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Home > Pages perso > Shao Liang > Publications



Wu J, Fang L, Shao L, Lu L. Theories and applications of second-order correlation of longitudinal velocity increments at three points in isotropic turbulence. Phys. Lett. A. 2018;382:1665–1671.
Xie B, Gao F, Boudet J, Shao L, Lu L. Improved vortex method for large-eddy simulation inflow generation. Comput. Fluids. 2018;168:87–100.


Gao F, Ma W, Sun J, et al. Parameter study on numerical simulation of corner separation in LMFA-NACA65 linear compressor cascade. Chin. J. Aeronauti.. 2017;30:15–30.


Zillé P, Corpetti T, Shao L, Xu C. Super-resolution of turbulent passive scalar images using data assimilation. Exp. Fluids. 2016;57:21.


Chen X, Zillé P, Shao L, Corpetti T. Optical flow for incompressible turbulence motion estimation. Exp. Fluids. 2015;56:8.
Gao F, Ma W, Zambonini G, et al. Large-eddy simulation of 3-D corner separation in a linear compressor cascade. Phys. Fluids. 2015;27:085105.
Gao F, Zambonini G, Boudet J, Ottavy X, Lu L, Shao L. Unsteady behavior of corner separation in a compressor cascade: Large eddy simulation and experimental study. Proc. IMechE Part A, J. Power Energy. 2015;229:508–519.
Xie B, Shao L. Generation of unsteady inflow conditions for compressible LES with a modified vortex method. Jbuaa. 2015;41:701–706.


Fang L, Shao L, Bertoglio J-P. Recent understanding on the subgrid-scale modeling of large-eddy simulation in physical space. Sci. China, Phys. Mech. Astron.. 2014;57:2188–2193.
Zillé P, Corpetti T, Shao L, Chen X. Observation model based on scale interactions for optical flow estimation. IEEE Trans. Image Process.. 2014;23:6825869.


Fang L, Bos WJT, Shao L, Bertoglio J-P. Time-reversibility of Navier-Stokes turbulence and its implication for subgrid scale models. J. Turbul.. 2012;13:1–14.
Yang ZX, Cui GX, Xu C-X, Zhang ZS, Shao L. Correlation between temperature and velocity fluctuations in the near-wall region of rotating turbulent channel flow. Chin. Phys. Lett.. 2012;29:054702.


Cassisa C, Simoëns S, Prinet V, Shao L. Subgrid scale formulation of optical flow for the study of turbulent flow. Exp. Fluids. 2011;51:1739–1754.
Fang L, Shao L, Bertoglio J-P, Lu L, Zhang ZS. The rapid-slow decomposition of the subgrid flux in inhomogeneous scalar turbulence. J. Turbul.. 2011;12:1–23.
Ma W, Fang L, Shao L, Lu L. Scaling law of resolved-scale isotropic turbulence. Chin. J. Theor. Appl. Mech.. 2011;43:267–276.


Fang J, Lu L, Shao L. Heat transport mechanisms of low Mach number turbulent channel flow with spanwise wall oscillation. Acta Mech. Sin.. 2010;26:391–399.
Fang L, Bos WJT, Zhou X, Shao L, Bertoglio J-P. Corrections to the scaling of the second-order structure function in isotropic turbulence. Acta Mech. Sin.. 2010;26:151–157.
Yang ZX, Cui GX, Xu C-X, Shao L, Zhang ZS. The effect of the Taylor-Görtler vortex on Reynolds stress transport in the rotating turbulent channel flow. Sci. China, Phys. Mech. Astron.. 2010;53:725–734.


Fang L, Shao L, Bertoglio J-P, Cui GX, Xu C-X, Zhang ZS. An improved velocity increment model based on Kolmogorov equation of filtered velocity. Phys. Fluids. 2009;21:065108.
Zhang J, Lu LP, Shao L. A study on heat transfer in a turbulent channel flow with spanwise oscillation. Science in China. 2009;52:1129–1288.


Bos WJT, Shao L, Bertoglio J-P. Spectral imbalance and the normalized dissipation rate of turbulence. Phys. Fluids. 2007;19:045101.
Boudet J, Caro J, Shao L, Lévêque E. Numerical studies towards practical large-eddy simulation. J. Therm. Sci.. 2007;16:328–336.
Cui GX, Xu C-X, Fang L, Shao L, Zhang ZS. A new subgrid eddy-viscosity model for large-eddy simulation of anisotropic turbulence. J. Fluid Mech.. 2007;582:377–397.
Guo Y, Xu C-X, Cui GX, Zhang ZS, Shao L. Large eddy simulation of scalar turbulence using a new subgrid eddy diffusivity model. Int. J. Heat Fluid Flow. 2007;28:268–274.
Lamaison G, Bos WJT, Shao L, Bertoglio J-P. Decay of scalar variance in isotropic tubulence in a bounded domain. J. Turbul.. 2007;8:N 4.
Lévêque E, Toschi F, Shao L, Bertoglio J-P. Shear-improved Smagorinsky model for large-eddy simulation of wall-bounded turbulent flows. J. Fluid Mech.. 2007;570:491–502.


Wei G, Vinkovic I, Shao L, Simoëns S. Corrélations de vitesse Lagrangienne et échelle temporelle en simulation des grandes échelles. C. R. Méc.. 2006;334:298–303.
Wei G, Vinkovic I, Shao L, Simoëns S. Scalar dispersion by large eddy simulations and a Lagrangian stochastic subgrid model. Phys. Fluids. 2006;18:095101.


Shao L, Zhang ZS, Cui GX, Xu C-X. Subgrid modeling of anisotropic rotating homogeneous turbulence. Phys. Fluids. 2005;17:115106.


Bos WJT, Touil H, Shao L, Bertoglio J-P. On the behavior of the velocity-scalar cross correlation spectrum in the inertial range. Phys. Fluids. 2004;16:3818–3823.
Cui GX, Zhou HB, Zhang ZS, Shao L. A new dynamic subgrid eddy viscosity model with application to turbulent channel flow. Phys. Fluids. 2004;16:2835–2842.
Cui GX, Zhou HB, Zhang ZS, Shao L. New subgrid model for LES and its application. Chinese Journal of Computational Physics. 2004;21:289–293.


Touil H, Bertoglio J-P, Shao L. The decay of turbulence in a bounded domain. J. Turbul.. 2002;3:1–12.
Zhou HB, Cui GX, Zhang ZS, Shao L. Dependence of turbulent scalar flux on molecular Prandtl number. Phys. Fluids. 2002;14:2388–2394.
Zhou HB, Cui GX, Zhang ZS, Shao L. The effect of transportation of passive scalar in the homogeneous turbulence with different molecular Prandtl numbers. Acta Mech. Sin.. 2002;34.


Cui GX, Chen Y, Zhang ZS, Xu C, Shao L, Bertoglio J-P. Transportation of passive scalar in inhomogeneous turbulence. Acta Mech. Sin.. 2000;16:21.


Shao L, Sarkar S, Pantano C. On the relationship between mean flow and subgrid stresses in large eddy simulation of turbulent shear flow. Phys. Fluids. 1999;11:1229–1248.
Zhang ZS, Cui GX, Xu C, Shao L, Pascal H, Bertoglio J-P. Effects of plane strain on inhomogeneous turbulence. Science in China. 1999;42:154–161.


Cambon C, Benoit JP, Shao L, Jacquin L. Stability analysis and large eddy simulation of rotating turbulence with organized eddies. J. Fluid Mech.. 1994;278:175–200.