HR: 1330h
AN: H33A-01 [Abstracts]
TI: The Columbia River--on the Leading Edge
AU: * O'Connor, J E
EM: oconnor@usgs.gov
AF: U.S. Geological Survey, 10615 SE Cherry Blossom Dr., Portland, OR 97216 United States
AB:
On the leading edge of the North American plate, the Columbia River is the largest of the world's 40 or so rivers with
drainage areas greater than 500,000 square kilometers to drain toward a convergent plate boundary. This unique setting
results in a unique continental river basin; marked by episodic and cataclysmic geologic disturbance, but also famously
fecund with perhaps 10 to 16 million salmon historically spawning in its waters each year. Now transformed by dams,
transportation infrastructure, dikes and diversions, the Columbia River presents an expensive conundrum for management of its many values. Inclusion of river ecology and geomorphology in discussions of river management is generally limited to
observations of the last 200 years-a time period of little natural disturbance and low sediment transport. However,
consideration of longer timescales provides additional perspective of historical ecologic and geomorphic conditions.
Only 230 km from its mouth, the Columbia River bisects the volcanic arc of the Cascade Range, forming the Columbia River
Gorge. Cenozoic lava flows have blocked the river, forcing diversions and new canyon cutting. Holocene eruptions of Mount
Mazama (Crater Lake), Mount Hood, Mount St. Helens, and Mount Rainier have shed immense quantities of sediment into the lower Columbia River, forming a large percentage of the Holocene sediment transported through the lower river. Quaternary
landslides, perhaps triggered by great earthquakes, have descended from the 1000-m-high gorge walls, also blocking and
diverting the river, one as recently as 550 years ago. These geologic disturbances, mostly outside the realm of historical
observation and operating at timescales of 100s to 1000s of years in the gorge and elsewhere, have clearly affected basin
geomorphology, riverine ecology, and past and present cultural utilization of river resources. The historic productivity of
the river, however, hints at extraordinary resilience (and perhaps dependence) of the Columbia River system to such
disturbances, many of which are similar to engineered disturbances of the last 200 years.
DE: 1815 Erosion and sedimentation
DE: 1821 Floods
DE: 1824 Geomorphology (1625)
SC: Hydrology [H]
MN: 2005 Joint Assembly