Scinovex
article Open AccessTop 1% cited

Sea-level change, glacial rebound and mantle viscosity fornorthern Europe

Geophysical Journal International · 1998 · Vol. 134(1) · pp. 102–144
Kurt LambeckCatherine SmitherPaul Johnston

Abstract

Northwestern Europe remains a key region for testing models of glacial isostasy because of the good geological record of crustal response to the glacial unloading since the time of the Last Glacial Maximum. Models for this rebound and associated sealevel change require a detailed knowledge of the ice-sheet geometry, including the ice thickness through time. Existing ice-sheet reconstructions are strongly model-dependent, and inversions of sea-level data for the mantle response may be a function of the model assumptions. Thus inverse solutions for the sea-level data are sought that include both ice-and earth-model parameters as unknowns. Sea-level data from Fennoscandia, the North Sea, the British Isles and the Atlantic and English Channel coasts have been evaluated and incorporated into the solutions. The starting ice sheet for Fennoscandia is based on a reconstruction of a model by Denton & Hughes (1981) that is characterized by quasi-parabolic cross-sections and symmetry about the load centre. Both global (northwestern Europe as a whole) and regional (subsets of the data) solutions have been made for earth-model parameters and ice-height scaling parameters.

Geology and Paleoclimatology ResearchGeological and Geochemical Analysisearthquake and tectonic studiesGeologyPost-glacial reboundIsostasyLithosphereIce sheetMantle (geology)Glacial periodLast Glacial MaximumGeophysicsCrust
Citations
608
FWCI
15.21
field-weighted impact
References
64
Percentile
100%
vs. same field & year
Citations per year
References
Oxygen isotopes, ice volume and sea level
Quaternary Science Reviews · 1987 · 1,440 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.