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Evolutionary development and volume balance calculations of the Ana Slide in the Eivissa Channel, Western Mediterranean.
Sager, Thore, Urlaub, Morelia , Kaminski, Pauline, Lastras, G., Canals, M. and Berndt, Christian (2021) Evolutionary development and volume balance calculations of the Ana Slide in the Eivissa Channel, Western Mediterranean. [Poster] In: 81. Jahrestagung der Deutschen Geophysikalischen Gesellschaft (DGG). , 01.03.-05.03.2021, Kiel (online) .
Full text not available from this repository.Abstract
Submarine landslides are widespread phenomena on continental slopes and act as prime sediment transport processes between shallow and deep marine regions. In addition, they pose significant risk to coastal communities worldwide. Within this study, we focus on the Ana Slide, a relatively small landslide with areal extent of 4.7 km2located at water depth between 635 –905 m on the eastern slopes of the Eivissa Channel, western Mediterranean. Predominant sediment types are high-water content, carbonate-dominated hemipelagic deposits susceptible to high pore pressures and liquefaction. Available data include very-high resolution bathymetric and a 3D seismic dataset completely covering the landslide.The Ana Slide is characterised by three landslide domains: the 1) evacuational or headwall domain, 2) translational domain, and 3) accumulational or toe domain. While the headwall domain demonstrates classic features of material evacuation and poses as the exclusive source of material within the landslide process, the translational domain documents extensive in-situ remnant blocks which were unaffected during failure. Instead, landslide material from the evacuational domain moved up and over the translational domain. The toe domain exhibits extensive chaotic seismicfacies with compressional ridges throughout the deposit and imprinted onto the seafloor. Even though extensive chaotic seismic facies characterise the toe domain, its volume differs significantly from the volume of the evacuated material from the headwall domain. Thus, we conclude that the chaotic seismic facies does not represent landslide material. Instead, the in-situ sediment underwent a range of soft-sediment deformation processes. We propose two mechanisms responsible for this deformation: loading-and shearing-induced soft-sediment deformation resulting from rapid deposition of overburden material. Under consideration of the likely elevated pore pressure and liquefaction potential of deposits, these mechanisms lead to the destruction and disturbanceof internal reflections.Our analysis demonstrates the difficulties in distinguishing between actually failed landslide material and deformed but not translated sediment, which may well lead to erroneous landslide volume estimations. Our new model of the evolutionary development of the Ana Slide may well hold for many other submarine landslides globally, the volumes of which could be significantly overestimated.
Document Type: | Conference or Workshop Item (Poster) |
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Research affiliation: | OceanRep > GEOMAR > FB4 Dynamics of the Ocean Floor > FB4-GDY Marine Geodynamics |
Date Deposited: | 13 Jul 2021 13:24 |
Last Modified: | 13 Jul 2021 13:24 |
URI: | https://oceanrep.geomar.de/id/eprint/53328 |
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