Michael A. Clare
Complex and Cascading Triggering of Submarine Landslides and Turbidity Currents at Volcanic Islands Revealed From Integration of High-Resolution Onshore and Offshore Surveys
Clare, Michael A.; Le Bas, Tim; Price, David M.; Hunt, James E.; Sear, David; Cartigny, Matthieu J.B.; Vellinga, Age; Symons, William; Firth, Christopher; Cronin, Shane
Authors
Tim Le Bas
David M. Price
James E. Hunt
David Sear
Dr Matthieu Cartigny matthieu.j.cartigny@durham.ac.uk
Associate Professor
Age Vellinga
William Symons
Christopher Firth
Shane Cronin
Abstract
Submerged flanks of volcanic islands are prone to hazards including submarine landslides that may trigger damaging tsunamis and sediment-laden seafloor flows (called “turbidity currents”). These hazards can break seafloor infrastructure which is critical for global communications and energy transmission. Small Island Developing States are particularly vulnerable to these hazards due to their remote and isolated nature, small size, high population densities, and weak economies. Despite their vulnerability, few detailed offshore surveys exist for such islands, resulting in a geohazard “blindspot,” particularly in the South Pacific. Understanding how these hazards are triggered is important; however, pin-pointing specific triggers is challenging as most studies have been unable to link continuously between onshore and offshore environments, and focus primarily on large-scale eruptions with sudden production of massive volumes of sediment. We address these issues by integrating the first detailed (2 × 2 m) bathymetry data acquired from Tanna Island, Vanuatu with a combination of terrestrial remote sensing data, onshore and offshore sediment sampling, and documented historical events. Mount Yasur on Tanna has experienced low-magnitude Strombolian activity for at least the last 600 years. We find clear evidence for submarine landslides and turbidity currents, yet none of the identified triggers are related to major volcanic eruptions, in contrast to conclusions from several previous studies. Instead we find that cascades of non-volcanic events (including outburst floods with discharges of >1,000 m3/s, and tropical cyclones), that may be separated by decades, are more important for preconditioning and triggering of landslides and turbidity currents in oversupplied sedimentary regimes such as at Tanna. We conclude with a general model for how submarine landslides and turbidity currents are triggered at volcanic and other heavily eroding mountainous islands. Our model highlights the often-ignored importance of outburst floods, non-linear responses to land-use and climatic changes, and the complex interactions between a range of coastal and tectonic processes that may overshadow volcanic regimes.
Citation
Clare, M. A., Le Bas, T., Price, D. M., Hunt, J. E., Sear, D., Cartigny, M. J., Vellinga, A., Symons, W., Firth, C., & Cronin, S. (2018). Complex and Cascading Triggering of Submarine Landslides and Turbidity Currents at Volcanic Islands Revealed From Integration of High-Resolution Onshore and Offshore Surveys. Frontiers in Earth Science, 6, Article 223. https://doi.org/10.3389/feart.2018.00223
Journal Article Type | Article |
---|---|
Acceptance Date | Nov 21, 2018 |
Online Publication Date | Dec 13, 2018 |
Publication Date | Dec 13, 2018 |
Deposit Date | Jan 9, 2019 |
Publicly Available Date | Jan 9, 2019 |
Journal | Frontiers in Earth Science |
Publisher | Frontiers Media |
Peer Reviewed | Peer Reviewed |
Volume | 6 |
Article Number | 223 |
DOI | https://doi.org/10.3389/feart.2018.00223 |
Public URL | https://durham-repository.worktribe.com/output/1310627 |
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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/
Copyright Statement
Copyright © 2018 Clare, Le Bas, Price, Hunt, Sear, Cartigny, Vellinga, Symons, Firth and Cronin. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
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