4.3 Article

Ordovician deep dolomite reservoirs in the intracratonic Ordos Basin, China: Depositional model and Diagenetic evolution

Journal

ENERGY EXPLORATION & EXPLOITATION
Volume 36, Issue 4, Pages 850-871

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/0144598718778171

Keywords

Dolomite reservoir; peritidal sequence; dolomitization; Ordovician Majiagou Formation; Ordos Basin

Categories

Funding

  1. National Natural Science Foundation of China [41602118, 41302087]
  2. Open Foundation of State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation [PLC201605]

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Recent natural gas discoveries indicate that non-karstification-dominated reservoirs exist in the intracratonic Ordos Basin. This study examines the sedimentological and geochemical characteristics needed to clarify the depositional model and diagenetic evolution process of this newly discovered reservoir type. The depositional environment of the dolomite reservoir can be characterized as a tidal flat that grew from the Central Paleo-uplift to the eastern depression by cyclic progradation on an epeiric platform. A tidal flat sequence can extend laterally as a progradational wedge in each cycle of sea level fluctuation. The sheet-shaped peritidal shoal facies associations patched on the wedge represent potential dolomite reservoirs and can be recognized by the presence of doloarenite that has been altered into a vaguely relict grained-texture by diagenesis. Although continuing destructive diagenesis has led to reservoir densification, burial dolomitization and burial dissolution with facies selectivity have tended to occur in peritidal shoal facies associations, thus improving the quality of the dolomite reservoirs. These models provide new insights for targeting deep dolomite hydrocarbon reservoirs in intracratonic basins.

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