Controlling factors and accumulation model of hydrocarbon reservoirs in the Upper Cretaceous Yogou Formation, Koulele Area, Termit Basin, Niger

Xuying Wang, Lunkun Wan, Zaixing Jiang, Ruohan Liu, Xiabin Wang, Wangxin Tang, Yi Gao, Shengqian Liu, Wenmao Xu

Journal of Earth Science ›› 2017, Vol. 28 ›› Issue (6) : 1126-1134.

Journal of Earth Science ›› 2017, Vol. 28 ›› Issue (6) : 1126-1134. DOI: 10.1007/s12583-016-0936-5
Article

Controlling factors and accumulation model of hydrocarbon reservoirs in the Upper Cretaceous Yogou Formation, Koulele Area, Termit Basin, Niger

Author information +
History +

Abstract

Based on the sedimentary and tectonic background of the Termit Basin, this paper focuses on the Upper Cretaceous Yogou Formation and uses organic geochemistry, logging, oil testing and seismic data to analyze the primary control factors of the hydrocarbon accumulation and establish corresponding model in order to predict favorable exploration target zones of hydrocarbon reservoirs. This study demonstrates that the Upper Cretaceous Yogou Formation is a self-generation and self-accumulation type reservoir. The Yogou Formation hydrocarbon reservoirs in the Koulele area are controlled by four factors: (1) the source rock is controlled by a wide range of YS1-YS2 marine shale, (2) the sandstone reservoir is controlled by the YS3 underwater distributary channel and storm dunes, (3) migration of hydrocarbons is controlled by faults and the regional monocline structure, and (4) the accumulation of hydrocarbons is controlled by lateral seal. The structures in the western Koulele area are primarily reverse fault-blocks with large throws, and the structures in the east are dominantly fault-blocks with small throws (co-rotating and reverse) and a fault-nose. In the western Koulele area, where the facies are dominated by storm dunes on a larger scale, it is easier to form lithologic reservoirs of sandstone lens. In the eastern Koulele area, high-quality channel sandstone reservoirs, fault-blocks with small throws, and the monocline structure benefit for the formation of updip pinch out lithologic traps, fault lithologic reservoirs and fault-nose structural reservoirs. Future exploration targets should be focused in the western storm dunes zone and eastern distributary channel sand zone with small fault-blocks.

Keywords

hydrocarbon reservoirs / controlling factors / accumulation model / Koulele area / Yogou Formation

Cite this article

Download citation ▾
Xuying Wang, Lunkun Wan, Zaixing Jiang, Ruohan Liu, Xiabin Wang, Wangxin Tang, Yi Gao, Shengqian Liu, Wenmao Xu. Controlling factors and accumulation model of hydrocarbon reservoirs in the Upper Cretaceous Yogou Formation, Koulele Area, Termit Basin, Niger. Journal of Earth Science, 2017, 28(6): 1126‒1134 https://doi.org/10.1007/s12583-016-0936-5

References

Binks R. M., Fairhead J. D. A Plate Tectonic Setting for Mesozoic Rifts of West and Central Africa. Tectonophysics, 1992, 213(1/2): 141-151.
CrossRef Google scholar
Browne S. E., Fairhead J. D. Gravity Study of the Central African Rift System: A Model of Continental Disruption 1: The Ngaoundere and Abu Gabra Rifts. Tectonophysics, 1983, 94(1–4): 187-203.
CrossRef Google scholar
Fairhead J. D. Geophysical Controls on Sedimentation within the African Rift Systems. Geological Society, London, Special Publications, 1986, 25(1): 19-27.
CrossRef Google scholar
Fairhead J. D., Green C. M., Masterton S. M., . The Role that Plate Tectonics, Inferred Stress Changes and Stratigraphic Unconformities Have on the Evolution of the West and Central African Rift System and the Atlantic Continental Margins. Tectonophysics, 2013, 594(3): 118-127.
CrossRef Google scholar
Fu J. L., Sun Z. H., Liu K. N. The Study on Sequence Stratigraphy and Sedimentary System of Paleogene in Agadem Block, Niger. Earth Science Frontiers, 2012, 19(1): 58-67.
Genik G. J. Petroleum Geology of Cretaceous-Tertiary Rift Basins in Niger, Chad, and Central African Republic. AAPG Bulletin, 1993, 77: 1405-1434.
Guiraud R., Bosworth W., Thierry J., . Phanerozoic Geological Evolution of Northern and Central Africa: An Overview. Journal of African Earth Sciences, 2005, 43(1–3): 83-143.
CrossRef Google scholar
Guiraud R., Maurin J. C. Early Cretaceous Rifts of Western and Central Africa: An Overview. Tectonophysics, 1992, 213(1/2): 153-168.
CrossRef Google scholar
Harouna M., Philp R. P. Potential Petroleum Source Rocks in the Termit Basin, Niger. Journal of Petroleum Geology, 2012, 35(2): 165-185.
CrossRef Google scholar
Jiang Z. X. Sedimentology, 2010, 212-217.
Jiang Z. X., Zhao C. L., Liu M. H., . The Pilot Study of the Lake Facies Storm Deposits in Western Dongpu Sag. Acta Sedimentologica Sinica, 1990, 8 2 107−113.
Liu B., Pan X. H., Wan L. K., . Marine Transgression of the Eastern Niger Basin in the Late Cretaceous: Paleontological and Geochemical Evdence. Geoscience, 2011, 25(5): 995-1006.
Liu B., Pan X. H., Wan L. K., . Polyphase Rift Evolution of the Termit Basin, Eastern Niger: Constraints from Structural and Sedimentary Records. Geoscience, 2012, 26(2): 317-325.
Liu B., Pan X. H., Wan L. K., . Structural Evolution and Main Controlling Factors of the Paleogene Hydrocarbon Accumulation in Termit Basin, Eastern Niger. Acta Petrolei Sinica, 2012, 33(3): 394-403.
Liu B., Wan L. K., Mao F. J., . Hydrocarbon Potential of Upper Cretaceous Marine Source Rocks in the Termit Basin, Niger. Journal of Petroleum Geology, 2015, 38(2): 157-176.
CrossRef Google scholar
M. S., Xue L. Q., Su Y. D., . Rifting Controls on Sequence Stratigraphic Architecture: A Case Study in the Lower Cretaceous of Termit Basin, West African Rift System. Journal of Jilin University (Earth Science Edition), 2012, 42(3): 647-656.
M. S., Xue L. Q., Wan L. K., . Main Controlling Factors of Paleogene Hydrocarbon Accumulation of Termit Basin, West African Rift System. Earth Science Frontiers, 2015, 22(6): 207-216.
Peters, K. E., Cassa, M. R., 1994. Applied Source Rock Geochemistry. In: Magoon, L. B., Dow, W. G., eds. The Petroleum System—From Source to Trap. AAPG Memoir, 93–117
Tang G., Sun Z. H., Su J. Q., . Study of Cretaceous Sequential Stratigraphy and Sedimentary System in Termit Basin of West Africa. China Petroleum Exploration, 2015, 20(4): 81-88.
Wan L. K., Liu J. G., Mao F. J., . The Petroleum Geochemistry of the Termit Basin, Eastern Niger. Marine and Petroleum Geology, 2014, 51(2): 167-183.
CrossRef Google scholar
Xue L. Q., Wan L. K., Mao F. J., . Petroleum Migration and Accumulation in Termit Depression of East Niger Basin and Implications for Discovery of Well Dibeilla. Oversea Exploration, 2012, 4: 53-60.
Zeng H. L., Backus M. M., Barrow K. T., . Stratal Slicing, Part I: Realistic 3-D Seismic Model. Geophysics, 1998, 63(2): 502-513.
CrossRef Google scholar
Zeng H. L., Henry S. C., Riola J. P. Stratal Slicing, Part II: Real 3-D Seismic Data. Geophysics, 1998, 63(2): 514-522.
CrossRef Google scholar
Zeng H. L., Zhu X. M., Zhu R. K., . Guidelines for Seismic Sedimentologic Study in Non-Marine Postrift Basins. Petroleum Exploration and Development, 2012, 39(3): 275-284.
CrossRef Google scholar

Accesses

Citations

Detail

Sections
Recommended

/