Evaluation of Behavior and Survival of Fish Exposed to an Axial‐Flow Hydrokinetic Turbine

Author:

Amaral Stephen V.1,Bevelhimer Mark S.2,Čada Glenn F.2,Giza Daniel J.1,Jacobson Paul T.3,McMahon Brian J.1,Pracheil Brenda M.2

Affiliation:

1. Alden Research Laboratory, Inc.30 Shrewsbury StreetHoldenMassachusetts01520‐1843USA

2. Oak Ridge National Laboratory, Environmental Sciences Division1 Bethel Valley RoadOak RidgeTennessee37831USA

3. Electric Power Research Institute5637 Gulfstream RowColumbiaMaryland21044USA

Funder

Oak Ridge National Laboratory

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference34 articles.

1. S. V. Amaral G. E.Hecker P.Stacy andD. A.Dixon.2008.Effects of leading‐edge turbine blade thickness on fish strike survival and injury. Proceedings of hydrovision 2008. HCI Publications St. Louis Missouri.

2. S. Amaral N.Perkins D.Giza andB.McMahon.2011.Evaluation of fish injury and mortality associated with hydrokinetic turbines. Electric Power Research Institute Report 1024569 Palo Alto California.

3. S. Amaral D.Giza andB.McMahon2014.Evaluation of survival and behavior of fish exposed to an axial‐flow hydrokinetic turbine. Electric Power Research Institute Report 3002003911 Palo Alto California.

4. The spatiotemporal dynamics of rheotactic behavior depends on flow speed and available sensory information

5. Fish Transportation Oversight Team annual report, FY 1981: transport operations on the Snake and Columbia rivers;Basham L. R.;NOAA Technical Memorandum NMFS F/NNR‐2,1982

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