Long-Term Sea-Level Fluctuations Driven by Ocean Basin Dynamics

Author:

Müller R. Dietmar12,Sdrolias Maria12,Gaina Carmen12,Steinberger Bernhard12,Heine Christian12

Affiliation:

1. EarthByte Group, School of Geosciences, Building H11, The University of Sydney, Sydney, NSW 2006, Australia.

2. Center for Geodynamics, Geological Survey of Norway, Leiv Eirikssons vei 39, N-7491 Trondheim, Norway.

Abstract

Earth's long-term sea-level history is characterized by widespread continental flooding in the Cretaceous period (∼145 to 65 million years ago), followed by gradual regression of inland seas. However, published estimates of the Late Cretaceous sea-level high differ by half an order of magnitude, from ∼40 to ∼250 meters above the present level. The low estimate is based on the stratigraphy of the New Jersey margin. By assimilating marine geophysical data into reconstructions of ancient ocean basins, we model a Late Cretaceous sea level that is 170 (85 to 270) meters higher than it is today. We use a mantle convection model to suggest that New Jersey subsided by 105 to 180 meters in the past 70 million years because of North America's westward passage over the subducted Farallon plate. This mechanism reconciles New Jersey margin–based sea-level estimates with ocean basin reconstructions.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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