Experimental Approach to the Hydraulics of Vertical Slot Fishways

The performance of two particular designs of vertical slot fishways for two different slopes was studied in a wide range of discharges. Water depths were measured in almost the whole surface of pools. A linear relation between dimensionless discharge and depth of flow, and the same flow patterns for...

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Published inJournal of hydraulic engineering (New York, N.Y.) Vol. 130; no. 1; pp. 10 - 23
Main Authors Puertas, J, Pena, L, Teijeiro, T
Format Journal Article
LanguageEnglish
Published Reston, VA American Society of Civil Engineers 01.01.2004
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Abstract The performance of two particular designs of vertical slot fishways for two different slopes was studied in a wide range of discharges. Water depths were measured in almost the whole surface of pools. A linear relation between dimensionless discharge and depth of flow, and the same flow patterns for each design were found. With an acoustic Doppler velocimeter, three-dimensional velocities were measured at several levels in the entire pool to detect the structure of the flow and quantify velocity distribution. Two different regions in flow patterns were found: a direct flow region characterized by maximum velocities; and a recirculation region, defined by low velocities and horizontal eddies. For a given slope, the velocity at any point of the pool (particularly at the slot) may be considered independent of the discharge and constant with the depth. Some suggestions on kinetic turbulent energy are also made.
AbstractList The performance of two particular designs of vertical slot fishways for two different slopes was studied in a wide range of discharges. Water depths were measured in almost the whole surface of pools. A linear relation between dimensionless discharge and depth of flow, and the same flow patterns for each design were found. With an acoustic Doppler velocimeter, three-dimensional velocities were measured at several levels in the entire pool to detect the structure of the flow and quantify velocity distribution. Two different regions in flow patterns were found: a direct flow region characterized by maximum velocities; and a recirculation region, defined by low velocities and horizontal eddies. For a given slope, the velocity at any point of the pool (particularly at the slot) may be considered independent of the discharge and constant with the depth. Some suggestions on kinetic turbulent energy are also made.
Author Pena, L
Teijeiro, T
Puertas, J
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  organization: Associate Professor, EPS, Santiago de Compostela Univ., Bernardino Pardo Ouro, s/n, 27002 Lugo, Spain
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Cites_doi 10.1061/(ASCE)0733-9429(1999)125:4(351)
10.1061/(ASCE)0733-9429(1998)124:6(630)
10.1139/l92-049
10.1061/(ASCE)0733-9429(1986)112:10(909)
10.1061/(ASCE)0733-9429(1994)120:3(406)
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Keywords Doppler ultrasound study
Fishpass
Turbulence
Hydraulic model
CE Database subject headings: Fishways
Open channel flow
Experimental study
Anemometry
Velocity
Water depth
Depth
Flow patterns
Energy dissipation
Hydraulic models
Water engineering
Slot
Flow velocity
Kinetic energy
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Nikora, V. I.; Goring, D. G. 1998; 124
Kraus, N. C.; Lohrmann, A.; Cabrera, R. 1994; 120
Rajaratnam, N.; Van der Vinne, G.; Katopodis, C. 1986; 112
Rajaratnam, N.; Katopodis, C.; Solanki, S. 1992; 19
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SubjectTerms Applied sciences
Buildings. Public works
Dams and subsidiary installations
Exact sciences and technology
Hydraulic constructions
TECHNICAL PAPERS
Title Experimental Approach to the Hydraulics of Vertical Slot Fishways
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