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王利坡
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[1]wanglipo. “Analysis of the filtered non-premixed turbulent flame” Combustion and Flame, 2017,
[2]wanglipo. “Analysis of the filtered non-premixed turbulent flame” Combustion and Flame, 2017,
[3]wanglipo. “Instability evolution of the viscous elliptic liquid jet in the Rayleigh regime” PHYSICAL REVIEW E, 2017,
[4]wanglipo. “Vorticity statistics based on velocity and density-weighted velocity in premixed reactive turbulence” Journal of Turbulence, 2017,
[5]wanglipo. “Instability evolution of the viscous elliptic liquid jet in the Rayleigh regime” PHYSICAL REVIEW E, 2017,
[6] Scalar and vector analysis of the flow topology 2010 Asia-Pacific International Symposium on Aerospace Technology, 2010, 2010,
[7]wanglipo. Testing of Model Equations for the Mean Dissipation using Kolmogorov Flows Flow Turbulence Combust (2010) 85:225–243, 2010,
[8] On properties of fluid turbulence along streamlines J. Fluid Mech. (2010), vol. 648, pp. 183–203, 2010,
[9]wanglipo. Geometrical properties of small scale turbulence John von Neumann Institute for computing NIC symposium 2010 Proceedings, 24-25: P365-371, February 2010, Juelich, Germany, 2010,
[10]wanglipo. Fast and slow changes of the length of gradient trajectories in homogenous shear turbulence. Advances in Turbulence XII, pp. 565-572, Springer., 2009,
[11]wanglipo. Gradient trajectory analysis of a scalar field with external intermittency J. Fluid Mech. 626 (2009) pp. 333–365, 2009,
[12] Scaling of the two-point velocity difference along scalar gradient trajectories in fluid turbulence PHYSICAL REVIEW E 79, 046325 (2009), 2009,
[13] Conditional Statistics Along Gradient Trajectories in Fluid Turbulence High Performance Computing in Science and Engineering ’09, Springer-Verlag Berlin Heidelberg 2009, 2009,
[14] High-Resolution Direct Numerical Simulation of Homogeneous Shear Turbulence High Performance Computing in Science and Engineering’08, 2008,
[15] Dissipation element analysis of turbulent scalar fields Physica Scripta T132 014006, (2008), 2008,
total114 7/8
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