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Development of computational fluid dynamics--habitat suitability (CFD-HSI) models to identify potential passage--Challenge zones for migratory fishes in the Penobscot River

June 19, 2012

A two-dimensional computational fluid dynamics-habitat suitability (CFD–HSI) model was developed to identify potential zones of shallow depth and high water velocity that may present passage challenges for five anadromous fish species in the Penobscot River, Maine, upstream from two existing dams and as a result of the proposed future removal of the dams. Potential depth-challenge zones were predicted for larger species at the lowest flow modeled in the dam-removal scenario. Increasing flows under both scenarios increased the number and size of potential velocity-challenge zones, especially for smaller species. This application of the two-dimensional CFD–HSI model demonstrated its capabilities to estimate the potential effects of flow and hydraulic alteration on the passage of migratory fish.

Publication Year 2012
Title Development of computational fluid dynamics--habitat suitability (CFD-HSI) models to identify potential passage--Challenge zones for migratory fishes in the Penobscot River
DOI 10.3133/fs20123073
Authors Alexander J. Haro, Robert W. Dudley, Michael Chelminski
Publication Type Report
Publication Subtype USGS Numbered Series
Series Title Fact Sheet
Series Number 2012-3073
Index ID fs20123073
Record Source USGS Publications Warehouse
USGS Organization Leetown Science Center; Eastern Ecological Science Center
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