Predictable changes in fish school characteristics due to a tidal turbine support structure
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DOI: 10.1016/j.renene.2019.04.065
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- Haley A Viehman & Gayle Barbin Zydlewski, 2017. "Multi-scale temporal patterns in fish presence in a high-velocity tidal channel," PLOS ONE, Public Library of Science, vol. 12(5), pages 1-20, May.
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- Shen, Haixue & Zydlewski, Gayle Barbin & Viehman, Haley A. & Staines, Garrett, 2016. "Estimating the probability of fish encountering a marine hydrokinetic device," Renewable Energy, Elsevier, vol. 97(C), pages 746-756.
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- Garcia Novo, Patxi & Kyozuka, Yusaku, 2020. "Validation of a turbulence numerical 3D model for an open channel with strong tidal currents," Renewable Energy, Elsevier, vol. 162(C), pages 993-1004.
- Onoufriou, Joe & Russell, Debbie J.F. & Thompson, Dave & Moss, Simon E. & Hastie, Gordon D., 2021. "Quantifying the effects of tidal turbine array operations on the distribution of marine mammals: Implications for collision risk," Renewable Energy, Elsevier, vol. 180(C), pages 157-165.
- Buenau, K.E. & Sather, N.K. & Arkema, K.K., 2025. "A marine energy and ecosystem service framework for coastal communities," Renewable and Sustainable Energy Reviews, Elsevier, vol. 216(C).
- Scherelis, Constantin & Penesis, Irene & Hemer, Mark A. & Cossu, Remo & Wright, Jeffrey T. & Guihen, Damien, 2020. "Investigating biophysical linkages at tidal energy candidate sites: a case study for combining environmental assessment and resource characterisation," Renewable Energy, Elsevier, vol. 159(C), pages 399-413.
- Lenaïg G. Hemery & Andrea E. Copping & Dorian M. Overhus, 2021. "Biological Consequences of Marine Energy Development on Marine Animals," Energies, MDPI, vol. 14(24), pages 1-16, December.
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