Nonlinear Sciences – Chaotic Dynamics
Scientific paper
1996-08-05
Physical Review Letters 77, 5369 (1996)
Nonlinear Sciences
Chaotic Dynamics
4 pages, 5 eps-figures, replaces version from August 5th, 1996
Scientific paper
10.1103/PhysRevLett.77.5369
Developed Navier-Stokes turbulence is simulated with varying wavevector mode reductions. The flatness and the skewness of the velocity derivative depend on the degree of mode reduction. They show a crossover towards the value of the full numerical simulation when the viscous subrange starts to be resolved. The intermittency corrections of the scaling exponents of the pth order velocity structure functions seem to depend mainly on the proper resolution of the inertial subrange. Universal scaling properties (i.e., independent of the degree of mode reduction) are found for the relative scaling exponents rho which were recently defined by Benzi et al.
Grossmann Siegfried
Lohse Detlef
Reeh Achim
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