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JOURNALS // Teoreticheskaya i Matematicheskaya Fizika // Archive

TMF, 2019 Volume 200, Number 3, Pages 429–451 (Mi tmf9695)

This article is cited in 1 paper

Renormalization group analysis of models of advection of a vector admixture and a tracer field by a compressible turbulent flow

N. V. Antonova, N. M. Gulitskiia, M. M. Kostenkoa, T. Lučivjanskýb

a St. Petersburg State University, St. Petersburg, Russia
b Pavol Jozef Šafárik University in Košice, Košice, Slovakia

Abstract: Using a quantum field theory renormalization group, we consider models of advection of a vector field and a tracer field by a compressible turbulent flow. Both advected fields are considered passive, i.e., they do not have a backward influence on the fluid dynamics. The velocity field is generated by the stochastic Navier–Stokes equation. We consider the model in the vicinity of the special space dimension $d=4$. Analysis of the model in the vicinity of this dimension allows constructing a double expansion in the parameters $y$ (related to the correlator of the random force for the velocity field) and $\varepsilon=4-d$. We show that in the framework of the one-loop approximation, the two models have similar scaling behavior, i.e., similar behavior of the correlation and structure functions in the inertial range. We calculate all critical dimensions, in particular, of tensor composite operators, in the leading order of the double expansion in $y$ and $\varepsilon$.

Keywords: developed turbulence, magnetohydrodynamics, turbulent advection, renormalization group, anomalous scaling.

Received: 10.01.2019
Revised: 22.03.2019

DOI: 10.4213/tmf9695


 English version:
Theoretical and Mathematical Physics, 2019, 200:3, 1294–1312

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