2017
DOI: 10.1088/1751-8121/aa8c69
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Conformal invariance of the Lungren–Monin–Novikov equations for vorticity fields in 2D turbulence

Abstract: We study the statistical properties of the vorticity field in two-dimensional turbulence. The field is described in terms of the infinite Lundgren–Monin–Novikov (LMN) chain of equations for multi-point probability density functions (pdf’s) of vorticity. We perform a Lie group analysis of the first equation in this chain using the direct method based on the canonical Lie-Bäcklund transformations devised for integro-differential equations. We analytically show that the conformal group is broken for the first LMN… Show more

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Cited by 16 publications
(153 citation statements)
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References 28 publications
(92 reference statements)
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“…where f is some arbitrary function in the spatial coordinates x = (x 1 , x 2 ) -sure, when including also the two nonlocal equations (Eqs. [5][6] in Frewer & Khujadze (2021a)) into the symmetry analysis, then f reduces to the harmonic function f (x) = 6c 11 (x), (1.3) as correctly described in Grebenev et al (2017Grebenev et al ( , 2021a. We therefore agree with what is said in the first part of point (a) for Eqs.…”
Section: The Issue Of the Mentioned Group Classificationsupporting
confidence: 85%
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“…where f is some arbitrary function in the spatial coordinates x = (x 1 , x 2 ) -sure, when including also the two nonlocal equations (Eqs. [5][6] in Frewer & Khujadze (2021a)) into the symmetry analysis, then f reduces to the harmonic function f (x) = 6c 11 (x), (1.3) as correctly described in Grebenev et al (2017Grebenev et al ( , 2021a. We therefore agree with what is said in the first part of point (a) for Eqs.…”
Section: The Issue Of the Mentioned Group Classificationsupporting
confidence: 85%
“…We therefore agree with what is said in the first part of point (a) for Eqs. [10][11] in Grebenev et al (2021a), but not for what is said in the second part, particularly that "Frewer and Khujadze did not consider the above classification problem", or later in point (d) that "neither differential nor integral consequences of this [LMN] equation with respect to ω can be considered".…”
Section: The Issue Of the Mentioned Group Classificationmentioning
confidence: 99%
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