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Turbulence anisotropy and the SO(3) description

Version 4 2024-03-12, 13:40
Version 3 2023-10-29, 10:07
journal contribution
posted on 2024-03-12, 13:40 authored by Adrian Staicu, Bart VorselaarsBart Vorselaars, Willem van de Water
<p>We study strongly turbulent windtunnel flows with controlled anisotropy. Using a recent formalism based on angular momentum and the irreducible representations of the SO(3) rotation group, we attempt to extract this anisotropy from the angular dependence of second-order structure functions. Our instrumentation allows a measurement of both the separation and the angle dependence of the structure function. In axisymmetric turbulence which has a weak anisotropy, this more extended information produces ambiguous results. In more strongly anisotropic shear turbulence, the SO(3) description enables one to find the anisotropy scaling exponent. The key quality of the SO(3) description is that structure functions are a mixture of algebraic functions of the scale with exponents ordered such that the contribution of anisotropies diminishes at small scales. However, we find that in third-order structure functions of homogeneous shear turbulence the anisotropic contribution is always large and of the same order of magnitude as the isotropic part. Our results concern the minimum instrumentation needed to determine the parameters of the SO(3) description, and raise several questions about its ability to describe the angle dependence of high-order structure functions.</p>

History

School affiliated with

  • School of Mathematics and Physics (Research Outputs)

Publication Title

Physical Review E

Volume

68

Issue

4

Publisher

American Physical Society

ISSN

1539-3755

eISSN

1550-2376

Date Submitted

2015-08-05

Date Accepted

2003-10-20

Date of First Publication

2003-10-20

Date of Final Publication

2003-10-20

Date Document First Uploaded

2015-08-05

ePrints ID

18238

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