6533b7d1fe1ef96bd125d2fc
RESEARCH PRODUCT
Sedimentological and tectonic context of Paleoproterozoïque Franceville basin (Gabon) : fluid pressure structures, bitumen and uranium mineralization
Alexis Ndongosubject
Fracturation hydrauliqueBassin de FrancevilleFailles de transfertUranium mineralizationTransfer faultsHydraulic fracturingPaleoproterozoicBarrières de perméabilitéFootwall anticlinesStructures de surpression fluidesLongitudinal normal faultsFranceville basinAnticlinal de murBitumen[SDU.STU] Sciences of the Universe [physics]/Earth SciencesUraniumFluid pressure structuresPaléoprotérozoïqueBitumePermeability barriersFailles longitudinalesdescription
Metallogenic deposits within paleproterozoic basins depend on generation and migration of fluids. The aim of this study is to provide a better understanding of tectonic, sedimentological and diagenetic setting of the uranium deposits in the Franceville basin and to characterize hydraulic fracturing impact on fluid migration processes in sandstone reservoirs.Tectonic study define the N180-170° transfer faults, associated with Archean tectonic and the N110-120° longitudinal normal faults. These two fault directions split the Franceville basin into small sub-basins. The longitudinal normal faults are associated with footwall anticlines and hanging wall synclines. The uranium deposits of Franceville basin are located in footwall anticlines of longitudinal normal faults.Sedimentological analysis allows to describe four depositional environments: Fluvial (lower FA), deltaic (middle FA), tidal (upper FA), and open marine environments (FB). Facies distribution in the FA-FB transition promotes the establishment of permeability barriers. These latter are responsible of the increase in fluid pressure and of the formation of fluid pressure structures (dykes, stylolites, quartz veins), in footwall anticlines of longitudinal normal faults. Increase in fluid pressure allows the migration of uranium-fluids, and hydrocarbon from the deep basin to the footwall anticline. Hydraulic fracturing processes lead the precipitation of uranium mineralization, associated with bitumen, in microfractures.
| year | journal | country | edition | language |
|---|---|---|---|---|
| 2016-01-01 |