Scaling laws for fully developed turbulent shear flows. Part 1. Basic hypotheses and analysis

Author:

Barenblatt G. I.

Abstract

The present work consists of two parts. Here in Part 1, a scaling law (incomplete similarity with respect to local Reynolds number based on distance from the wall) is proposed for the mean velocity distribution in developed turbulent shear flow. The proposed scaling law involves a special dependence of the power exponent and multiplicative factor on the flow Reynolds number. It emerges that the universal logarithmic law is closely related to the envelope of a family of power-type curves, each corresponding to a fixed Reynolds number. A skin-friction law, corresponding to the proposed scaling law for the mean velocity distribution, is derived.In Part 2 (Barenblatt & Prostokishin 1993), both the scaling law for the velocity distribution and the corresponding friction law are compared with experimental data.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference14 articles.

1. Barenblatt, G. I. & Prostokishin, V. M. 1993 Scaling laws for fully developed turbulent shear flows. Part 2. Processing of experimental data.J. Fluid Mech. 248,521–529.

2. Amit, D. 1978 Field theory, the Renormalization Group and Critical Phenomena .McGraw Hill.

3. Nikuradze, J. 1932 Gesetzmässigkeiten der turbulenten Strömung in glatten Röhren. VDI Forschungsheft , No. 356.

4. Kolmogorov, A. N. , Petrovsky, I. G. & Piskunov, N. S. 1937 The investigation of a diffusion equation taking into account the growth of matter quantity and its application to a biological problem. Bull. Moscow Univ. A ,vol. 1, no. 6.

5. Monin, A. S. & Yaglom, A. M. 1971 Statistical Fluid Mechanics ,Vol. 1.MIT Press.

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