Physics
Scientific paper
Jan 2005
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2005georl..3201304l&link_type=abstract
Geophysical Research Letters, Volume 32, Issue 1, CiteID L01304
Physics
7
Geodesy And Gravity: Rheology Of The Lithosphere And Mantle (7218, 8160)
Scientific paper
Predictions of 3-D crustal velocities driven by glacial isostatic adjustment (GIA) have generally been based on spherically symmetric Earth models. We adopt a finite-volume formulation to explore the impact of lateral variations in elastic plate strength, including lithospheric thickness changes across the continent-ocean interface and plate boundary weak zones, on these predictions. Weak zones introduce horizontal rate perturbations with a plate scale coherency and amplitudes reaching 1-2 mm/yr; radial velocity perturbations can be as large, but are geographically isolated to the weak zones (specifically, the North Atlantic Ridge). A discontinuity in ocean-continent lithospheric thickness significantly impacts rates along continental margins (order 1 mm/yr for radial rates and generally about half this for tangential rates). We conclude that lateral variations in lithospheric strength should be included in future GIA analyzes of space-geodetic survey results and in assessing the impact of GIA on the stability of geodetic reference frames.
Latychev Konstantin
Mitrovica Jerry X.
Moucha Robert
Tamisiea Mark E.
Tromp Jeroen
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