Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production

Abstract: Dams have impeded fish on Maine’s Penobscot River for centuries, blocking connections between inland waters and the sea; people and the river. Populations of sea-run fish, once measured in millions, plummeted to fractions of their historic counts. In 2004, an innovative agreement between t...

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Main Authors: Clarke, George Aponte, Day, Laura Rose, Wynne, Molly Payne
Format: Text
Language:unknown
Published: ScholarWorks@UMass Amherst 2015
Subjects:
Online Access:https://scholarworks.umass.edu/fishpassage_conference/2015/June22/76
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spelling ftunivmassamh:oai:scholarworks.umass.edu:fishpassage_conference-1810 2023-05-15T15:32:56+02:00 Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production Clarke, George Aponte Day, Laura Rose Wynne, Molly Payne 2015-06-22T23:00:00Z https://scholarworks.umass.edu/fishpassage_conference/2015/June22/76 unknown ScholarWorks@UMass Amherst https://scholarworks.umass.edu/fishpassage_conference/2015/June22/76 International Conference on Engineering and Ecohydrology for Fish Passage Aquaculture and Fisheries Hydraulic Engineering text 2015 ftunivmassamh 2022-01-09T19:28:13Z Abstract: Dams have impeded fish on Maine’s Penobscot River for centuries, blocking connections between inland waters and the sea; people and the river. Populations of sea-run fish, once measured in millions, plummeted to fractions of their historic counts. In 2004, an innovative agreement between the Penobscot Indian Nation, a hydropower company, conservation groups, and resource agencies resolved decades of conflict over fisheries and hydropower. The Penobscot River Restoration Project, a collaborative initiative to restore selfsustaining populations of sea-run fish, charted a whole-system approach endeavoring strategic removal of multiple barriers while rebalancing hydropower. The Penobscot River Restoration Trust, a nonprofit established to work with Project partners to fulfill restoration goals, acquired and decommissioned three large mainstream dams in order to remove the two lower-most (completed in 2012 and 2013) and build a nature-like channel around one further upstream (underway). Widely acclaimed as a model for cooperative conservation, the Project provides 11 species of native fishes with significantly improved access to critical habitat within nearly 1,000 miles (1609 km) of watershed. Targeted species include endangered Atlantic salmon, endangered short-nose and Atlantic sturgeons, American shad, river herring and American eel. Terrestrial and avian wildlife will also benefit from this “refueled” system. By reestablishing connections between inland waters and the sea, the Project promises renewed ecological functions, cultural interactions, and economic activities throughout the watershed and entire Gulf of Maine. Project effects are already being realized. In 2014, nearly 400,000 river herring passed the former Veazie dam; 800 shad were counted, a 100-fold increase from pre-Project counts. The Penobscot Nation will be hosting three years of national canoe racing. This presentation will inform watershed managers, resource specialist, and restoration interests by sharing creative steps taken to balance energy production with ecological and community values through a review of Project accomplishments and initial monitoring. Text Atlantic salmon University of Massachusetts: ScholarWorks@UMass Amherst Indian
institution Open Polar
collection University of Massachusetts: ScholarWorks@UMass Amherst
op_collection_id ftunivmassamh
language unknown
topic Aquaculture and Fisheries
Hydraulic Engineering
spellingShingle Aquaculture and Fisheries
Hydraulic Engineering
Clarke, George Aponte
Day, Laura Rose
Wynne, Molly Payne
Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
topic_facet Aquaculture and Fisheries
Hydraulic Engineering
description Abstract: Dams have impeded fish on Maine’s Penobscot River for centuries, blocking connections between inland waters and the sea; people and the river. Populations of sea-run fish, once measured in millions, plummeted to fractions of their historic counts. In 2004, an innovative agreement between the Penobscot Indian Nation, a hydropower company, conservation groups, and resource agencies resolved decades of conflict over fisheries and hydropower. The Penobscot River Restoration Project, a collaborative initiative to restore selfsustaining populations of sea-run fish, charted a whole-system approach endeavoring strategic removal of multiple barriers while rebalancing hydropower. The Penobscot River Restoration Trust, a nonprofit established to work with Project partners to fulfill restoration goals, acquired and decommissioned three large mainstream dams in order to remove the two lower-most (completed in 2012 and 2013) and build a nature-like channel around one further upstream (underway). Widely acclaimed as a model for cooperative conservation, the Project provides 11 species of native fishes with significantly improved access to critical habitat within nearly 1,000 miles (1609 km) of watershed. Targeted species include endangered Atlantic salmon, endangered short-nose and Atlantic sturgeons, American shad, river herring and American eel. Terrestrial and avian wildlife will also benefit from this “refueled” system. By reestablishing connections between inland waters and the sea, the Project promises renewed ecological functions, cultural interactions, and economic activities throughout the watershed and entire Gulf of Maine. Project effects are already being realized. In 2014, nearly 400,000 river herring passed the former Veazie dam; 800 shad were counted, a 100-fold increase from pre-Project counts. The Penobscot Nation will be hosting three years of national canoe racing. This presentation will inform watershed managers, resource specialist, and restoration interests by sharing creative steps taken to balance energy production with ecological and community values through a review of Project accomplishments and initial monitoring.
format Text
author Clarke, George Aponte
Day, Laura Rose
Wynne, Molly Payne
author_facet Clarke, George Aponte
Day, Laura Rose
Wynne, Molly Payne
author_sort Clarke, George Aponte
title Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
title_short Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
title_full Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
title_fullStr Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
title_full_unstemmed Session C3: Running with Renewal: Reflections on Renewing the Sea-Run Fisheries of Maine's Largest River - The Penobscot - While Maintaining Energy Production
title_sort session c3: running with renewal: reflections on renewing the sea-run fisheries of maine's largest river - the penobscot - while maintaining energy production
publisher ScholarWorks@UMass Amherst
publishDate 2015
url https://scholarworks.umass.edu/fishpassage_conference/2015/June22/76
geographic Indian
geographic_facet Indian
genre Atlantic salmon
genre_facet Atlantic salmon
op_source International Conference on Engineering and Ecohydrology for Fish Passage
op_relation https://scholarworks.umass.edu/fishpassage_conference/2015/June22/76
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