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Review

Hydraulic design aspects of rock-weir fishways with notch for habitat connectivity

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Pages 94-109 | Received 21 Dec 2018, Accepted 23 Jul 2019, Published online: 10 Dec 2019

References

  • ANSYS-CFX. 2015. Release 16.2. Canonsburg (PA): ANSYS Inc.
  • Baki ABM, Zhu DZ, Harwood A, Lewis A, Healey K. 2017a. Flow simulations of rock-weir fish pass. I: flow regimes and hydraulics, depth-discharge relationships, and maximum velocity prediction. J Ecohydraul. 2(2):122–141.
  • Baki ABM, Zhu DZ, Harwood A, Lewis A, Healey K. 2017b. Flow simulations of rock-weir fish pass. II: design evaluation and considerations. J Ecohydraul. 2(2):142–152.
  • Baki ABM, Zhu DZ, Rajaratnam N. 2014. Mean flow characteristics in a rock-ramp-type fish pass. J Hydraul Eng. 140(2):156–168.
  • Baki ABM, Zhu DZ, Rajaratnam N. 2015. Turbulence characteristics in a rock-ramp-type fish pass. J Hydraul Eng. 141(2):04014075.
  • Baki ABM, Zhu DZ, Rajaratnam N. 2016. Flow simulations in a rock-ramp-type fish pass. J Hydraul Eng. 142(10):04016031.
  • Baudoin JM, Burgun V, Chanseau M, Larinier M, Ovidio M, Sremski W, Steinbach P, Voegtle B. 2014. Assessing the passage of obstacles by fish: concepts, design and application. Paris: Onema.
  • Branco P, Santos JM, Katopodis C, Pinheiro A, Ferreira MT. 2013. Pool-type fishways: two different morpho-ecological Cyprinid species facing plunging and streaming flows. PLoS One. 8(5):e65089.
  • Chow VT. 1959. Open-channel hydraulics. New York (NY): McGraw-Hill.
  • Davis JA, Barmuta LA. 1989. An ecologically useful classification of mean and near-bed flows in streams and river. Freshwater Biol. 2:271–282.
  • Dust D, Wohl E. 2012. Characteristics of the hydraulics at natural step crests in step-pool streams via weir flow concepts. Water Resour Res. 48(9):W09542.
  • DVWK. 2002. Fish passes – design, dimensions and monitoring. Rome: Food and Agriculture Organization of the United Nations in Arrangement with German Association for Water Resources and Land Improvement as DVWK-Merkblatt.
  • Franklin AE, Haro A, Castro-Santos T, Noreika J. 2012. Evaluation of nature-like and technical fishways for the passage of Alewives at two coastal streams in New England. Trans Am Fish Soc. 141(3):624–637.
  • Fuentes-Pérez JF, García-Vega A, Sanz-Ronda FJ, Martínez de Azagra Paredes A. 2017. Villemonte’s approach: a general method for modeling uniform and non-uniform performance in stepped fishways. Knowl Manag Aquat Ecosyst. 418:23.
  • Fuentes-Pérez JF, Sanz-Ronda FJ, Martínez de Azagra-Paredes A, García-Vega A. 2016. Nonuniform hydraulic behavior of pool-weir fishways: a tool to optimize its design and performance. Ecol Eng. 86:5–12.
  • Gordon EH, Collins K, Johnson CH, Scurlock M. 2016. Reclamation – managing water in the West – rock ramp design guidelines [accessed 2017 Apr 21]. https://www.usbr.gov/tsc/techreferences/mands/mands-dfs/RockWeirDesignGuidance_final_ADAcompliant_031716.pdf.
  • Jungwirth M. 1998. River continuum and fish migration- going beyond the longitudinal river corridor in understanding ecological integrity. In: Jungwirth M, Schmutz S, Weiss S, editors. Fish migration and fish bypasses. Oxford: Fishing News Books; p. 19–32.
  • Hammer C. 1995. Fatigue and exercise tests with fish. Comp Biochem Physiol Part A: Physiol. 112(1):1–20.
  • Hirt CW, Nichols BD. 1981. Volume of fluid (VOF) method of the dynamics of free boundaries. J Comput Phys. 39(1):201–225.
  • Holmquist-Johnson CL. 2011. Numerical analysis of river spaning rock U-weirs: evaluating effects of structure geometry on local hydraulics [PhD dissertation]. Fort Collins (CO): Colorado State University.
  • Katopodis C, Williams JG. 2012. The development of fish passage research in a historical context. Ecol Eng. 48:8–18.
  • Kupferschmidt CPL, Zhu DZ. 2017. Physical modelling of pool and weir fishways with rock. River Res Appl. 33(7):1130–1142.
  • Larinier M. 2008. Fish passage experience at small-scale hydro-electric power plants in France. Hydrobiologia. 609(1):97–108.
  • Larinier M, Courret D, Gomes P. 2006. Guide technique pour laconception des passes à poissons “naturelles.” Rapport GHAAPPE RA.06.05-V1, Agence de l’Eau Adour Garonne, Compagnie Nationale du Rhône, Conseil Supérieur de la Pêche, Groupe d’Hydraulique Appliquée aux Aménagements Piscicoles et à la Protection de l’Environnement, Institut de mécanique des fluids de Toulouse, p. 66.
  • Liu M, Rajaratnam N, Zhu DZ. 2006. Mean flow and turbulence structure in vertical slot fishways. J Hydraul Eng. 132(8):765–777.
  • Marriner BA, Baki ABM, Zhu DZ, Cooke SJ, Katopodis C. 2016. The hydraulics of a vertical slot fishway: a case study on the multispecies Vianney-Legendre fishway in Quebec, Canada. Ecol Eng. 90:190–202.
  • Marriner BA, Baki ABM, Zhu DZ, Thiem JD, Cooke SJ, Katopodis C. 2014. Field and numerical assessment of turning pool hydraulics in a vertical slot fishway. Ecol Eng. 63:88–101.
  • National Marine Fisheries Service. 2008. Anadromous salmonid passage facility design. Portland, OR: NMFS, Northwest Region.
  • Oertel M, Schlenkhoff A. 2012. Crossbar block ramps: flow regimes, energy dissipation, friction factors, and drag forces. J Hydraul Eng. 138(5):440–448.
  • Puertas J, Cea L, Bermudez M, Pena L, Rodriguez A, Rabunal JR, Balairon L, Lara A, Aramburu E. 2012. Computer application for the analysis and design of vertical slot fishways in accordance with the requirements of the target species. Ecol Eng. 48:51–60.
  • Rajaratnam N, Katopodis C, Mainali A. 1989. Pool-orifice and poolorifice-weir fishways. Can J Civ Eng. 16(5):774–777.
  • Ruttenburg D. 2007. An evaluation of fish passage at rock vortex weirs [MS dissertation]. Moscow, ID: University of Idaho.
  • Sindelar C, Smart G. 2016. Transition flow in step-pool systems: pressure distribution and drag forces. J Hydraul Eng. 142(10):04016035–04016031.
  • Tarrade L, Pineau G, Calluaud D, Texier A, David L, Larinier M. 2011. Detailed experimental study of hydrodynamic turbulent flows generated in vertical slot fishways. Environ Fluid Mech. 11(1):1–21.
  • Thomas D, Abt S, Mussetter R, Harvey M. 2000. A design procedure for sizing step-pool structures. Proceedings of the Joint Conference on Water Resource Engineering and Water Resources Planning and Management, ASCE, Jul 30–Aug 2; Minnesota, MN, USA.
  • Thornton CI, Meneghetti AM, Collins K, Abt SR, Scurlock MS. 2011. Stage–discharge relationships for U-, A-, and W-weirs in un-submerged flow conditions. J Am Water Res Assoc. 47(1):169–178.
  • Towler B, Mulligan K, Haro A. 2015. Derivation and application of the energy dissipation factor in the design of fishways. Ecol Eng. 83(10):208–217.
  • Turek J, Haro A, Towler B. 2016. Federal interagency nature-like fishway passage design guidelines for Atlantic coast diadromous fishes. Interagency Technical Memorandum for USGS, Hadley, Massachusetts: NOAA National Marine Fisheries Service.
  • Wang RW, David L, Larinier M. 2010. Contribution of experimental fluid mechanics to the design of vertical slot fish passes. Knowl Manag Aquat Ecosyst. 396(2):1–21.
  • Wang RW, Hartlieb A. 2011. Experimental and field approach to the hydraulics of nature-like pool-type fish migration facilities. Knowl Manag Aquat Ecosyst. 400(5):1–18.
  • Wu S, Rajaratnam N, Katopodis C. 1999. Structure of flow in vertical slot fishway. J Hydraul Eng. 125(4):351–360.
  • Yagci O. 2010. Hydraulic aspects of pool-weir fishways as ecologically friendly water structure. Ecol Eng. 36(1):36–46.
  • Yamamoto S, Morita K, Koizumi I, Maekawa K. 2004. Genetic differentiation of white-spotted charr (Salvelinus leucomaenis) populations after habitat fragmentation: spatial–temporal changes in gene frequencies. Conserv Genet. 5(4):529–538.

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