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In this study, an analytical model to resolve the water profiles equation of free surface flows through riprap has been developed. This model is based on Stephenson’s relation to determine the head loss for different flow states in order to see its ability to reproduce the water profiles. This analytical model has been applied to experimental series realized in a rectangular channel built at the National Agronomic Institute of Tunisia (INAT) in collaboration with engineering consultants of the firm MECATER and in partnership with the INP Toulouse. MECATER is interested in these flows within the framework of a project with the nickel company SLN of ERAMET group in New Caledonia, concerning the protection of mining sterols against water flows at high mountains.
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Tom
Strony
209--215
Opis fizyczny
Bibliogr. 10 poz., rys., tab.
Twórcy
autor
- Laboratory of Water Sciences and Technology, National Institute of Agronomy of Tunisia, University of Carthage, Tunisia
autor
- Laboratory of Water Sciences and Technology, National Institute of Agronomy of Tunisia, University of Carthage, Tunisia
autor
- Institute of fluid Mechanics of Toulouse, National Polytechnic Institute of Toulouse, Toulose, France
autor
- Institute of fluid Mechanics of Toulouse, National Polytechnic Institute of Toulouse, Toulose, France
Bibliografia
- 1. Bari R., Hansen D., 2002, Application of gradually-varied flow algorithms to simulate buried streams, Journal of Hydraulic Research, 40, 6, 673-683
- 2. Bordier C., Zimmer D., 2000, Drainage equations and non-darcian modeling in coarse porous media or geosynthetic materials, Journal of Hydrology, 228, 3, 174-187
- 3. Chow V.T., 1959, Open Channel Hydraulics, McGraw-Hill Book Co, New York, 217-296
- 4. Jouini M., 2012, Study of flow in a wick stones in channel, Master thesis, National Agronomic Institute of Tunis (INAT), Tunisia
- 5. Jouini M., Soualmia A., Saad K., 2013, Etude des ´ecoulements dans une m`eche en pierre, 11th Mechanical Congress, Agadir, Maroc, 103-105
- 6. Michioku K., Maeno S., Furusawa T., Haneda M., 2005, Discharge through a permeable rubble mound weir, Journal of Hydraulic Engineering, 131, 1, 1-10
- 7. Pagliara S., Lotti I., 2009, Surface and subsurface flow through block ramps, Journal of Irrigation and Drainage Engineering, 135, 3, 366-374
- 8. Prasad R., 1970, Numerical method of computing flow profiles ASCE, Journal of the Hydraulics Division, 96, HY1, 75-86
- 9. Soualmia A., Jouini M., Dartus D., 2013, Etude des ´ecoulements dans une m`eche en canal, International Journal of PCN, 68, 86-91
- 10. Stephenson D., 1979, Rockfill in Hydraulic Engineering, Elsevier Science Publishers, New York, USA
Typ dokumentu
Bibliografia
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