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Items: 1 to 20 of 115

1.

Large-scale length that determines the mean rate of energy dissipation in turbulence.

Mouri H, Hori A, Kawashima Y, Hashimoto K.

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Aug;86(2 Pt 2):026309. Epub 2012 Aug 16.

PMID:
23005856
2.

Influence of initial mean helicity on homogeneous turbulent shear flow.

Jacobitz FG, Schneider K, Bos WJ, Farge M.

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Nov;84(5 Pt 2):056319. Epub 2011 Nov 21.

PMID:
22181510
3.

Pumping velocity in homogeneous helical turbulence with shear.

Rogachevskii I, Kleeorin N, Käpylä PJ, Brandenburg A.

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Nov;84(5 Pt 2):056314. Epub 2011 Nov 18.

PMID:
22181505
4.

Scaling hypothesis leading to generalized extended self-similarity in turbulence.

Fujisaka H, Nakayama Y, Watanabe T, Grossmann S.

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Apr;65(4 Pt 2B):046307. Epub 2002 Apr 10.

PMID:
12006013
5.

Stagnation point von Kármán coefficient.

Dallas V, Vassilicos JC, Hewitt GF.

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 2):046306. Epub 2009 Oct 6.

PMID:
19905435
6.

Large-scale magnetic fields in magnetohydrodynamic turbulence.

Alexakis A.

Phys Rev Lett. 2013 Feb 22;110(8):084502. Epub 2013 Feb 21.

PMID:
23473153
7.

Regeneration of small eddies by data assimilation in turbulence.

Yoshida K, Yamaguchi J, Kaneda Y.

Phys Rev Lett. 2005 Jan 14;94(1):014501. Epub 2005 Jan 5.

PMID:
15698086
8.

Forced-dissipative two-dimensional turbulence: A scaling regime controlled by drag.

Tsang YK, Young WR.

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Apr;79(4 Pt 2):045308. Epub 2009 Apr 30.

PMID:
19518293
9.

Spectral imbalance in the inertial range dynamics of decaying rotating turbulence.

Valente PC, Dallas V.

Phys Rev E. 2017 Feb;95(2-1):023114. doi: 10.1103/PhysRevE.95.023114. Epub 2017 Feb 24.

PMID:
28297878
10.

Local structure of turbulence in flows with large Reynolds numbers.

Praskovsky AA.

Chaos. 1991 Aug;1(2):237-241.

PMID:
12779920
11.

Kinetic scale turbulence and dissipation in the solar wind: key observational results and future outlook.

Goldstein ML, Wicks RT, Perri S, Sahraoui F.

Philos Trans A Math Phys Eng Sci. 2015 May 13;373(2041). pii: 20140147. doi: 10.1098/rsta.2014.0147. Review.

12.

Gas-kinetic schemes for direct numerical simulations of compressible homogeneous turbulence.

Liao W, Peng Y, Luo LS.

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 2):046702. Epub 2009 Oct 14.

PMID:
19905477
13.

Dissipation and heating in solar wind turbulence: from the macro to the micro and back again.

Kiyani KH, Osman KT, Chapman SC.

Philos Trans A Math Phys Eng Sci. 2015 May 13;373(2041). pii: 20140155. doi: 10.1098/rsta.2014.0155.

14.

Variational framework for flow optimization using seminorm constraints.

Foures DP, Caulfield CP, Schmid PJ.

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Aug;86(2 Pt 2):026306. Epub 2012 Aug 9.

PMID:
23005853
15.

Numerical simulations of thermal conductivity in dissipative two-dimensional Yukawa systems.

Khrustalyov YV, Vaulina OS.

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Apr;85(4 Pt 2):046405. Epub 2012 Apr 4.

PMID:
22680584
16.
17.

Energy spectrum of grid-generated He II turbulence.

Skrbek L, Niemela JJ, Sreenivasan KR.

Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Dec;64(6 Pt 2):067301. Epub 2001 Nov 19.

PMID:
11736317
18.

Energy transfer and dissipation in forced isotropic turbulence.

McComb WD, Berera A, Yoffe SR, Linkmann MF.

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Apr;91(4):043013. Epub 2015 Apr 21.

PMID:
25974586
19.

Mean-field approximation and a small parameter in turbulence theory.

Yakhot V.

Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Feb;63(2 Pt 2):026307. Epub 2001 Jan 26.

PMID:
11308577
20.

Stably stratified turbulence in the presence of large-scale forcing.

Rorai C, Mininni PD, Pouquet A.

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Jul;92(1):013003. Epub 2015 Jul 6.

PMID:
26274266

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