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Optimising A tlantic salmon smolt survival by use of hydropower simulation modelling in a regulated river

H.‐P. Fjeldstad; K. Alfredsen; T. Boissy
Fisheries Management and Ecology · Vol. 21, Issue 1 · pp. 22-31 · 2014

Abstract

Studies on downstream passage of diadromous fishes in northern E urope are rare, and in N orway, the problem is strongly linked to demands for efficient hydropower production. The current study explored mitigating measures using a hydropower simulation model for A tlantic salmon, S almo salar L., smolt migration. Migration pattern and route choice at a hydropower intake for 22 years were described for a river in southern N orway, based on simulated data for discharge and water temperature. Subsequently, the potential for controlling the migration pattern and smolt routing past the intake by altering release patterns from the reservoirs was tested. Modelling of a general annual increase in bypass discharge from 3 to 15 m 3 s −1 increased average bypass migration from 30 to 43% at the cost of 14 € per fish. Individual release schedules from reservoirs for selected years indicated that bypass rates could be increased to 80% at an average cost of 4.5 € per fish and 2.2 € in the best years. Mitigating measures presumably depend on the specific site, but the methods developed in this study represent a general technique for evaluating increased smolt survival past hydropower intakes.

Bibliographic Information

JournalFisheries Management and Ecology
PublisherWiley
Publication Date2014-02-01
Publication Year2014
Volume21
Issue1
Pages22-31
Document TypeJournal Article
Print ISSN0969-997X
eISSN1365-2400
DOI10.1111/fme.12044
SubjectGeneral Aquaculture, Fisheries & Fish Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652400
Publisher PageOpen Publisher Page
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