Power law and log law velocity profiles in fully developed turbulent pipe flow: equivalent relations at large Reynolds numbers
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Computational Mechanics
Link
http://link.springer.com/content/pdf/10.1007/BF01246916.pdf
Reference17 articles.
1. Barenblatt, G. I.: Scaling laws for fully developed turbulent shear flows. Part I: Basic hypothesis and analysis. J. Fluid Mech.248, 513?520 (1993).
2. Barenblatt, G. I.: Scaling laws for turbulent wall bounded shear flows at very large Reynolds numbers. J. Engng Math.36, 361?384 (1999).
3. Prandtl, L.: The mechanics of viscous fluid. In aerodynamics theory (Durand, W. F., ed.) vol. 3, pp. 34?208 (1935).
4. Zagarola, M. V., Smits, A. J.: Mean-flow scaling of turbulent pipe flow. J. Fluid Mech.373, 33?79 (1988).
5. Afzal, N.: Power law and log law velocity profiles in turbulent boundary-layer flow: equivalent relations at large Reynolds numbers. Acta Mech.151, 195?216 (2001).
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