet
2006
39. K. N. Volkov, “Solution of time-dependant problems of gas and fluid mechanics on unstructured grids”, Matem. Mod., 18:7 (2006),  3–23  mathnet  mathscinet  zmath
40. K. N. Volkov, “Simulation of turbulent flow and heat transferin the axi-symmetric cavity with rotating disc”, Matem. Mod., 18:2 (2006),  72–88  mathnet  zmath
41. K. N. Volkov, “The effect of pressure gradient and localized injection on turbulent heat transfer on a flat plate”, TVT, 44:3 (2006),  418–424  mathnet  elib; High Temperature, 44:3 (2006), 414–421  elib  scopus
42. K. N. Volkov, “Wall boundary conditions and mesh dependency of the solution for the calculations of turbulent flows on unstructured meshes”, Vychisl. Metody Programm., 7:3 (2006),  211–223  mathnet
43. K. N. Volkov, “Application of parallel programming tools for the solution of fluid dynamics problems on multi-processor computing systems”, Vychisl. Metody Programm., 7:1 (2006),  69–84  mathnet
2005
44. K. N. Volkov, V. N. Emelyanov, “Motion and heat transfer of free non-spherical particle in the non-uniform flow”, Matem. Mod., 17:4 (2005),  62–80  mathnet  zmath
45. K. N. Volkov, V. N. Emelyanov, “Calculation of the Threshold Power of Optical Breakdown during Interaction between a Laser Pulse and Droplets of Dielectric Liquid”, TVT, 43:3 (2005),  352–358  mathnet; High Temperature, 43:3 (2005), 344–351
46. K. N. Volkov, “An implementation of the splitting scheme on staggered grids for computing nonstationary flows of viscous incompressible fluid”, Vychisl. Metody Programm., 6:1 (2005),  269–282  mathnet
47. K. N. Volkov, “High-resolution difference schemes of flux calculation and their application for solution of gas dynamics problems”, Vychisl. Metody Programm., 6:1 (2005),  146–167  mathnet
48. K. N. Volkov, “Application of the control-volume method for the solution of problems in gas and fluid mechanics on unstructured grids”, Vychisl. Metody Programm., 6:1 (2005),  43–60  mathnet
2004
49. K. N. Volkov, V. N. Emelyanov, “Mathematical models of three-dimensional turbulent flows in the ducts with fluid injection”, Matem. Mod., 16:10 (2004),  41–63  mathnet  zmath
50. K. N. Volkov, V. N. Emelyanov, “Implementation of vectorized finite-difference algorithms for solving boundary value problems of fluid and gas mechanics with MATLAB package”, Vychisl. Metody Programm., 5:3 (2004),  13–29  mathnet
51. K. N. Volkov, “Discretization of convective fluxes in Navier-Stokes equations on the basis of high-resolution difference schemes”, Vychisl. Metody Programm., 5:1 (2004),  129–145  mathnet
52. K. N. Volkov, “Finite difference schemes for integrating the equations for sample particle motion in a fluid or gas flow”, Vychisl. Metody Programm., 5:1 (2004),  1–17  mathnet
2003
53. K. N. Volkov, V. N. Emelyanov, “Interaction of intensive flux of radiation with gas-dispersed systems”, Matem. Mod., 15:6 (2003),  35–40  mathnet  zmath
2002
54. K. N. Volkov, G. F. Gorshkov, “Stochastical simulation of dispersed particles scattering in the turbulent jets”, Matem. Mod., 14:10 (2002),  77–82  mathnet  zmath
2001
55. K. N. Volkov, V. N. Emelyanov, E. L. Ryabova, “Two-level simulation of internal two-phase flows”, Matem. Mod., 13:7 (2001),  44–48  mathnet  zmath
1999
56. V. A. Anisimov, K. N. Volkov, V. N. Emelyanov, “Subsonic jet flows with free boundaries”, Matem. Mod., 11:12 (1999),  16–32  mathnet  mathscinet  zmath
57. K. N. Volkov, V. N. Emelyanov, “Stochastic model of the condensed particle motion through a duct with fluid injection”, Matem. Mod., 11:3 (1999),  105–111  mathnet

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