PACS numbers

47.27.Gs Isotropic turbulence; homogeneous turbulence
  1. I.I. Vigdorovich “Does the power formula describe turbulent velocity profiles in tubes? (comment on "Turbulent flows at very large Reynolds numbers: new lessons learned" [Phys. Usp. 57 250 (2014); Phys. Usp. 58 196–198 (2015)
    47.10.−g, 47.27.−i, 47.27.Ak, 47.27.Gs (all)
  2. G.I. Barenblatt, A.J. Chorin, V.M. Prostokishin “Corrigenda to the paper by G I Barenblatt, A J Chorin, V M Prostokishin "Turbulent flows at very large Reynolds numbers: new lessons learned" (Usp. Fiz. Nauk, March 2014, Vol. 184, No. 3, pp. 265—272)Phys. Usp. 57 1248–1248 (2014)
    47.10.−g, 47.27.−i, 47.27.Ak, 47.27.Gs (all)
  3. A.A. Chernyshov, K.V. Karelsky, A.S. Petrosyan “Subgrid-scale modeling for the study of compressible magnetohydrodynamic turbulence in space plasmasPhys. Usp. 57 421–452 (2014)
    47.27.E−, 47.27.ep, 47.27.Gs, 52.35.Ra, 52.65.Kj (all)
  4. G.I. Barenblatt, A.J. Chorin, V.M. Prostokishin “Turbulent flows at very large Reynolds numbers: new lessons learnedPhys. Usp. 57 250–256 (2014)
    47.10.−g, 47.27.−i, 47.27.Ak, 47.27.Gs (all)
  5. Modern problems in the physical sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 30 November 2011)Phys. Usp. 55 808–837 (2012)
    01.10.Fv, 04.20.−q, 04.70.−s, 47.27.Gs, 47.35.Pq, 68.03.Kn, 72.25.Hg, 72.25.Pn, 72.25.Rb, 71.35.−y, 73.63.Hs, 78.47.−p, 78.67.−n, 96.50.−e, 96.60.−j, 95.75.−z, 98.80.−k (all)
  6. L.V. Abdurakhimov, M.Yu. Brazhnikov et alKinetic and discrete turbulence on the surface of quantum liquidsPhys. Usp. 55 818–825 (2012)
    47.27.Gs, 47.35.Pq, 68.03.Kn (all)
  7. A.M. Yaglom “A new book on the mechanics of turbulenceSov. Phys. Usp. 31 685–687 (1988)
    47.27.Gs, 47.27.er, 47.27.De, 47.27.ef (all)
  8. A.N. Kolmogorov “Local structure of turbulence in an incompressible viscous fluid at very high Reynolds numbersSov. Phys. Usp. 10 734–746 (1968)
    47.27.Gs, 47.27.Jv (all)
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