Modelling the 1929 Grand Banks slump and landslide tsunami

Løvholt, Finn, Schulten, Irena, Mosher, David, Harbitz, Carl and Krastel, Sebastian (2018) Modelling the 1929 Grand Banks slump and landslide tsunami Geological Society, London, Special Publications . DOI 10.1144/SP477.28.

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Abstract

On 18 November 1929, an Mw 7.2 earthquake occurred south of Newfoundland, displacing >100 km3 of sediment volume that evolved into a turbidity current. The resulting tsunami was recorded across the Atlantic and caused fatalities in Newfoundland. This tsunami is attributed to sediment mass failure because no seafloor displacement due to the earthquake has been observed. No major headscarp, single evacuation area nor large mass transport deposit has been observed and it is still unclear how the tsunami was generated. There have been few previous attempts to model the tsunami and none of these match the observations. Recently acquired seismic reflection data suggest that rotational slumping of a thick sediment mass may have occurred, causing seafloor displacements up to 100 m in height. We used this new information to construct a tsunamigenic slump source and also carried out simulations assuming a translational landslide. The slump source produced sufficiently large waves to explain the high tsunami run-ups observed in Newfoundland and the translational landslide was needed to explain the long waves observed in the far field. However, more analysis is needed to derive a coherent model that more closely combines geological and geophysical observations with landslide and tsunami modelling.

Document Type: Article
Research affiliation: Kiel University > Kiel Marine Science
OceanRep > The Future Ocean - Cluster of Excellence
Kiel University
Refereed: Yes
DOI etc.: 10.1144/SP477.28
ISSN: 0305-8719
Projects: Future Ocean
Date Deposited: 07 Aug 2018 08:21
Last Modified: 07 Aug 2018 08:21
URI: http://eprints.uni-kiel.de/id/eprint/43946

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