Geofluids · 2003 · 87 citations · 31 references
EngineeringSoil-structure InteractionSedimentary GeologyFluid EscapeEarth ScienceGeotechnical EngineeringSeismic StratigraphyGeotechnical ProblemLarge‐scale Sand InjectitesAbstract Sand InjectitesSeabed LiquefactionMarine GeologyEarthquake EngineeringInduced SeismicitySeismic DataLong‐term Fluid ConduitsGeologySedimentary PetrologyEngineering GeologySedimentologySediment TransportDepositional StratigraphyRock PropertiesTectonicsGeotechnical PropertyCivil EngineeringGeomechanicsGeochemistry
Abstract Sand injectites and related features that are interpreted to have formed by large‐scale, often sudden, fluid escape in the shallow (typically <500 m) crust are readily imaged on modern seismic data. Many of the features have geometrical similarity to igneous dykes and sills and cross‐cut the depositional stratigraphy. Sand injectites may be multiphase and form connected, high‐permeability networks that transect kilometre‐scale intervals of otherwise fine‐grained, low‐permeability strata. North Sea examples often form significant hydrocarbon reservoirs and typically contain degraded, low‐gravity crude oil. Fluid inclusion and stable isotope data from cements in sand injectites record a mixing of aqueous fluids of deep and shallow origin.
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Stephen F. Obermeier · Engineering Geology · 1996 · 591 citations
Seabed Liquefaction, Liquefaction-induced Features, Engineering +9