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Research papers

Hydraulic jumps on rough and smooth beds: aggregate approach for horizontal and adverse-sloped beds

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Pages 243-252 | Received 06 Jul 2013, Accepted 04 Feb 2015, Published online: 19 Mar 2015

References

  • Afzal, N., Bushra, A., & Seena, A. (2011). Analysis of turbulent hydraulic jump over transitional rough bed of a rectangular channel: universal relations. Journal of Hydraulic Engineering, 137, 835–845. doi: 10.1061/(ASCE)HY.1943-7900.0000367
  • Bakhmeteff, B. A. (1932). Hydraulics of open channels. New York: McGraw-Hill.
  • Bhuiyan, F., Habibzadeh, N., Rajaratnam, N., & Zhu, D. Z. (2011). Reattached turbulent submerged offset jets on rough beds with shallow tailwater. Journal of Hydraulic Engineering, 137, 1636–1648. doi: 10.1061/(ASCE)HY.1943-7900.0000462
  • Carollo, F. G., Ferro, V., & Pampalone, V. (2007). Hydraulic jump on rough beds. Journal of Hydraulic Engineering, 133, 989–999. doi: 10.1061/(ASCE)0733-9429(2007)133:9(989)
  • Carollo, F. G., Ferro, V., & Pampalone, V. (2009). New solution of classical hydraulic jump. Journal of Hydraulic Engineering, 135, 527–531. doi: 10.1061/(ASCE)HY.1943-7900.0000036
  • Chanson, H. (2009). Turbulent air-water flows in hydraulic structures: dynamic similarity and scale effects. Environmental Fluid Mechanics, 9, 125–142. doi: 10.1007/s10652-008-9078-3
  • Chanson, H., & Murzyn, F. (2008). Froude similitude and scale effects affecting air entrainment in hydraulic jumps. Proceedings of the World Environmental and Water Resources Congress 2008 1–10.
  • Ead, S. A., & Rajaratnam, N. (2002). Hydraulic jumps on corrugated beds. Journal of Hydraulic Engineering, 128, 656–663. doi: 10.1061/(ASCE)0733-9429(2002)128:7(656)
  • Gill, M. A. (1980). Effect of boundary roughness on hydraulic jump. International Water Power & Dam Construction, 32(1), 22–24.
  • Habibzadeh, A., & Omid, M. H. (2009). Bedload resistance in supercritical flow. International Journal of Sediment Research, 24, 400–409. doi: 10.1016/S1001-6279(10)60013-3
  • Hager, W. H., & Bretz, N. V. (1988). Sill controlled stilling basin. Proceedings of the International Symposium on Hydraulics for High Dams, 273–280.
  • Hager, W. H., Bremen, R., & Kawagowshi, N. (1990). Classical hydraulic jump: Length of roller. Journal of Hydraulic Research, 28, 591–608. doi: 10.1080/00221689009499048
  • Harleman, D. R. F. (1959). Discussion of ‘Turbulence characteristics of the hydraulic jump’ by Rouse, H., Siao, T. T., & Nagaratnam, S. Transactions ASCE, 124, 959–962.
  • Heller, V. (2011). Scale effects in physical hydraulic engineering models. Journal of Hydraulic Research, 49, 293–306. doi: 10.1080/00221686.2011.578914
  • Hughes, W. C., & Flack, J. E. (1984). Hydraulic jump properties over a rough bed. Journal of Hydraulic Engineering, 110, 1755–1771. doi: 10.1061/(ASCE)0733-9429(1984)110:12(1755)
  • Jan, C. D., & Chang, C. J. (2009). Hydraulic jumps in an inclined rectangular chute contraction. Journal of Hydraulic Engineering, 135, 949–958. doi: 10.1061/(ASCE)HY.1943-7900.0000100
  • Leutheusser, H. J., & Kartha, V. C. (1972). Effects of inflow condition on hydraulic jump. Journal of Hydraulic Division, 98, 1367–1383.
  • Leutheusser, H. J., & Schiller, E. J. (1975). Hydraulic jump in a rough channel. International Water Power & Dam Construction, 27, 186–191.
  • McCorquodale, J. A., & Khalifa, A. (1983). Internal flow in hydraulic jumps. Journal of Hydraulic Engineering, 109, 684–701. doi: 10.1061/(ASCE)0733-9429(1983)109:5(684)
  • McCorquodale, J. A., & Mohamed, M. S. (1994). Hydraulic jumps on adverse slopes. Journal of Hydraulic Research, 32(1), 119–130. doi: 10.1080/00221689409498793
  • Okada, A., & Aki, S. (1955). Experimental study of hydraulic jump on reversed slope apron. Journal of Central Research Institute of Electric Power Industry Technical Lab, 5(6).
  • Ohtsu, I. (1981). Forced hydraulic jump by a vertical sill. Transactions of the Japan Society of Civil Engineers, 13, 165–168.
  • Ohtsu, I., Yasuda, Y., & Yamanaka, Y. (1991). Drag on vertical sill of forced jump. Journal of Hydraulic Research, 29(1), 29–47. doi: 10.1080/00221689109498991
  • Pagliara, S., & Peruginelli, A. (2000). Limiting and sill-controlled adverse-slope hydraulic jump. Journal of HydraulicEngineering, 126, 847–851.
  • Pagliara, S., Lotti, I., & Palermo, M. (2008). Hydraulic jumps on rough bed of stream rehabilitation structures. Journal of Hydro-Environment Research, 2(1), 29–38. doi: 10.1016/j.jher.2008.06.001
  • Pagliara, S., Roshni, T., & Carnacina, I. (2009). Aeration and velocity profile over block ramp elements. Proceedings of the 33rd IAHR Congress, 4925–4932.
  • Pagliara, S., Carnacina, I., & Roshni, T. (2010). Air-water flows in the presence of staggered and row boulders under macroroughness conditions. Water Resources Research, 46, 1–11. doi: 10.1029/2009WR008834
  • Paterka, A. J. (1983). Hydraulic Design of Stilling Basins and Energy Dissipators (Report No. 25). Denver: US Department of the Interior, Bureau of Reclamation, Engineering Monograph.
  • Rajaratnam, N. (1965). The hydraulic jump as a wall jet. Journal of Hydraulic Division, 91, 107–132.
  • Rajaratnam, N. (1966). The hydraulic jump in sloping channels. Irrigation and Power, 32, 137–149.
  • Rajaratnam, N. (1967). Hydraulic jumps. Advances in hydroscience (pp. 197–280). San Diego: Academic.
  • Stevens, C. J. (1942). Discussion of ‘The hydraulic jumps in sloping channels’. Transactions ASCE, 2228, 1125–1135.
  • Wu, S., & Rajaratnam, N. (1995). Free jumps, submerged jumps and wall jets. Journal of Hydraulic Research, 33, 177–212. doi: 10.1080/00221689509498670

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