Ice‐3G: A new global model of Late Pleistocene deglaciation based upon geophysical predictions of post‐glacial relative sea level change
- 10 March 1991
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 96 (B3) , 4497-4523
- https://doi.org/10.1029/90jb01583
Abstract
A new high resolution global model of late Pleistocene deglaciation is inferred on the basis of geophysical predictions of postglacial relative sea level variations in which the ice‐ocean‐solid Earth interaction is treated in a gravitationally self‐consistent fashion. For the purpose of these analyses the radial viscoelastic structure of the planet is assumed known on the basis of previously published sensitivity tests on solutions of the forward problem. Only radiocarbon controlled relative sea level histories from sites that were actually ice covered (with one or two additions) are employed to constrain the model, leaving relative sea level (RSL) data from sites that were not ice covered to be employed to confirm its consistency. Results for these confirmatory analyses are reported elsewhere. Here the new deglaciation model, referred to as ICE‐3G, is compared to previous models derived by several independent means and tested against a number of additional observations other than sea level histories, including geologically controlled retreat isochrones, oxygen‐isotope data from deep‐sea sedimentary cores, and coral terrace elevations. The latter two observations strongly constrain the net sea level rise that has occurred since the onset of deglaciation and therefore the mass of ice that melted during the last glacial‐interglacial transition.Keywords
This publication has 71 references indexed in Scilit:
- Global Sea Level and Earth RotationScience, 1988
- Sensitivity Experiments with a Model of the Ice Age Cycle: The Response to Milankovitch ForcingJournal of the Atmospheric Sciences, 1987
- Sensitivity Experiments with a Model of the Ice Age Cycle: The Response to Harmonic ForcingJournal of the Atmospheric Sciences, 1985
- Preliminary reference Earth modelPhysics of the Earth and Planetary Interiors, 1981
- Energy balance climate modelsReviews of Geophysics, 1981
- Glacial isostasy and relative sea level: A global finite element modelTectonophysics, 1978
- Oxygen and carbon isotope studies in recent foraminifera from the southwest Indian oceanMarine Micropaleontology, 1978
- ‘Unmixing’ of the deep-sea record and the deglacial meltwater spikeNature, 1977
- Astronomical Theory of Climatic Change: Support from New GuineaScience, 1970
- Insolation changes, ice volumes, and the O18 record in deep‐sea coresReviews of Geophysics, 1970