0000000000860550

AUTHOR

Neil Pickard

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Characterization and origin of permeability-porosity heterogeneity in shallow-marine carbonates: from core scale to 3D reservoir dimension (Middle Ju…

2014

21 pages; International audience; Nuclear magnetic resonance (NMR), stable isotope geochemistry of micro-sampled cores, NMR well-logs and 3D modeling are used to investigate the carbonate permeability-porosity heterogeneity along 230 m-thick limestones of the Paris Basin. Despite the global low porosity and permeability of the limestones, two aquifers units with porosity greater than 15% were identified. These two aquifers are very different in terms of pore through radii and NMR signal. The first one (A1: Aquifer 1) is a 7 m-thick mudstone unit, dominated by extended microporosity with pore throat radii of 0.25 μm to 0.3 μm. The second one (A2: Aquifer 2) is a 15 m-thick oolitic grainstone…

CarbonateStratigraphyPetrography[SDU.STU.PE]Sciences of the Universe [physics]/Earth Sciences/PetrographyMineralogyAquiferNeomorphismengineering.materialOceanography[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/StratigraphyDiagenesischemistry.chemical_compound[ SDU.STU.PE ] Sciences of the Universe [physics]/Earth Sciences/PetrographyCalcitegeographygeography.geographical_feature_categoryAragoniteModelingGeologySedimentologyPetrophysicCementation (geology)DiagenesisGeophysicschemistry[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/StratigraphyMeteoric waterengineeringCarbonateEconomic GeologyGeology
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