Numerical Simulation of Turbulent Incompressible Flow with Increasing Adverse Pressure Gradient

Author:

Zubarev V. M.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering,Condensed Matter Physics

Reference18 articles.

1. A. E. Samuel and P. N. Joubert, The 1980–81 AFOSR-HTTM-Stanford Conference on Complex Turbulent Flows: Comparison of Computation and Experiment (S. J. Kline, B. J. Cantwell, and G. M. Lilley, Eds.), in: Proc. 1980 Conference Stanford Univ., Stanford, California, September 3–6, 1980, Mech. Eng. Dept. Stanford University, 1981, Tech. Rep. AFOSR-TR-83–1001, pp. 259–261.

2. P. Bradshaw, B. E. Launder, and J. L. Lumley, Collaborative testing of turbulence models, J. Fluids Eng., 113, 3–4 (1991).

3. Journals of Fluids Engineering Databank, Index of /ejournals/JFE/data/JFE/DB96-243/d4 http://scholar.lib.vt.edu/ejournals/JFE/data/JFE/DB96-243/d4/f0141a .

4. H. K. Myong and N. Kasagi, A new proposal for a k−å turbulence model and its evaluation. 1st report, Development of the model, Trans. Jpn. Soc. Mech. Eng. B, 54, No. 507, 3003–3009 (1988).

5. H. K. Myong and N. Kasagi, A new proposal for a k−å turbulence model and its evaluation. 2nd report, Evaluation of the model, Trans. Jpn. Soc. Mech. Eng. B, 54, No. 508, 3512–3520 (1988).

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