HR: 08:30h
AN: H11F-03 INVITED [Abstracts]
TI: Predicting Ecosystem Response to the Removal of the Elwha River Dams, Washington State,
U.S.A.
AU: * Pess, G R
EM: george.pess@noaa.gov
AF: NOAA
NWFSC, 2725 Montlake Blvd East, Seattle, WA 98112
United States
AU: McHenry, M
EM: mchenry@elwha.nsn.us
AF: Lower Elwha Tribe, 51 Hatchery Raod, Port Angeles, WA 98362
United States
AU: Beechie, T J
EM: tim.beechie@noaa.gov
AF: NOAA
NWFSC, 2725 Montlake Blvd East, Seattle, WA 98112
United States
AB:
The Elwha River dams have disconnected the upper and lower Elwha watershed for over 90 years. This has resulted in a
disruption to upstream salmonid migration and a 'loss' of 90% of the salmonid habitat. The
dams have also interrupted the downstream movement of both sediment and wood, leading to such inputs being dominated by local
sources (e.g., bank erosion and avulsions). The current salmon habitat, as well as salmonid abundance and distribution,
reflects these changes. Current salmonid populations (several of which are hatchery-dominated) are either dramatically
smaller than estimated historical population or extirpated. Nevertheless, salmonid populations do persist below the dams in
part because channel incision has not been significant, and floodplain habitats remain an important component of the Elwha
River ecosystem. Impending removal of these dams presents an opportunity to explore linkages among changes in salmonid
populations, sediment supply, in-channel wood abundance, and habitat and ecosystem attributes. Sampling of ecosystem
attributes before and after dam removal, as well as in nearby reference rivers will elucidate functional relationships among
salmonid populations, sediment and wood supply, formation and persistence of river and floodplain habitats, and resultant
ecosystem dynamics. Dam removal will (1) reconnect upstream habitats increasing salmonid carrying capacity, and (2) allow the
downstream movement of sediment and wood leading to long-term aquatic habitat improvements. Both large-scale changes will
allow salmonid populations to rebuild on a watershed-scale. We hypothesize that the salmonid recolonization will be
concentrated in several large alluvial valleys in the Middle and Upper Elwha.
DE: 1803 Anthropogenic effects (4802, 4902)
DE: 1813 Eco-hydrology
DE: 1820 Floodplain dynamics
DE: 1825 Geomorphology: fluvial (1625)
DE: 1879 Watershed
SC: Hydrology [H]
MN: Fall Meeting 2005