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1.Zi Xuan YANG, Gui Xiang CUI, Chun-Xiao XU, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2012).
Correlation between temperature and velocity fluctuations in the near-wall region of rotating turbulent channel flow
Chin. Phys. Lett. 29, 054702 (4 pages). doi:10.1088/0256-307X/29/5/054702 doi.ico clarivate_16x16.png
2.Zi Xuan YANG, Gui Xiang CUI, Chun-Xiao XU, Liang SHAOorcid_16x16.png, Zhao Shun ZHANG (2010).
The effect of the Taylor-Görtler vortex on Reynolds stress transport in the rotating turbulent channel flow
Sci. China, Phys. Mech. Astron. 53, 725–734. doi:10.1007/s11433-010-0168-0 doi.ico clarivate_16x16.png
3.Le FANG, Liang SHAOorcid_16x16.png, Jean-Pierre BERTOGLIO, Gui Xiang CUI, Chun-Xiao XU, Zhao Shun ZHANG (2009).
An improved velocity increment model based on Kolmogorov equation of filtered velocity
Phys. Fluids 21, 065108 (9 pages). doi:10.1063/1.3153911 doi.ico clarivate_16x16.png
4.Gui Xiang CUI, Chun-Xiao XU, Le FANG, Liang SHAOorcid_16x16.png, Zhao Shun ZHANG (2007).
A new subgrid eddy-viscosity model for large-eddy simulation of anisotropic turbulence
J. Fluid Mech. 582, 377–397. doi:10.1017/S002211200700599X doi.ico hal.ico clarivate_16x16.png
5.Yu GUO, Chun-Xiao XU, Gui Xiang CUI, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2007).
Large eddy simulation of scalar turbulence using a new subgrid eddy diffusivity model
Int. J. Heat Fluid Flow 28, 268–274. doi:10.1016/j.ijheatfluidflow.2006.04.003 doi.ico hal.ico clarivate_16x16.png
6.Liang SHAOorcid_16x16.png, Zhao Shun ZHANG, Gui Xiang CUI, Chun-Xiao XU (2005).
Subgrid modeling of anisotropic rotating homogeneous turbulence
Phys. Fluids 17, 115106 (7 pages). doi:10.1063/1.2130748 doi.ico clarivate_16x16.png
7.Gui Xiang CUI, Haibing B. ZHOU, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2004).
A new dynamic subgrid eddy viscosity model with application to turbulent channel flow
Phys. Fluids 16, 2835–2842. doi:10.1063/1.1762911 doi.ico clarivate_16x16.png
8.Gui Xiang CUI, Haibing B. ZHOU, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2004).
New subgrid model for LES and its application
Chinese Journal of Computational Physics 21, 289–293.
9.Haibing B. ZHOU, Gui Xiang CUI, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2002).
Dependence of turbulent scalar flux on molecular Prandtl number
Phys. Fluids 14, 2388–2394. doi:10.1063/1.1485764 doi.ico clarivate_16x16.png
10.Haibing B. ZHOU, Gui Xiang CUI, Zhao Shun ZHANG, Liang SHAOorcid_16x16.png (2002).
The effect of transportation of passive scalar in the homogeneous turbulence with different molecular Prandtl numbers.
Acta Mech. Sin. 34.
11.B.C. FENG, Gui Xiang CUI, Zhao Shun ZHANG, Michel AYRAULT (2002).
Experimental study of fully developed turbulent pipe flow.
Limnol. Oceanogr. 34.
12.Gui Xiang CUI, Y. CHEN, Zhao Shun ZHANG, C. XU, Liang SHAOorcid_16x16.png, Jean-Pierre BERTOGLIO (2000).
Transportation of passive scalar in inhomogeneous turbulence.
Acta Mech. Sin. 16, 21.
13.Zhao Shun ZHANG, Gui Xiang CUI, C. XU, Liang SHAOorcid_16x16.png, H. PASCAL, Jean-Pierre BERTOGLIO (1999).
Effects of plane strain on inhomogeneous turbulence.
Science in China 42, 154–161.
 
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