R. Kayen, Homa J. Lee
tlooto Summary
Pleistocene slope instability caused by gas hydrate disassociation leading to excess pore-fluid pressures and reduced slope stability on Beaufort Sea margin.
Abstract
Abstract The Beaufort Sea continental slope is disrupted by a belt of massive bedding‐plane slides and rotational slumps. This zone coincides with a region of sediment containing gas hydrate, an inclusion compound of gas and water. Quantitative studies suggest that elevated pore‐fluid pressures generated as a by‐product of gas hydrate disassociation during repeated episodes of eustatic sea level lowering during Pleistocene time were a major cause of these slides. Eustatic sea level fall causes reduced pressures acting on seafloor sediment. In oceanic areas underlain by sediment with gas hydrate, the reduction of sea level initiates disassociation along the base of the gas hydrate, which, in turn, causes the release of large volumes of gas into the sediment and creates excess pore‐fluid pressures and reduced slope stability. A quantitative approach was taken to predict excess pressures at the base of the gas hydrate zone, and the stability of the overlying sediment for a variety of sediment types. Our stud...
Citation format
KAYEN, R.; LEE, Homa J. Pleistocene slope instability of gas hydrate‐laden sediment on the beaufort sea margin. MARINE GEORESOURCES & GEOTECHNOLOGY, 1991, 10: 125–141.