Publications

See also my ORCID account ORCID iD iconhttps://orcid.org/0000−0002−7895−378X

2024

  • C. Charrondière, C. Brun, E.J. Hopfinger, J.M. Cohard, and J.E. Sicart. Evidence of strong wave turbulence and of bolgiano temperature spectra in katabatic winds on steep slopes. Physics of Fluids, 36:026615, 2024. doi:10.1063/5.0187082.

2022

  • Claudine Charrondière, Christophe Brun, Emil J. Hopfinger, Jean-Martial Cohard, and Jean-Emmanuel Sicart. Mean flow structure of katabatic winds and turbulent mixing properties. Journal of Fluid Mechanics, 941:A11, 2022. doi:10.1017/jfm.2022.281.

2021

2017

  • C. Brun. Large- Eddy  Simulation of katabatic jet along a convexly curved slope. part 2: evidence of  Görtler vortices. Journal of Geophysical Research. Atmosphere, 122():5190–5210, 2017.
  • C. Brun, S. Blein, and J.P. Chollet. Large- Eddy  Simulation of katabatic jet along a convexly curved slope. part 1: statistical results. J.  Atmos.  Sci., 74():4047–4071, 2017.

2014

  • H. Barral, C. Genthon, A. Trouvilliez, C. Brun, and C. Amory. Blowing snow in coastal adelie land, antarctica: three atmospheric-moisture issues. The Cryosphere, Copernicus 2014, 8(5):1905–1919, 2014.

2008

  • C. Brun, S. Aubrun, T. Goossens, and Ph. Ravier. Coherent structures and their frequency signature in the separated shear layer on the sides of a square cylinder. Flow Turbulence and Combustion, ():, 2008.
  • C. Brun, G. Balarac, da Silva, C.B., and O. Métais. Effects of molecular diffusion on the subgrid-scale modelling of passive scalars. Physics of Fluids, 20(2):025102, 2008.
  • C. Brun, G. Balarac, C.B. da Silva, M. Petrovan Boiarciuc, and O. Métais. Subgrid-scale modeling of scalars for large-eddy simulations of transitional flows. In $7^th$ International ERCOFTAC Symposium on Engineering Turbulence Modeling and Measurements, volume. 2008. Cyprus.
  • C. Brun and T. Goossens.  3D coherent vortices in the turbulent near wake of a square cylinder. Comptes Rendus Mécanique, 336(4):363–369, 2008.

2006

  • C. Brun, C.B. da Silva, and R. Friedrich. A non-linear  SGS model based on the spatial velocity increment. application to  LES of fully developed pipe flow and round turbulent jet. TCFD, 20(1):1–21, 2006.

2005

  • C. Brun, M. Petrovan, M. Haberkorn, and P. Comte. Les of compressible channel flow : a tool for wall models for compressible turbulent boundary layers. In 2005. Euromech469 Colloquium, Dresden 2005.
  • N. Peller, M. Manhart, and C. Brun. Wall-layer investigations of channel flow with periodic hill constrictions. In 2005. Direct and Large-Eddy Simulation VI, Poitiers 2005.
  • N. Peller, M. Manhart, T. Goossens, M. Petrovan, and C. Brun. Near-wall behaviour of a family of separating turbulent shear flows. In 2005. Euromech469 Colloquium, Dresden 2005.
  • M. Petrovan, C. Brun, and P. Devinant. Simulation et modélisation d'écoulement turbulent compressible en couche limite décollée. In 2005. $25^eme$ Congrès Français de Mécanique, Troyes.

2004

  • C. Brun, D. Tenchine, and Hopfinger E.J. Role of the shear layer instability in the near wake behavior of the flow behind a closely spaced pair of cylinders. Exp. Fluids, 36(2):, 2004.

2002

  • J. Krömer, W. Schröder, M. Meinke, P. Comte, C. Brun, and M. Haberkorn. Les of transitional boundary layers and wakes with trailing edge blowing. In volume. 2002. CNRS-DFG Collaborative Research Programme, Results 1999-2001.

2001

  • C. Brun and R. Friedrich. Modeling the test sgs tensor $t_ij$: an issue in the dynamic approach. Phys. Fluids, 13(8):2373–2385, 2001.
  • C. Brun and R. Friedrich. The spatial velocity increment as a tool for sgs modeling. In B.J. Geurts (eds.), editor, Modern Simulation Strategies for Turbulent Flow, 57–84. Philadelphia, 2001. R.T. Edwards Publishing House.
  • S. Eisenbach, M. Manhart, C. Brun, and R. Friedrich. Large eddy simulation of a turbulent channel flow at $re_\tau = 590$ using a 4th-order compact discretization scheme. In 2001. CNRS-DFG Collaborative Research Workshop, 2001.

2000

  • C. Brun, C. B. da Silva, O. M\étais, and Friedrich R. Les of a round jet with sgs models based on the velocity structure function. In R. Friedrich et al. (eds.), editor, EUROMECH Colloquium 412, 12–15. Munich, 2000. Kluwer.
  • C. Brun, T.J. Hüttl, and R. Friedrich. A-posteriori tests of a new subgrid-scale model: l.e.s. of fully developed pipe flow. In C. Dopazo et al. (eds.), editor, Advances in Turbulence VIII, 547–550. Barcelona, 2000. CIMNE.

1999

  • C. Brun and R. Friedrich. A-priori tests of sgs stress models in fully developed pipe flow and a new local formulation. In P.R. Voke et al. (eds.), editor, Direct and Large-Eddy Simulation III, 249–262. Dordrecht, 1999. Kluwer Academic Publishers.

1998

  • C. Brun. Etude expérimentale et numérique de l'interaction forte entre sillages d'obstacles cylindriques. PhD thesis, Université Joseph Fourier, 1998. direction E.J. Hopfinger. URL: https://tel.archives-ouvertes.fr/tel-02612797.
  • P. Comte, Y. Dubief, C. Brun, M. Meinke, C. Schulz, and Th. Rister. Simulation of spatially developing plane and round jets. In ed. E.H. Hirschel, editor, Notes on Numerical Fluid Mechanics, volume 66, 301–318. Vieweg, 1998. CNRS-DFG Collaborative Research Programme, Results 1996-1998.

1997

  • C. Brun, P. Kessler, P. Comte, and M. Lesieur. Simulation des grandes échelles de jet rond. In Rapport de Synthèse DGA/DRET contrat n° 95-2557A. 1997. LEGI Grenoble.
  • C. Brun and M. Picut. Velocity measurements in the wake of a pair of cylinders in high interaction configuration. In TSF 11, 89–94. Grenoble, 1997.
  • G. Urbin, C. Brun, and O. Métais. Large eddy simulations of free-dimensional spatially evolving round jets. In TSF 11, 23–28. Grenoble, 1997.