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Kuzmenko VG (2002), "3D numerical modelling of turbulent boundary layer in the regime of developed roughness on the basis of LES-technique", Applied Hydromechanics. Vol. 4(76)(3), pp. 31-41.
BibTeX:
@article{Kuzmenko2002,
  author = {V. G. Kuzmenko},
  title = {3D numerical modelling of turbulent boundary layer in the regime of developed roughness on the basis of LES-technique},
  journal = {Applied Hydromechanics},
  year = {2002},
  volume = {4(76)},
  number = {3},
  pages = {31--41}
}
Kuzmenko VG (2003), "The numerical 3D modelling of turbulent boundary layer in the regime of intermediate roughness", Applied Hydromechanics. Vol. 5(77)(2), pp. 27-36.
BibTeX:
@article{Kuzmenko2003,
  author = {V. G. Kuzmenko},
  title = {The numerical 3D modelling of turbulent boundary layer in the regime of intermediate roughness},
  journal = {Applied Hydromechanics},
  year = {2003},
  volume = {5(77)},
  number = {2},
  pages = {27--36}
}
Kuzmenko VG (2004), "Dynamic subgridscale model for LES-technique", Applied Hydromechanics. Vol. 6(78)(3), pp. 48-53.
BibTeX:
@article{Kuzmenko2004,
  author = {V. G. Kuzmenko},
  title = {Dynamic subgridscale model for LES-technique},
  journal = {Applied Hydromechanics},
  year = {2004},
  volume = {6(78)},
  number = {3},
  pages = {48--53}
}
Kuzmenko VG (2004), "Numerical 3-D modelling of turbulent boundary layer on the basis of economical LES-technique", Applied Hydromechanics. Vol. 6(78)(1), pp. 19-24.
BibTeX:
@article{Kuzmenko2004a,
  author = {V. G. Kuzmenko},
  title = {Numerical 3-D modelling of turbulent boundary layer on the basis of economical LES-technique},
  journal = {Applied Hydromechanics},
  year = {2004},
  volume = {6(78)},
  number = {1},
  pages = {19--24}
}
Kuzmenko VG (2007), "Simulation of turbulent flow with separation beyond backward-facing step", Applied Hydromechanics. Vol. 9(81)(4), pp. 37-48.
BibTeX:
@article{Kuzmenko2007,
  author = {V. G. Kuzmenko},
  title = {Simulation of turbulent flow with separation beyond backward-facing step},
  journal = {Applied Hydromechanics},
  year = {2007},
  volume = {9(81)},
  number = {4},
  pages = {37--48}
}
Kuzmenko VG (2009), "Numerical modelling of nonstationary turbulent flow with seperation over and inside cavity", Applied Hydromechanics. Vol. 11(83)(3), pp. 28-41.
BibTeX:
@article{Kuzmenko2009,
  author = {V. G. Kuzmenko},
  title = {Numerical modelling of nonstationary turbulent flow with seperation over and inside cavity},
  journal = {Applied Hydromechanics},
  year = {2009},
  volume = {11(83)},
  number = {3},
  pages = {28--41}
}
Kuzmenko VG (2010), "The simulation of turbulent flow with separation in asymetric channel on the base of hybrid LES/RANS-technique", Applied Hydromechanics. Vol. 12(84)(3), pp. 24-37.
BibTeX:
@article{Kuzmenko2010,
  author = {V. G. Kuzmenko},
  title = {The simulation of turbulent flow with separation in asymetric channel on the base of hybrid LES/RANS-technique},
  journal = {Applied Hydromechanics},
  year = {2010},
  volume = {12(84)},
  number = {3},
  pages = {24--37}
}
Kuzmenko VG (2011), "The simulation of turbulent wall flow with a fence on the base of hybrid LES/RANS-approach", Applied Hydromechanics. Vol. 13(85)(3), pp. 48-60.
BibTeX:
@article{Kuzmenko2011,
  author = {V. G. Kuzmenko},
  title = {The simulation of turbulent wall flow with a fence on the base of hybrid LES/RANS-approach},
  journal = {Applied Hydromechanics},
  year = {2011},
  volume = {13(85)},
  number = {3},
  pages = {48--60}
}
Kuzmenko VG (2013), "The simulation of unsteady turbulent flow with obstacle on the base of hybrid LES/URANS-approach", Applied Hydromechanics. Vol. 15(87)(2), pp. 22-36.
BibTeX:
@article{Kuzmenko2013,
  author = {V. G. Kuzmenko},
  title = {The simulation of unsteady turbulent flow with obstacle on the base of hybrid LES/URANS-approach},
  journal = {Applied Hydromechanics},
  year = {2013},
  volume = {15(87)},
  number = {2},
  pages = {22--36}
}
Kuzmenko VG (2015), "The simulation of turbulent flow with the fence by different external conditions on the base of hybrid LES/URANS-approach. Part 1", Applied Hydromechanics. Vol. 17(89)(1), pp. 59-71.
BibTeX:
@article{Kuzmenko2015,
  author = {V. G. Kuzmenko},
  title = {The simulation of turbulent flow with the fence by different external conditions on the base of hybrid LES/URANS-approach. Part 1},
  journal = {Applied Hydromechanics},
  year = {2015},
  volume = {17(89)},
  number = {1},
  pages = {59--71}
}
Kuzmenko VG (2015), "The simulation of turbulent flow with the fence by different external conditions. Part 2. Coherent structures identification", Applied Hydromechanics. Vol. 17(89)(3), pp. 18-34.
BibTeX:
@article{Kuzmenko2015a,
  author = {V. G. Kuzmenko},
  title = {The simulation of turbulent flow with the fence by different external conditions. Part 2. Coherent structures identification},
  journal = {Applied Hydromechanics},
  year = {2015},
  volume = {17(89)},
  number = {3},
  pages = {18--34}
}
Kuzmenko VG (2016), "Simulation of turbulent flow with the fence and 3D coherent structures identification", Applied Hydromechanics. Vol. 18(90)(1), pp. 31-42.
BibTeX:
@article{Kuzmenko2016,
  author = {V. G. Kuzmenko},
  title = {Simulation of turbulent flow with the fence and 3D coherent structures identification},
  journal = {Applied Hydromechanics},
  year = {2016},
  volume = {18(90)},
  number = {1},
  pages = {31--42}
}