TY - ECHAP KW - discrete element method KW - failure KW - mechanism KW - pore volume change KW - sediment fabric KW - sediment strength AU - Morelia Urlaub AU - Antonis Zervos AU - Peter Talling AU - Douglas Masson AU - Chris Clayton AU - Y Yamada AB -
Overpressure generation due to rapid sediment deposition can result in low effective stresses within the sediment column. It has been proposed that these large overpressures are the main preconditioning factor for causing large-scale sub- marine slope failure on passive continental margins, such as those in the Gulf of Mexico and offshore Norway. The rate of overpressure generation depends on the sedimentation rate, sediment compressibility and permeability. The Gulf of Mexico and the Norwegian continental slope have experienced comparatively high sediment input, but large-scale slope failure also occurs in locations with very low sedimen- tation rates such as the Northwest African continental margin. Here we show results from 2D numerical modelling of a 2\textdegree continental slope subjected to deposi- tion rates of 0.15 m/ka. These results do not indicate any evidence for significant overpressure or slope instability. We conclude that factors other than overpressure must be fundamental for initiating slope failure, at least in locations with low sedi- mentation rates.
DO - 10.1007/978-3-319-00972-8 N2 -Overpressure generation due to rapid sediment deposition can result in low effective stresses within the sediment column. It has been proposed that these large overpressures are the main preconditioning factor for causing large-scale sub- marine slope failure on passive continental margins, such as those in the Gulf of Mexico and offshore Norway. The rate of overpressure generation depends on the sedimentation rate, sediment compressibility and permeability. The Gulf of Mexico and the Norwegian continental slope have experienced comparatively high sediment input, but large-scale slope failure also occurs in locations with very low sedimen- tation rates such as the Northwest African continental margin. Here we show results from 2D numerical modelling of a 2\textdegree continental slope subjected to deposi- tion rates of 0.15 m/ka. These results do not indicate any evidence for significant overpressure or slope instability. We conclude that factors other than overpressure must be fundamental for initiating slope failure, at least in locations with low sedi- mentation rates.
PY - 2014 SE - 25 SN - 978-3-319-00971-1 EP - 85\textendash94 TI - Chapter 25: How do ~2\textdegree Slopes fail in areas of slow sedimentation? A sensitivity study on the influence of accumulation rate and permeability on submarine slope stability UR - http://link.springer.com/10.1007/978-3-319-00972-8 VL - 37 ER -