Tectonic and geomorphic controls on the distribution of submarine landslides across active and passive margins, eastern New Zealand.

Watson, S.J., Mountjoy, J. J. and Crutchley, Gareth J. (2020) Tectonic and geomorphic controls on the distribution of submarine landslides across active and passive margins, eastern New Zealand. In: Subaqueous Mass Movements and their Consequences: Advances in Process Understanding, Monitoring and Hazard Assessments. , ed. by Georgiopoulou, A.. Special Publications Geological Society London, 500 . GSL (Geological Society of London), London, pp. 477-494. DOI 10.1144/SP500-2019-165.

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Abstract

Submarine landslides occur on continental margins globally and can have devastating consequences for marine habitats, offshore infrastructure and coastal communities due to potential tsunamigenesis. Therefore, understanding landslide magnitude and distribution is central to marine and coastal hazard planning.

We present the first submarine landslide database for the eastern margin of New Zealand comprising >2200 landslides occurring in water depths from c. 300–4000 m. Landslides are more prevalent and, on average, larger on the active margin compared with the passive margin. We attribute higher concentrations of landslides on the active margin to tectonic processes including uplift and oversteepening, faulting and seamount subduction. Submarine landslide scars are concentrated around canyon systems and close to canyon thalwegs. This suggests that not only does mass wasting play a major role in canyon evolution, but also that canyon-forming processes may provide preconditioning factors for slope failure.

Results of this study offer unique insights into the spatial distribution, magnitude and morphology of submarine landslides across different geological settings, providing a better understanding of the causative factors for mass wasting in New Zealand and around the world.

Document Type: Book chapter
Keywords: Tectonics, geomorphology, submarine landslides, active margins, passive margins, eastern New Zealand
Research affiliation: OceanRep > GEOMAR > FB4 Dynamics of the Ocean Floor > FB4-GDY Marine Geodynamics
Publisher: GSL (Geological Society of London)
Projects: HYDEE
Date Deposited: 25 Mar 2020 11:35
Last Modified: 21 Jul 2020 14:24
URI: https://oceanrep.geomar.de/id/eprint/49305

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