SCALING PROPERTIES OF NUMERICAL 2-DIMENSIONAL TURBULENCE

被引:41
|
作者
BABIANO, A
DUBRULLE, B
FRICK, P
机构
[1] CE SACLAY, SERV ASTROPHYS, CEA, CNRS, UPR 182, F-91191 GIF SUR YVETTE, FRANCE
[2] OBSERV MIDI PYRENEES, CNRS, URA 285, F-31400 TOULOUSE, FRANCE
[3] INST CONTINUOUS MEDIA MECH, PERM 614061, RUSSIA
关键词
D O I
10.1103/PhysRevE.52.3719
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
We consider two-dimensional (2D) incompressible turbulent flow in a statistically steady state in which energy and enstrophy inputs, localized around a forcing mode, are compensated by a linear frictional force at large scales and viscous dissipation at small scales. The scaling properties of the energy and enstrophy established cascades are studied via the velocity structure functions. The extended selfsimilarity is used to obtain a better estimate of the scaling exponents of the structure functions at any order. Three distinct scaling regimes are observed. At large scales, corresponding to the inverse cascade of energy, the scaling exponents are well defined and similar to those observed in 3D isotropic turbulence, with large deviations from the Kolmogorov 1941 scaling (strong intermittency). At intermediate scales, where coherent structures dominate, no scaling is present. At small scales, corresponding to the direct enstrophy cascade, a second scaling regime is obtained, with almost nonanomalous scaling exponents (weak intermittency). The intermittency obtained in the two scaling regimes is found to be consistent with the hierarchical intermittency model of turbulence of She and Leveque [Phys. Rev Lett. 72, 336 (1994)], developed in the context of 3D turbulence. The model is characterized by two main parameters, Delta and beta, describing respectively, the smallest dissipative scales and the degree of intermittency of the energy transfers. These parameters are measured in the two regimes. In the inverse cascade, beta=0.7 and Delta=0.47, close to the values observed in 3D turbulence (beta=Delta=2/3). In the direct enstrophy cascade, beta is close to 1, and Delta close to 0, which explains the weak intermittency observed.
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页码:3719 / 3729
页数:11
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