HR: 1330h
AN: T52B-0269 [PDF]
TI: The Intersection of the Nootka Fault Zone with the Continental Margin off Vancouver Island
AU: * Willoughby, E C
EM: ele.willoughby@nrcan.gc.ca
AF: Pacific Geoscience Centre, Geological Survey of Canada, 9860 W. Saanich Rd., Sidney, BC V8L 4B2
Canada
AU: Hyndman, R D
EM: rhyndman@nrcan.gc.ca
AF: Pacific Geoscience Centre, Geological Survey of Canada, 9860 W. Saanich Rd., Sidney, BC V8L 4B2
Canada
AU: Spence, G D
EM: gspence@uvic.ca
AF: School of Earth and Ocean Sciences, University of Victoria, Victoria, BC V8W 2Y2
Canada
AB:
The Nootka Fault Zone extends from the margin offshore from Nootka Island, near Vancouver Island, at a fault-trench-trench
triple junction, marking the intersection of the Juan de Fuca, Explorer and North American plates. The presence of the fault
zone itself was initially inferred from magnetic anomaly analysis and substantiated by observations of focused seismicity,
reflection seismic profiles, gravity and bathymetric data. Differential motion of the Explorer region seems to require its
independence from the Juan de Fuca plate, though this has been subject to debate. The triple junction itself has not
previously been examined in detail. Previously available field data at the Nootka fault zone itself are sparse. In fact the
precise location and trend of the Nootka fault zone is not well confined. The Nootka fault is an example of an active fault
subducting under an accretionary prism where the consequences of frequent earthquake shaking might be examined. For example,
there is evidence of several mud volcanoes present in the basin and active venting on the margin. Further study is imperative
in preparation for the NEPTUNE ocean floor observatory and potential future IODP drill holes. Furthermore, more accurate
velocity models are required for improving earthquake location in this region since all current monitoring stations are
land-based and to the east of the fault zone leading to systematic biases in epicenter locations, of tens of kilometers to
the northeast, in routine locations. Here we present new seismic reflection data integrated with previous work for a new
characterization of the seafloor approaching and on the deformation front.
DE: 0935 Seismic methods (3025)
DE: 3025 Marine seismics (0935)
DE: 7221 Paleoseismology
DE: 7230 Seismicity and seismotectonics
DE: 8105 Continental margins and sedimentary basins
SC: Tectonophysics [T]
MN: 2003 Fall Meeting