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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);


Lomonosov Moscow State University, Institute of Mechanics, Michurinskii prosp. 1, Moscow, 119192, Russian Federation

Discusses the power formula for turbulent velocity profiles in a circular tube offered by G.I. Barenblatt, A.J. Chorin, and V.M. Prostokishin in their paper "Turbulent flows at very large Reynolds numbers: new lessons learned" (Phys. Usp. 57 250 (2014); Usp. Fiz. Nauk 184 265 (2014)).

Fulltext is available at IOP
Keywords: turbulence, turbulent flow in pipes, scaling laws, log law, power formula for the velocity profile
PACS: 47.10.−g, 47.27.−i, 47.27.Ak, 47.27.Gs (all)
DOI: 10.3367/UFNe.0185.201502g.0213
URL: https://ufn.ru/en/articles/2015/2/f/
Citation: Vigdorovich I I "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)
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Received: 12th, June 2014, revised: 19th, August 2014, 2nd, September 2014

Оригинал: Вигдорович И И «Описывает ли степенная формула турбулентный профиль скорости в трубе? (Комментарий к статье Г.И. Баренблатта, А.Дж. Корина, В.М. Простокишина "Турбулентные течения при очень больших числах Рейнольдса: уроки новых исследований" [УФН 184 265 2014])» УФН 185 213–216 (2015); DOI: 10.3367/UFNr.0185.201502g.0213

References (7) ↓ Cited by (5) Similar articles (1)

  1. Barenblatt G I, Korin A Dzh, Prostokishin V M Usp. Fiz. Nauk 184 265 (2014); Barenblatt G I, Chorin A J, Prostokishin V M Phys. Usp. 57 250 (2014)
  2. Barenblatt G I, Korin A Dzh, Prostokishin V M Usp. Fiz. Nauk 184 1371 (2014); Barenblatt G I, Chorin A J, Prostokishin V M Phys. Usp. 57 (12) (2014)
  3. Monin A S, Yaglom A M Statisticheskaya Gidromekhanika. Mekhanika Turbulentnosti Vol. 1 (M.: Nauka, 1965); Monin A S, Yaglom A M Statistical Fluid Mechanics; Mechanics Of Turbulence Vol. 1 (Cambridge, Mass.: MIT Press, 1971)
  4. Zagarola M V "Mean flow scaling of turbulent pipe flow" Ph.D. Thesis (Princeton: Princeton Univ., 1996)
  5. McKeon B J et al. J. Fluid Mech. 501 135 (2004)
  6. Landau L D, Lifshits E M Mekhanika Sploshnykh Sred: Gidrodinamika i Teoriya Uprugosti (Teoreticheskaya fizika) Vol. 3 (Pod obshch. red. L D Landau) (M. - L.: OGIZ GITTL, 1944)
  7. Nikuradse J "Gesetzmäßigkeiten der turbulenten Strömung in glatten Rohren" VDI (Verein Deutscher Ingenieure)-Forschungsheft 356, Supplement to "Engineering Research" ("Forschung auf dem Gebiet des Ingenieurwesen") Edition B Vol. 3 (Berlin: VDI-Verlag, 1932); Translated into English, Nikuradse J "Laws of turbulent flow in smooth pipes" NASA TT F-10,359 (Washington: National Aeronautics and Space Administration, 1966); Perevod na russk. yaz., Nikuradze I "Zakonomernosti turbulentnogo dvizheniya v gladkikh trubakh" Problemy Turbulentnosti (Pod red. M A Velikanova, N T Shveikovskogo) (M. - L.: ONTI, 1936) p. 75

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