Pore pressure measurements on IODP Exp308 sites

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Auteurs principaux: Flemings, Peter B, Long, H, Dugan, Brandon, Germaine, John T, John, C, Behrmann, Jan-Hinrich, Sawyer, Dale S, IODP Expedition 308 Scientists
Format: Dataset Open Access
Langue:en
Publié: PANGAEA 2008
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author Flemings, Peter B
Long, H
Dugan, Brandon
Germaine, John T
John, C
Behrmann, Jan-Hinrich
Sawyer, Dale S
IODP Expedition 308 Scientists
author_facet Flemings, Peter B
Long, H
Dugan, Brandon
Germaine, John T
John, C
Behrmann, Jan-Hinrich
Sawyer, Dale S
IODP Expedition 308 Scientists
collection Datos científicos de ciencias marinas y ambientales
contents Overpressures measured with pore pressure penetrometers during Integrated Ocean Drilling Program (IODP) Expedition 308 reach 70% and 60% of the hydrostatic effective stress (View the MathML source) in the first 200 meters below sea floor (mbsf) at Sites U1322 and U1324, respectively, in the deepwater Gulf of Mexico, offshore Louisiana. High overpressures are present within low permeability mudstones where there have been multiple, very large, submarine landslides during the Pleistocene. Beneath 200 mbsf at Site U1324, pore pressures drop significantly: there are no submarine landslides in this mixture of mudstone, siltstone, and sandstone. The penetrometer measurements did not reach the in situ pressure at the end of the deployment. We used a soil model to determine that an extrapolation approach based on the inverse of square route of time (View the MathML source) requires much less decay time to achieve a desirable accuracy than an inverse time (1/t) extrapolation. Expedition 308 examined how rapid and asymmetric sedimentation above a permeable aquifer drives lateral fluid flow, extreme pore pressures, and submarine landslides. We interpret that the high overpressures observed are driven by rapid sedimentation of low permeability material from the ancestral Mississippi River. Reduced overpressure at depth at Site U1324 suggests lateral flow (drainage) whereas high overpressure at Site U1322 requires inflow from below: lateral flow in the underlying permeable aquifer provides one mechanism for these observations. High overpressure near the seafloor reduces slope stability and provides a mechanism for the large submarine landslides and low regional gradient (2°) offshore from the Mississippi delta.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_725474
institution PANGAEA
language en
publishDate 2008
publisher PANGAEA
record_format pangaea
spellingShingle Pore pressure measurements on IODP Exp308 sites
Flemings, Peter B
Long, H
Dugan, Brandon
Germaine, John T
John, C
Behrmann, Jan-Hinrich
Sawyer, Dale S
IODP Expedition 308 Scientists
308-U1322B; 308-U1322C; 308-U1322D; 308-U1324B; 308-U1324C; DRILL; Drilling/drill rig; Exp308; Gulf of Mexico Hydrogeology; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Joides Resolution
Overpressures measured with pore pressure penetrometers during Integrated Ocean Drilling Program (IODP) Expedition 308 reach 70% and 60% of the hydrostatic effective stress (View the MathML source) in the first 200 meters below sea floor (mbsf) at Sites U1322 and U1324, respectively, in the deepwater Gulf of Mexico, offshore Louisiana. High overpressures are present within low permeability mudstones where there have been multiple, very large, submarine landslides during the Pleistocene. Beneath 200 mbsf at Site U1324, pore pressures drop significantly: there are no submarine landslides in this mixture of mudstone, siltstone, and sandstone. The penetrometer measurements did not reach the in situ pressure at the end of the deployment. We used a soil model to determine that an extrapolation approach based on the inverse of square route of time (View the MathML source) requires much less decay time to achieve a desirable accuracy than an inverse time (1/t) extrapolation. Expedition 308 examined how rapid and asymmetric sedimentation above a permeable aquifer drives lateral fluid flow, extreme pore pressures, and submarine landslides. We interpret that the high overpressures observed are driven by rapid sedimentation of low permeability material from the ancestral Mississippi River. Reduced overpressure at depth at Site U1324 suggests lateral flow (drainage) whereas high overpressure at Site U1322 requires inflow from below: lateral flow in the underlying permeable aquifer provides one mechanism for these observations. High overpressure near the seafloor reduces slope stability and provides a mechanism for the large submarine landslides and low regional gradient (2°) offshore from the Mississippi delta.
title Pore pressure measurements on IODP Exp308 sites
topic 308-U1322B; 308-U1322C; 308-U1322D; 308-U1324B; 308-U1324C; DRILL; Drilling/drill rig; Exp308; Gulf of Mexico Hydrogeology; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Joides Resolution
url https://doi.org/10.1594/PANGAEA.725474