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Provedor de dados:  ArchiMer
País:  France
Título:  Quantifying the role of sandy-silty sediments in generating slope failures during earthquakes: example from the Algerian margin
Autores:  Dan, Gabriela
Sultan, Nabil
Savoye, Bruno
Deverchere, Jacques
Yelles, Karim
Data:  2009-06
Ano:  2009
Palavras-chave:  Earthquakes
Potential of liquefaction
Slope stability
Algerian margin
Resumo:  The Algerian margin is a seismically active region, where during the last century, several large magnitude earthquakes took place. This study combines geotechnical and sedimentological data with numerical modelling to quantitatively assess the present-day slope stability of the Algerian margin. Geotechnical laboratory tests, such as cyclic triaxial tests, oedometric tests and vane shear tests were carried out on sediment cores collected on the study area. The liquefaction potential of a sediment column located about 30 km from the BoumerdSs earthquake epicentre of 21st May 2003 was evaluated theoretically for an earthquake of M (w) = 6.8. We show that thin sand and silt beds such as those described on recovered sediment cores are the main cause of sediment deformation and liquefaction during earthquakes. Numerical calculations showed that the slope failure may occur during an earthquake characterised by a PGA in excess of 0.1g, and also that, under a PGA of 0.2g liquefaction could be triggered in shallow silty-sandy deposits. Moreover, comparison of the predicted slope failure with failure geometries inferred from seafloor morphology showed that earthquakes and subsequent mass movements could explain the present-day morphology of the study area.
Tipo:  Text
Idioma:  Inglês
Identificador:  http://archimer.ifremer.fr/doc/2009/publication-6448.pdf

DOI:10.1007/s00531-008-0373-5
Editor:  Springer
Relação:  http://archimer.ifremer.fr/doc/00000/6448/
Formato:  application/pdf
Fonte:  International Journal of Earth Sciences (1437-3254) (Springer), 2009-06 , Vol. 98 , N. 4 , P. 769-789
Direitos:  2009 Springer. Part of Springer Science+Business Media
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