Continental Facies Architecture and Hydrocarbon-Stained Shale Intervals of the Bima Formation at Yarandua, Upper Benue Trough, Northeastern Nigeria
Keywords:
Bima Formation; Yarandua; Upper Benue Trough; Continental facies; Fluvial sedimentology; Hydrocarbon-stained shale; Reservoir heterogeneityAbstract
The Bima Formation forms the basal Cretaceous siliciclastic succession of the Upper Benue
Trough and records early continental sedimentation associated with rift initiation. This
study documents the facies architecture and depositional significance of Bima Formation
outcrops at Yarandua, northeastern Nigeria, with emphasis on continental facies
relationships and hydrocarbon-stained shale intervals. Three outcrop sections were logged
and interpreted using lithology, texture, bed geometry, sedimentary structures, weathering
character, nature of contacts, fracture patterns, and bituminous staining. Five recurring
facies were identified: weathered basement, conglomerate, massive to cross-bedded
sandstone, siltstone/mudstone, and shale. These facies are grouped into three facies
associations: proximal braided fluvial-alluvial fan deposits, fluvial channel-bar to overbank
deposits, and floodplain-ponded overbank/lacustrine shale deposits. The conglomeratic and
poorly sorted sandstone units indicate high-energy traction deposition close to uplifted
basement source areas, whereas interbedded sandstone, siltstone, mudstone, and shale
reflect fluctuating discharge, channel migration, floodplain aggradation, and localized
ponding. Oil-wet and dark bituminous shale surfaces in section OJ-003 suggest hydrocarbon
impregnation, organic enrichment, or migration staining along fractures and weathered
bedding surfaces. These features indicate that fine-grained intervals within the Bima
Formation should not be treated only as passive floodplain deposits; locally, they may
represent source-prone, seal, or migration-related facies within a simple continental
petroleum-system framework. The studied successions therefore record deposition in a
tectonically active continental rift setting dominated by braided fluvial, alluvial-fan,
overbank, and shallow lacustrine processes. The results refine the sedimentological
interpretation of the Bima Formation at Yarandua and highlight its relevance for reservoir
heterogeneity and hydrocarbon prospectivity
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