HR: 0800h
AN: G21B-0494 [Abstracts]
TI: A Velocity Field for the North American Plate Interior
AU: * Calais, E
EM: ecalais@purdue.edu
AF: Purdue University, EAS Department, West Lafayette, IN 47907, United States
AU: DeMets, C D
EM: chuck@geology.wisc.edu
AF: University of Wisconsin, Dept. of Geology and Geophysics, Madison, WI 53706, United
States
AU: Han, J
EM: jyhan@ntu.edu.tw
AF: National Taiwan University, Civil Engineering Department, Taipei, 10617, Taiwan
AB:
The determination of accurate continent-scale geodetic velocity fields in plate
interiors is essential for investigating the processes that drive the deformation
of continents and control the associated seismicity. Accurate continental-scale
velocity fields are also important as reference frames for mapping crustal motions
at plate boundaries. As the precision and accuracy of space geodetic techniques
improves, coherent deformation patterns are now emerging from the analysis of
continent-wide GPS data sets in plate interiors. In North America, studies have
shown that the primary horizontal strain signal in the plate interior is consistent
with that expected from Glacial Isostatic Adjustment (Calais et al., 2006; Sella
et al., 2007). Current results indicate ~NS shortening at a rate on the order of
10-9/yr in southern Quebec, the northeastern U.S., and just south and west of
the Great Lakes, consistent with GIA, seismic moment release, and earthquake focal
mechanisms in these areas. In contrast, no detectable surface strain is found south
of about 38N, at the 0.7~mm/yr precision level (95% confidence). Sub-millimeter
per year accuracy reamains however a challenge at the scale of an entire continent.
We present an updated velocity field for North America that results from the
combination of two independent solutions and includes about 800 sites. We discuss
the implications of these results for earthquake hazard, glacial isostatic
adjustment models, and for defining a Stable North America reference frame
for geodetic studies in western North America.
UR: http://web.ics.purdue.edu/~ecalais/projects/noam/
DE: 1229 Reference systems
SC: Geodesy [G]
MN: 2007 Fall Meeting