A reevaluation of the isostatic rebound of Lake Bonneville
- 10 December 1983
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 88 (B12) , 10439-10447
- https://doi.org/10.1029/jb088ib12p10439
Abstract
Recent data pertaining to the uplift of the Provo and Bonneville shorelines of the late Pleistocene Lake Bonneville are evaluated in a reanalysis using a rigorous model of deformation of a plane earth comprising an elastic layer overlying a viscoelastic channel. The new observations constrain the wavelength and amplitude of the uplift of two shorelines formed at two different epochs, and they partly resolve the ambiguities in the plausible mechanical parameters found in previous solutions. The results indicate that the effective thickness of the elastic lithosphere is 28 to 30 km, equal to the seismically determined crustal thickness in the region. The estimate of the upper mantle viscosity in the region varies from (1.5–3.4) ×lO19 Pa s to (2.1–5.8)×l018 Pa s, depending on whether the upper mantle is assumed to be of uniform viscosity or the flow is confined to a narrow channel in the asthenosphere. The predicted rate of present uplift at the center of the desiccated lake is 0.06 mm/yr and 0.03 mm/yr for the shallow channel and uniform mantle models, respectively. These values are beyond the first‐order leveling accuracies, and the question of the existence of a narrow channel in the region cannot be resolved with the available observations.Keywords
This publication has 10 references indexed in Scilit:
- Postglacial sealevels in the Pacific: Implications with respect to deglaciation regime and local tectonicsTectonophysics, 1983
- A study of the Earth's response to surface loading with application to Lake BonnevilleGeophysical Journal of the Royal Astronomical Society, 1982
- Upper mantle viscosity derived from the difference in rebound of the Provo and Bonneville Shorelines: Lake Bonneville Basin, UtahJournal of Geophysical Research, 1981
- Deglaciation effects on the rotation of the EarthGeophysical Journal International, 1980
- Two areas of probable holocene deformation in southwestern UtahTectonophysics, 1979
- The upper mantle P velocity structure of the western United StatesJournal of Geophysical Research, 1978
- Crustal structure across the Wasatch Front from detailed seismic refraction studiesJournal of Geophysical Research, 1974
- On crustal flexureJournal of Geophysical Research, 1969
- Effective viscosity of the Earth derived from isostatic loading of Pleistocene Lake BonnevilleJournal of Geophysical Research, 1963
- New data on the isostatic deformation of Lake BonnevillePublished by US Geological Survey ,1963