A physiologically inspired agent-based approach to model upstream passage of invasive fish at a lock-and-dam
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DOI: 10.1016/j.ecolmodel.2018.05.004
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References listed on IDEAS
- Arenas, Antonio & Politano, Marcela & Weber, Larry & Timko, Mark, 2015. "Analysis of movements and behavior of smolts swimming in hydropower reservoirs," Ecological Modelling, Elsevier, vol. 312(C), pages 292-307.
- Daraio, Joseph A. & Weber, Larry J. & Newton, Teresa J. & Nestler, John M., 2010. "A methodological framework for integrating computational fluid dynamics and ecological models applied to juvenile freshwater mussel dispersal in the Upper Mississippi River," Ecological Modelling, Elsevier, vol. 221(2), pages 201-214.
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Cited by:
- Benjamin D. Trump & Christy Foran & Taylor Rycroft & Matthew D. Wood & Nirzwan Bandolin & Mariana Cains & Timothy Cary & Fiona Crocker & Nicholas A. Friedenberg & Patrick Gurian & Kerry Hamilton & Jan, 2018. "Development of community of practice to support quantitative risk assessment for synthetic biology products: contaminant bioremediation and invasive carp control as cases," Environment Systems and Decisions, Springer, vol. 38(4), pages 517-527, December.
- Gao Zhu & Zuhao Zhou & Helge I Andersson, 2020. "Role of Transient Characteristics in Fish Trajectory Modeling," Sustainability, MDPI, vol. 12(17), pages 1-15, August.
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Keywords
Computational fluid dynamics; Fish passage; Asian carp; Agent-Based; Lock-and-dam; Mississippi River;All these keywords.
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