The return of strongly anisotropic turbulence to isotropy

Energy spectrum equations for homogeneous axisymmetric turbulence are formulated using the eddy‐damped quasinormal Markovian (EDQNM) approximation. The equations, which consist of two spectrum functions of the two variables k (the magnitude of the wavevector k) and μ (the cosine of the angle between...

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Veröffentlicht in:The Physics of fluids (1958) 1987-12, Vol.30 (12), p.3653-3660
Hauptverfasser: Nakauchi, Norihiko, Oshima, Hiroshi
Format: Artikel
Sprache:eng
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Zusammenfassung:Energy spectrum equations for homogeneous axisymmetric turbulence are formulated using the eddy‐damped quasinormal Markovian (EDQNM) approximation. The equations, which consist of two spectrum functions of the two variables k (the magnitude of the wavevector k) and μ (the cosine of the angle between k and the direction of axisymmetry), are computed directly, without any reduction, under initial conditions for different degrees of anisotropy. In this paper, the results for cases of medium anisotropic and nearly two‐dimensional initial conditions are reported. A remarkable result was that in the nearly two‐dimensional case, some characteristic properties of two‐dimensional isotropic turbulence, such as inverse energy cascades, are observed. Also, particular attention is paid to the effects of pressure‐strain correlation and inertial energy transfer on the return of anisotropic turbulence to isotropy.
ISSN:0031-9171
2163-4998
DOI:10.1063/1.866452