Glacial isostatic adjustment and the radial viscosity profile from inverse modeling
- 8 November 2002
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 107 (B11) , ETG 5-1-ETG 5-15
- https://doi.org/10.1029/2001jb000941
Abstract
A formal inverse procedure is used to infer radial mantle viscosity profiles from several observations related to the glacial isostatic adjustment process. The data sets consist of Late Pleistocene and Holocene sea level data from Scandinavia, the Barents Sea, Central Europe, Canada, and the far field, as well as observations of changes in the Earth's rotation and gravitational field, and present‐day uplift and gravity changes in Scandinavia. Inferences of mantle viscosity are robust against assumptions such as the a priori viscosity model and model discretization. However, the quality of ice sheet reconstruction remains crucial for the inverse inference. The importance to discuss regional mantle viscosity models in view of the lateral variability in mantle properties has been evident. Our inference suggests a two order of magnitude increase of mantle viscosity with depth, and volume‐averaged upper and lower mantle viscosities around 7 × 1020 and 2 × 1022 Pa s, respectively. Mantle viscosity does not need to increase sharply across the 660‐km seismic discontinuity. The viscosity profiles suggested are also able to reconcile the large‐scale geoid anomaly related to mantle convection.Keywords
This publication has 49 references indexed in Scilit:
- Sea Level Change Through the Last Glacial CycleScience, 2001
- Glacial isostatic adjustment in Fennoscandia for a laterally heterogeneous earthGeophysical Journal International, 2000
- Mantle dynamics, postglacial rebound and the radial viscosity profilePhysics of the Earth and Planetary Interiors, 2000
- A global geoid model with imposed plate velocities and partial layeringJournal of Geophysical Research, 1999
- Postglacial rebound and sea level contributions to changes in the geoid and the Earth's rotation axisGeophysical Journal International, 1999
- Lateral asthenospheric viscosity variations and postglacial rebound: A case study for the Barents SeaGeophysical Research Letters, 1998
- Global geodetic signatures of the Antarctic Ice SheetJournal of Geophysical Research, 1997
- New inferences of mantle viscosity from joint inversion of long‐wavelength mantle convection and post‐glacial rebound dataGeophysical Research Letters, 1996
- Oxygen isotopes and sea levelNature, 1986
- Changes in length-of-day and atmospheric circulationNature, 1980