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Journal of African earth sciences v.139, 2018년, pp.330 - 340   SCIE
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Sequence stratigraphic interpretation of parts of Anambra Basin, Nigeria using geophysical well logs and biostratigraphic data

Anakwuba, E.K. (Department of Geological Sciences, Nnamdi Azikiwe University Awka, Nigeria ) ; Ajaegwu, N.E. (Department of Geological Sciences, Nnamdi Azikiwe University Awka, Nigeria ) ; Ejeke, C.F. (Department of Geological Sciences, Nnamdi Azikiwe University Awka, Nigeria ) ; Onyekwelu, C.U. (Sunlink Petroleum Limited, Nigeria ) ; Chinwuko, A.I. (Department of Geological Sciences, Federal University Gusau, Nigeria ) ;
  • 초록  

    Abstract The Anambra basin constitutes the southeastern lower portion of the Benue Trough, which is a large structural depression that is divided into lower, middle and upper parts; and is one of the least studied inland sedimentary basins in Nigeria. Sequence stratigraphic interpretation had been carried out in parts of the Anambra Basin using data from three wells (Alo-1 Igbariam-1 and Ajire-1). Geophysical well logs and biostratigraphic data were integrated in order to identify key bounding surfaces, subdivide the sediment packages, correlate sand continuity and interpret the environment of deposition in the fields. Biostratigraphic interpretation, using foraminifera and plankton population and diversity, reveals five maximum flooding surfaces (MFS) in the fields. Five sequence boundaries (SB) were also identified using the well log analysis. Four 3rd order genetic sequences bounded by maximum flooding surfaces (MFS-1 to MFS-6) were identified in the areas; four complete sequences and one incomplete sequence were identified in both Alo-1 and Igbariam-1 wells while Ajire-1 has an no complete sequence. The identified system tracts delineated comprises Lowstand Systems Tracts (progradational to aggradational to retrogradational packages), Transgressive Systems Tracts (retrogradational packages) and Highstand Systems Tracts (aggradational to progradational packages) in each well. The sand continuity across the fields reveal sands S1 to S5 where S1 is present in Ajire-1 well and Igbariam-1 well but not in Alo-1 well. The sands S4 to S5 run across the three fields at different depths. The formations penetrated by the wells starting from the base are; Nkporo Formation (Campanian), Mamu Formation (Late Campanian to Early Maastrichtian), Ajali Sandstone (Maastrichtian), Nsukka Formation (Late Maastrichtian to Early Palaeocene), Imo Formation (Palaeocene) and Nanka Sand (Eocene). The environments of deposition revealed are from coastal to bathyal. The sands of lowstand system tract and highstand system tract found in Ajali, Nsukka, Nkporo and Imo (Ebenebe Sandstone) Formations show good continuity and as such good reservoir qualities while the shales of the transgressive system tracts which includes the Imo Formation, Mamu, and Nkporo Formations where most of the maximum flooding surfaces were delineated, can serve as seals to the numerous reservoir units. Combinations of the reservoir sands of the lowstand system tract and highstand system tract and the shale units of the transgressive system tract can form good stratigraphic traps for hydrocarbon and hence should be hydrocarbon exploration targets. Highlights Four 3rd order genetic sequences bounded by maximum flooding surfaces (MFS-1 to MFS-6) were identified in the areas. The identified system tracts delineated comprises LST, TST and HST in each wells. Five reservoir sands were identified and marked. The shales of the TST and HST will serve as a good seals to the numerous reservoir units. The environments of deposition revealed within the study area are from coastal to bathyal. Graphical abstract [DISPLAY OMISSION]


  • 주제어

    Anambra basin .   Geophysical well logs .   Biostratigraphic data .   Maximum flooding surfaces .   Reservoir units and hydrocarbon.  

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