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[4] Peyras, L., Royet, P. and Degoutte, G. 1992. Flow and Energy Dissipation over Stepped Gabion Weirs, Journal of hydraulic Engineering, A.S.C.E.,118 (5):707-717. [5] Chanson, H. 1994. Comparison of Energy Dissipation Nappe and Skimming Flow Regime on Stepped Chutes. Journal of Hydraulic Research, I.A.H.R., 32 (2): 213-218. [6] Rajaratnam, N. 1990. Skimming Flow in Stepped Spillways. Journal of Hydraulic Engineering, A.S.C.E., 16 (4): 587-591. [7] Rice, C. E., and K. C. Kadavy. 1996. Model study of a roller compacted concrete stepped spillway. J. Hydraul. Eng. ASCE 122(6): 92‐297. [8] Yasuda, Y., and I. Ohtsu. 1999. Flow resistance of skimming flow in stepped channels. In Proc. 28th IAHR Congress, Session B14. International Association for Hydro‐Environment Engineering and Research.. [9] Chanson, H., and L. Toombes. 2002. Energy dissipation and air entrainment in a stepped storm waterway: An experimental study. J. Irrig. and Drainage Eng. ASCE 128(5): 305‐315. [10] Boes, R. M., and W. H. Hager. 2003a. Two‐phase flow characteristics of stepped spillways. J. Hydraul. Eng. ASCE 129(9): 661‐670. [11] Gonzalez, C. A. 2005. An experimental study of free‐surface aeration on embankment stepped chutes. PhD diss. Queensland, Australia: University of Queensland, Department of Civil Engineering. [12] Takahashi, M., Y. Yasuda, and I. Ohtsu. 2005. Effect of Reynolds number on characteristics of skimming flows in stepped channels. In Proc. 31st Biennial IAHR Congress, 2880‐2889. B. H. Jun, S. I. Lee, I. W. Seo, and G. W. Choi, eds. International Association for Hydro‐Environment Engineering and Research. [13] Hunt, S. L., and K. C. Kadavy. 2007. Renwick dam RCC stepped spillway research. In Proc. ASDSO Annual Meeting, CD‐ROM. Lexington, Ky.: Association of State Dam Safety Officials. [14] Hunt, S. L., and K. C. Kadavy. 2008. Velocities and energy dissipation on a flat‐sloped stepped spillway. ASABE Paper No. 084151. St. Joseph, Mich.: ASABE. [15] Felder, S., and H. Chanson. 2008. Turbulence and turbulent length and time scales in skimming flows on a stepped spillway: Dynamic similarity, physical modeling, and scale effects. Queensland, Australia: University of Queensland, Division of Civil Engineering. [16] Boes R M, Hager W H. Hydraulic design of stepped spillways. J Hydraul Eng, 2003, 129(9): 671—679 698
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Book of Full Papers Symposium Hydro Engineering
Title
Book of Full Papers
Subtitle
Symposium Hydro Engineering
Author
Gerald Zenz
Publisher
Verlag der Technischen Universität Graz
Location
Graz
Date
2018
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-85125-620-8
Size
20.9 x 29.6 cm
Pages
2724
Keywords
Hydro, Engineering, Climate Changes
Categories
International
Naturwissenschaften Physik
Technik
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