Nonlocal amplification of intense vorticity in turbulent flows

The nonlinear and nonlocal coupling of vorticity and strain rate constitutes a major hindrance in understanding the self-amplification of velocity gradients in turbulent fluid flows. Utilizing highly resolved direct numerical simulations of isotropic turbulence in periodic domains of up to 12288^{3}...

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Main Authors: Dhawal Buaria, Alain Pumir
Format: Article
Language:English
Published: American Physical Society 2021-11-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.3.L042020
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author Dhawal Buaria
Alain Pumir
author_facet Dhawal Buaria
Alain Pumir
author_sort Dhawal Buaria
collection DOAJ
description The nonlinear and nonlocal coupling of vorticity and strain rate constitutes a major hindrance in understanding the self-amplification of velocity gradients in turbulent fluid flows. Utilizing highly resolved direct numerical simulations of isotropic turbulence in periodic domains of up to 12288^{3} grid points and Taylor-scale Reynolds number R_{λ} in the range 140–1300, we investigate this nonlocality by decomposing the strain-rate tensor into local and nonlocal contributions obtained through Biot-Savart integration of vorticity in a sphere of radius R. We find that vorticity is predominantly amplified by the nonlocal strain coming beyond a characteristic scale size, which varies as a simple power law of vorticity magnitude. The underlying dynamics preferentially align vorticity with the most extensive eigenvector of nonlocal strain. The remaining local strain aligns vorticity with the intermediate eigenvector and does not contribute significantly to amplification; instead it surprisingly attenuates intense vorticity, leading to breakdown of the observed power law and ultimately also the scale invariance of vorticity amplification, with important implications for prevailing intermittency theories.
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spelling doaj.art-e04f45b0cd684bd8892b2368c2dbb2492024-04-12T17:15:31ZengAmerican Physical SocietyPhysical Review Research2643-15642021-11-0134L04202010.1103/PhysRevResearch.3.L042020Nonlocal amplification of intense vorticity in turbulent flowsDhawal BuariaAlain PumirThe nonlinear and nonlocal coupling of vorticity and strain rate constitutes a major hindrance in understanding the self-amplification of velocity gradients in turbulent fluid flows. Utilizing highly resolved direct numerical simulations of isotropic turbulence in periodic domains of up to 12288^{3} grid points and Taylor-scale Reynolds number R_{λ} in the range 140–1300, we investigate this nonlocality by decomposing the strain-rate tensor into local and nonlocal contributions obtained through Biot-Savart integration of vorticity in a sphere of radius R. We find that vorticity is predominantly amplified by the nonlocal strain coming beyond a characteristic scale size, which varies as a simple power law of vorticity magnitude. The underlying dynamics preferentially align vorticity with the most extensive eigenvector of nonlocal strain. The remaining local strain aligns vorticity with the intermediate eigenvector and does not contribute significantly to amplification; instead it surprisingly attenuates intense vorticity, leading to breakdown of the observed power law and ultimately also the scale invariance of vorticity amplification, with important implications for prevailing intermittency theories.http://doi.org/10.1103/PhysRevResearch.3.L042020
spellingShingle Dhawal Buaria
Alain Pumir
Nonlocal amplification of intense vorticity in turbulent flows
Physical Review Research
title Nonlocal amplification of intense vorticity in turbulent flows
title_full Nonlocal amplification of intense vorticity in turbulent flows
title_fullStr Nonlocal amplification of intense vorticity in turbulent flows
title_full_unstemmed Nonlocal amplification of intense vorticity in turbulent flows
title_short Nonlocal amplification of intense vorticity in turbulent flows
title_sort nonlocal amplification of intense vorticity in turbulent flows
url http://doi.org/10.1103/PhysRevResearch.3.L042020
work_keys_str_mv AT dhawalbuaria nonlocalamplificationofintensevorticityinturbulentflows
AT alainpumir nonlocalamplificationofintensevorticityinturbulentflows