High-resolution simulations of forced quasi-geostrophic (QG) turbulence reveal that Charney isotropy develops under a wide range of conditions, and constitutes a preferred state also in beta-plane and freely decaying turbulence. There is a clear analogy between two-dimensional and QG turbulence, with a direct enstrophy cascade that is governed by the prediction of Kraichnan (J. Fluid Mech., vol. 47, 1971, p. 525) and an inverse energy cascade following the classic k(-5/3) scaling. Furthermore, we find that Charney's prediction of equipartition between the potential and kinetic energy in each of the two horizontal velocity components is approximately fulfilled in the inertial ranges.
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Univ Wisconsin Madison, Dept Math, Madison, WI USA
Univ Notre Dame, Dept Appl & Computat Math & Stat, Notre Dame, IN 46556 USAUniv Wisconsin Madison, Dept Math, Madison, WI USA
Hu, Rentian
Edwards, Thomas K.
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Univ Wisconsin Madison, Dept Math, Madison, WI USAUniv Wisconsin Madison, Dept Math, Madison, WI USA
Edwards, Thomas K.
Smith, Leslie M.
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Univ Wisconsin Madison, Dept Math, Madison, WI USA
Univ Wisconsin Madison, Dept Engn Phys, Madison, WI USAUniv Wisconsin Madison, Dept Math, Madison, WI USA
Smith, Leslie M.
Stechmann, Samuel N.
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Univ Wisconsin Madison, Dept Math, Madison, WI USA
Univ Wisconsin Madison, Dept Atmospher & Ocean Sci, Madison, WI USAUniv Wisconsin Madison, Dept Math, Madison, WI USA
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Univ Sao Paulo, Inst Oceanog, BR-05508120 Sao Paulo, Brazil
Univ Massachusetts Dartmouth, N Dartmouth, MA USAUniv Sao Paulo, Inst Oceanog, BR-05508120 Sao Paulo, Brazil
Rocha, Cesar B.
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Tandon, Amit
da Silveira, Ilson C. A.
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Univ Sao Paulo, Inst Oceanog, BR-05508120 Sao Paulo, BrazilUniv Sao Paulo, Inst Oceanog, BR-05508120 Sao Paulo, Brazil
da Silveira, Ilson C. A.
Lima, Jose Antonio M.
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机构:Univ Sao Paulo, Inst Oceanog, BR-05508120 Sao Paulo, Brazil