Analysis of Experimental Investigations of Self-Similar Intermediate Structures in Zero-Pressure Boundary Layers at Large Reynolds Numbers
Barenblatt, G. I. ; Chorin, A. J. ; Prostokishin, V. M.
arXiv, 0002004 / Harvested from arXiv
Analysis of the Stockholm group data on zero-pressure-gradient boundary flows, presented in the thesis of J.~M.~\"Osterlund ({\tt http://www.mesh.kth.se/$\sim$jens/zpg/}) is performed. The results of processing of all 70 mean velocity profiles are presented. It is demonstrated that, properly processed, these data lead to a conclusion opposite from that of the thesis and related papers: they confirm the Reynolds-number-dependent scaling law and disprove the conclusion that the flow in the intermediate ("overlap") region is Reynolds-number-independent.
Publié le : 2000-02-03
Classification:  Mathematical Physics,  Mathematics - Numerical Analysis
@article{0002004,
     author = {Barenblatt, G. I. and Chorin, A. J. and Prostokishin, V. M.},
     title = {Analysis of Experimental Investigations of Self-Similar Intermediate
  Structures in Zero-Pressure Boundary Layers at Large Reynolds Numbers},
     journal = {arXiv},
     volume = {2000},
     number = {0},
     year = {2000},
     language = {en},
     url = {http://dml.mathdoc.fr/item/0002004}
}
Barenblatt, G. I.; Chorin, A. J.; Prostokishin, V. M. Analysis of Experimental Investigations of Self-Similar Intermediate
  Structures in Zero-Pressure Boundary Layers at Large Reynolds Numbers. arXiv, Tome 2000 (2000) no. 0, . http://gdmltest.u-ga.fr/item/0002004/