Dating submarine landslides using the transient response of gas hydrate stability

Author:

Portnov Alexey1,You Kehua1,Flemings Peter B.1,Cook Ann E.2,Heidari Mahdi1,Sawyer Derek E.2,Bünz Stefan3

Affiliation:

1. 1Institute for Geophysics, University of Texas at Austin, Austin, Texas 78758, USA

2. 2School of Earth Sciences, The Ohio State University, Columbus, Ohio 43210, USA

3. 3Centre for Arctic Gas Hydrate, Environment and Climate (CAGE), University of Tromsø, The Arctic University of Norway, 9010 Tromsø, Norway

Abstract

AbstractSubmarine landslides are prevalent on the modern-day seafloor, yet an elusive problem is constraining the timing of past slope failure. We present a novel age-dating technique based on perturbations to underlying gas hydrate stability caused by slide-impacted seafloor changes. Using three-dimensional (3-D) seismic data, we mapped an irregular bottom simulating reflection (BSR) underneath a submarine landslide in the Orca Basin, Gulf of Mexico. The irregular BSR mimics the pre-slide seafloor geometry rather than the modern bathymetry. Therefore, we suggest that the gas hydrate stability zone (GHSZ) is still adjusting to the post-slide sediment temperature. We applied transient conductive heat-flow modeling to constrain the response of the GHSZ to the slope failure, which yielded a most likely age of ca. 8 ka, demonstrating that gas hydrate can respond to landslides even on multimillennial time scales. We further provide a generalized analytical solution that can be used to remotely date submarine slides in the absence of traditional dating techniques.

Publisher

Geological Society of America

Subject

Geology

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