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A Study of the Sedimentation and Storage Capacity Depletion of a Reservoir Cover

A Study of the Sedimentation and Storage Capacity Depletion of a Reservoir

Open Access
|Jun 2023

References

  1. Ali, Y. S. A. – et al. (2014) Sediment balances in the Blue Nile River Basin. Int. J. Sediment Res., 29(3), 316–328.
  2. Auel, C. – Boes, R. M. (2012) Sustainable reservoir management using sediment bypass tunnels. In: Proceedings of the 24th ICOLD Congress, Kyoto, Japan, 2–8 June, 224–241.
  3. BCEOM (1998) Abbay River Basin Integrated Development Master Plan ProjectPhase II. Vol. X – Land Resources Development, Parts III and IV – Land Cover/Land Use and Land Evaluation, Ministry of Water Resources, Addis Ababa, Ethiopia.
  4. BCEOM (1999) Abbay River Basin Integrated Development Master Plan ProjectPhase II. Vol. IX – Land Resources Development, Part II – Semi-Detailed Soils Survey, Ministry of Water Resources, Addis Ababa, Ethiopia.
  5. Bennett, N. D. – et al. (2013) Characterizing performance of environmental models. Environ. Model. Softw., 40, 1–20.
  6. Betrie, G. D. – et al. (2011) Sediment management modeling in Blue Nile Basin using SWAT model. Hydrol. Earth Syst. Sci., 15, 807–818.
  7. Borland, W. M. (1971) Reservoir sedimentation. In: Shen, H. W. (ed.), River Mechanics, Vol. II, Fort Collins, CO, USA: Colorado State University, 29.1–29.38.
  8. Brown, C. B. (1943) Discussion of “Sedimentation in reservoirs” by Witzig, B. J. Proc. ASCE, 69(6), 1493–1499.
  9. Brune, G. M. (1953) Trap efficiency of reservoirs. Trans. AGU, 34(3), 407–418.
  10. Bube, K. P. – Trimble, S. W. (1986) Revision of the Churchill reservoir trap-efficiency curves using smoothing splines. J. Am.Water Resour. Assoc., 22 (2), doi:10.1111/j.1752-1688.1981.tb01304.x.
  11. Camp, T. R. (1946) Sedimentation and the design of settling tanks. Trans. ASCE, 111(1), 895–936.
  12. Chen, C.-N. (1975) Design of sediment retention basins. In: Proceedings of the National Symposium on Urban Hydrology and Sediment Control, Lexington, KY, USA: University of Kentucky, 28–31 July, 285–298.
  13. Cheng, N. S. (1997a) Simplified settling velocity formula for sediment particle. J. Hydraul. Eng., 123(2), 149–152.
  14. Cheng, N. S. (1997b) Effect of concentration on settling velocity of sediment particles. J. Hydraul. Eng., 123(8), 728–731.
  15. Churchill, M. A. (1948) Discussion of “Analyses and use of reservoir sedimentation data” by Gottschalk, L. C. In: Proceedings of the Federal Interagency Sedimentation Conference, Denver, CO, USA, 6–8 May 1947, 139–140.
  16. Crowder, B. M. (1987) Economic costs of reservoir sedimentation: A regional approach to estimating cropland erosion damage. J. Soil Water Conserv., 42(3), 194–197.
  17. Curtis, D. C. – McCuen, R. H. (1977) Design efficiency of stormwater detention basins. J. Water Resour. Plan. Manag. Div., 103(1), 125–140.
  18. Dendy, F. E. (1974) Sediment trap efficiency of small reservoirs. Trans. ASAE, 17(5), 898–988.
  19. Dey, S. – Ali, S. Z. – Padhi, E. (2019) Terminal fall velocity: The legacy of Stokes from the perspective of fluvial hydraulics. Proc. R. Soc. A, 475, doi:10.1098/rspa.2019.0277.
  20. Dhamotharan, S. – Gulliver, J. S. – Stefan, H. G. (1981) Unsteady one-dimensional settling of suspended sediment. Water Resour. Res., 17(4), 1125–1132.
  21. Easton, Z. M. – et al. (2010) A multibasin SWAT model analysis of runoff and sedimentation in the Blue Nile, Ethiopia. Hydrol. Earth Syst. Sci., 14, 1827–1841.
  22. Espinosa-Villegas, C. O. – Schnoor, J. L. (2009) Comparison of long-term observed sediment trap efficiency with empirical equations for Coralville Reservoir, Iowa. J. Environ. Eng., 135(7), 518–525.
  23. Ferguson, R. I. (1986) River loads underestimated by rating curves. Water Resour. Res., 22(1), 74–76.
  24. Garg, V. – Jothiprakash, V. (2010) Modeling the time variation of reservoir trap efficiency. J. Hydrol. Eng., 15(12), 1001–1015.
  25. Gebremicael, T. G. – et al. (2013) Trend analysis of runoff and sediment fluxes in the Upper Blue Nile Basin: A combined analysis of statistical tests, physically-based models and land-use maps. J. Hydrol., 482, 57–68.
  26. Gill, M. A. (1979) Sedimentation and useful life of reservoirs. J. Hydrol., 44, 89–95.
  27. Gill, M. A. (1988) Planning the useful life of a reservoir. International Water Power and Dam Construction, 40(5), 46–47.
  28. Graf, W. L. (2005) Geomorphology and American dams: The scientific, social, and economic context. Geomorphology, 71(1–2), 3–26.
  29. Hazen, A. (1904) On sedimentation. Trans. ASCE, 53(2), 45–71.
  30. Heinemann, H. G. (1981) A new sediment trap-efficiency curve for small reservoirs. J. Am. Water Resour. Assoc., 17(5), doi:10.1111/j.1752-1688.1981.tb01304.x.
  31. Heinemann, H. G. (1984) Reservoir trap efficiency. In: Hadley, R. F. and Walling, D. E. (eds.), Erosion and Sediment Yield: Some Methods of Measurement and Modeling, Geo Books, Norwich, UK, 201–218.
  32. International Panel of Experts [IPoE] (2013) On Grand Ethiopian Renaissance Dam Project. Final Report, Addis Ababa, Ethiopia.
  33. Juracek, K. E. (2011) Suspended Sediment Loads, Reservoir Sediment Trap Efficiency, and Upstream and Downstream Channel Stability for Kanopolis and Tuttle Creek Lakes, KS, 2008–10. U.S. Geological Survey Scientific Investigations Report 2011–5187.
  34. Juracek, K. E. (2013) Suspended Sediment Loads and Reservoir Sediment Trap Efficiency for Clinton Lake, KS, 2010–12. U.S. Geological Survey Scientific Investigations Report 2013–5153.
  35. Kansas Biological Survey (2011) Bathymetric and Sediment Survey of Toronto Reservoir, Woodson County, KS. Report 2010–03.
  36. Kansas Biological Survey (2014) Bathymetric Survey of John Redmond Reservoir, Coffey County, KS. Report 2014–01.
  37. Karaushev, A. V. (1966) The silting of small reservoirs and ponds – theory and calculation methods. AGU, Soviet Hydrology: Selected papers, No. 1, 35–46.
  38. Kira, H. (1978) On the trap efficiency of reservoirs and sediment budget in Japan. Trans. JSIDRE, 78, 16–23 [in Japanese].
  39. Lane, E. W. – Koelzer, V. A. (1943) Density of Sediments Deposited in Reservoirs. Report No. 9, In: A Study of Methods Used in Measurement and Analysis of Sediment Loads in Streams, Hydraulic Laboratory, University of Iowa, Iowa City, IA, USA, 49–51.
  40. Lasdon, L. S. – Fox, R. L. – Ratner, M. W. (1974) Non-linear optimization using the generalized reduced gradient method. Revue Fr. d’Automatique Inform. Rech. Opér. 3(8), 73–103.
  41. Lee, C. J. – Rasmussen, P. P. – Ziegler, A. C. (2008) Characterization of Suspended Sediment Loading to and from John Redmond Reservoir, East-Central Kansas, 2007–08. U.S. Geological Survey Scientific Investigations Report 2008–5123.
  42. Lee, C. J. – Foster, G. (2013) Assessing the potential of reservoir outflow management to reduce sedimentation using continuous turbidity monitoring and reservoir modeling. Hydrol. Process., 27, 1426–1439.
  43. Lewis, S. E. – et al. (2013) Calculating sediment trapping efficiencies for reservoirs in tropical settings: A case study from the Burdekin Falls Dam, NE Australia. Water Resour. Res., 49, doi:10.1002/wrcr.20117.
  44. Li, J. – et al. (2018) Estimating the sediment trap efficiency and lifespan of cascaded reservoirs in the Upper Yangtze River Basin, China. Lakes and Reservoirs, 23(3), 204–216.
  45. Mau, D. P. (2001) Sediment Deposition and Trends and Transport of Phosphorus and other Chemical Constituents, Cheney Reservoir Watershed, South-Central Kansas. U.S. Geological Survey Water-Resources Investigations Report 01–4085.
  46. Miller, C. R. (1951) Analysis of Flow-Duration: Sediment-Rating Curve Method of Computing Sediment Yield. U.S. Bureau of Reclamation, Denver, CO, USA.
  47. Miller, C. R. (1953) Determination of the Unit Weight of Sediment for Use in Sediment Volume Computations. U.S. Bureau of Reclamation, Denver, CO, USA.
  48. Morris, G. L. – Fan, J. (1998) Reservoir Sedimentation Handbook. McGraw Hill, New York, NY, USA, 10.24–10.28.
  49. Parsaie, A. – Ememgholizadeh, S. – Haghiabi, A. H. – Moradinejad, A. (2018) Investigation of trap efficiency of retention dams. Water Supply, 18(2), 450–459.
  50. Polyanin, A. D. – Manzhirov, A. V. (2007) Handbook of Mathematics for Engineers and Scientists. Chapman and Hall/CRC, Taylor and Francis Group, Boca Raton, FL, USA, 353–459.
  51. Schleiss, A. – De Cesare, G. – Jenzer-Althaus, J. (2010) Verlandung der Stauseen gefährdet die nachhaltige Nutzung der Wasserkraft (Reservoir sedimentation endangers the sustainable use of hydropower). Wasser Energie Luft, 102(1), 31–40 [in German].
  52. Siyam, A. M. – Yeoh, J. S. – Loveless, J. H. (2001) Sustainable reservoir sedimentation control. In: Proceedings of the 29th IAHR Congress, Beijing, China, 16–21 Sept., 77–82.
  53. Stone, M. L. – Juracek, K. E. – Graham, J. L. – Foster, G. M. (2015) Quantifying suspended sediment loads delivered to Cheney Reservoir, KS: Temporal patterns and management implications. J. Soil Water Conserv., 70(2), 91–100.
  54. Syvitski, J. P. M. – Kettner, A. (2011) Sediment flux and the Anthropocene. Phil. Trans. R. Soc. A, 369, 957–975.
  55. Tan, G. – et al. (2019) Review and improvement of conventional models for reservoir sediment trapping efficiency. Heliyon, 5, doi:10.1016/j.heliyon.2019.e02458.
  56. Toniolo, H. – Parker, G. – Voller, V. (2007) Role of ponded turbidity currents in reservoir trap efficiency. J. Hydraul. Eng., 133(6), 579–595.
  57. USBR (2006) Erosion and Sedimentation Manual. U.S. Department of the Interior, Bureau of Reclamation, Technical Service Center, Sedimentation and River Hydraulics Group, Denver, CO, USA, 2.63–2.64.
  58. Vanmaercke, M. – et al. (2012) How long should we measure? An exploration of factors controlling the inter-annual variation of catchment sediment yield. J. Soils Sediments, 12, 603–619.
  59. Verstraeten, G. – Poesen, J. (2000) Estimating trap efficiency of small reservoirs and ponds: Methods and implications for the assessment of sediment yield. Prog. Phys. Geogr., 24, 219–251.
  60. Vörösmarty, C. J. – et al. (2003) Anthropogenic sediment retention: Major global impact from registered river impoundments. Glob. Planet. Change, 39, 169–190.
  61. White, W. R. (2019) A Review of Current Knowledge, World Water: Resources, Usage and the Role of Man-Made Reservoirs. 3rd ed., Foundation for Water Research, Marlow, UK, 30–31.
  62. Williams, J. R. (1975) Sediment-yield prediction with universal equation using runoff energy factor. In: Present and Prospective Technology for Predicting Sediment Yields and Sources, Proceedings of the Sediment-Yield Workshop, USDA Sedimentation Laboratory, Oxford, MS, USA, 28–30 Nov., 244–252.
  63. Wisser, D. – Frolking, S. – Hagen, S. – Bierkens, M. F. P. (2013) Beyond peak reservoir storage? A global estimate of declining water storage capacity in large reservoirs. Water Resour. Res., 49, doi:10.1002/wrcr.20452.
  64. Xiaoqing, Y. (2003) Manual on Sediment Management and Measurement. World Meteorological Organization, Operational Hydrology Report No. 47, WMO-No. 948, Secretariat of the World Meteorological Organization, Geneva, Switzerland, 96.
DOI: https://doi.org/10.2478/sjce-2023-0011 | Journal eISSN: 1338-3973 | Journal ISSN: 1210-3896
Language: English
Page range: 37 - 47
Published on: Jun 30, 2023
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Yebegaeshet T. Zerihun, published by Slovak University of Technology in Bratislava
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