HR: 1330h
AN: T52A-0229 [PDF]
TI: Strain and stress partitioning of the Pacific/North America interaction along the Queen Charlotte
Islands-Alaska Panhandle
AU: * Mazzotti, S
EM: smazzotti@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: Hyndman, R D
EM: rhyndman@NRCan.gc.ca
AF: School of Earth and Ocean Sciences, University of Victoria, PO Box 1700, Victoria, BC V8W 2Y2
Canada
AU: Bustin, A
EM: abustin@UVic.ca
AF: School of Earth and Ocean Sciences, University of Victoria, PO Box 1700, Victoria, BC V8W 2Y2
Canada
AB:
Along the western margin of central British Columbia and southern Alaska, the Queen Charlotte (QC) and Fairweather faults
accommodate most of the predominantly transform motion (~50 mm/yr) between the Pacific and North American plates. This fault
system is ~1000 km long and was the locus of M=7-8 earthquakes in the last century. Off the Queen Charlotte Islands, the
relative Pacific/North America motion also has a 10-15 mm/yr convergence component. New GPS data acquired over the last 5
years allow us to estimate the distribution of transient and permanent strain along this plate boundary. We show that the
Queen Charlotte-Alaska Panhandle margin is affected by both transient and long-term dextral shear strain, respectively in
response to the interseismic locking of the QC-Fairweather Fault and a 6-7 mm/yr NNE migration of the continental margin. The
impact of postseismic deformation following the 1949 M=8.1 QC earthquake is likely not significant. The stress pattern
derived from earthquake focal mechanisms is consistent, to a first order, with the GPS kinematic model. Earthquake mechanisms
indicate a partitioning between strike-slip and compression on the oceanic side (QC Fault and Terrace). The continental
margin (northern QC Islands and Hecate Strait) is affected by a N to NE maximum compression associated with dextral shear of
the crust. Long-term dextral shear and shortening of the continental margin is also supported the tectonic inversion of the
Miocene normal faults that form the QC Basin. Several kilometers of shortening and strike-slip deformation have been
identified on these structures that affect Upper Miocene and Pliostocene deposits.
DE: 1208 Crustal movements--intraplate (8110)
DE: 7230 Seismicity and seismotectonics
DE: 8150 Plate boundary--general (3040)
DE: 8164 Stresses--crust and lithosphere
SC: Tectonophysics [T]
MN: 2003 Fall Meeting