首页> 外文期刊>Interpretation >Deep-burial dissolution and brecciation in dolostone reservoirs: Striking similarities between the Devonian Keg River Formation of western Canada and the Ordovician Ellenburger group of west Texas
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Deep-burial dissolution and brecciation in dolostone reservoirs: Striking similarities between the Devonian Keg River Formation of western Canada and the Ordovician Ellenburger group of west Texas

机译:白云岩储层中的深埋溶蚀和脆化作用:加拿大西部的泥盆纪凯格河形成与德克萨斯州西部的奥陶纪埃伦伯格岩之间的惊人相似之处

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Deeper burial dissolution of dolomitized fabrics created most of the reservoir quality in several Devonian Keg River oil pools on the Comet Platform in northwestern Alberta, Canada. This process also created reservoir quality in two Ordovician Ellenburger dolostone oil pools on the Eastern Shelf of the Midland Basin in west Texas, and provided an alternative explanation for reservoir development unrelated to the subaerial karstifi- cation model. Several observations confirmed deeper burial dissolution of Keg River dolostones. First, dolomites replaced, or cemented, grains previously sutured by pressure solution. Their subsequent dissolution postdated this pressure solution, confirming burial dissolution. Second, late-forming saddle dolomites dissolved. Third, secondary porosity developed along, or cross cut, stylolites, often in zebra dolostone fabrics, or formed along fracture planes that cut stylolites. These burial fractures often intersected secondary pores, implying a causal relationship. Fourth, dolostone breccia clasts contained stylolites rotated at different angles to each other and the horizon, confirming deeper burial brecciation. In the Keg River Formation on Comet Platform, proximity to conjugate reactivated basement faults that developed off of a master wrench fault, the Hay River Shear Zone, controlled deeper burial dissolution and.pool entrapment. Hydrothermal fluids, either calcium rich or acidic in composition, were moved along these faults and promoted extensive dissolution of completely dolomitized fabrics. Ellenburger dolostone reservoirs at Suggs and Withers Fields on the Eastern Shelf of Texas also resulted from deeper burial dissolution of completely dolomitized facies. The Keg River dissolution fabrics were replicated in Ellenburger samples, with the exception of zebra dolostones. Ellenburger reservoir development was closely aligned to faults and fractures associated with a master wrench fault, the Ft. Chadbourne Fault. These faults were inferred to have moved hot (possibly hydrothermal?), deeper burial diagenetic fluids that were calcium-rich, or periodically acidic, promoting dolomite dissolution and secondary porosity development.
机译:在加拿大艾伯塔省西北部彗星平台上的几个泥盆纪Keg河油藏中,白云石化织物的更深层埋藏创造了大部分储层质量。这一过程还为得克萨斯州中部盆地东部陆架东架上的两个奥陶纪Ellenburger白云岩油藏创造了储层质量,并为与地下岩溶模式无关的储层开发提供了另一种解释。几项观察结果证实了凯格河白云岩的更深埋葬。首先,白云石代替或粘合了以前用压力溶液缝合的谷物。他们随后的溶出晚于该压力溶液,证实了埋葬的溶出。第二,后期形成的鞍状白云岩溶解了。第三,次生孔隙通常是在斑马白云岩织物中沿着或穿过切纹石形成的,或者是沿切开切纹石的断裂面形成的。这些埋葬性骨折通常与次生孔隙相交,这暗示了因果关系。第四,白云岩角砾岩碎屑中包含的辉石相互之间以及与水平面的旋转角度不同,从而证实了更深的墓葬角砾化。在彗星平台上的Keg河地层中,靠近由主扳手断层产生的共轭再活化基底断层,即Hay River剪切带,控制了较深的埋葬溶解和池子的包裹。组成成分丰富或呈酸性的热液沿着这些断层移动,并促进了完全白云石化的织物的大量溶解。得克萨斯州东部大陆架的Suggs和Withers油田的Ellenburger白云岩储层也是由于完全白云石化相的更深埋葬而产生的。在Ellenburger样品中复制了Keg River溶解织物,但斑马白云岩除外。 Ellenburger油藏的开发与主扳手断层Ft相关的断层和裂缝密切相关。 Chadbourne故障。可以推断这些断层是热的(可能是热液?),更深的成岩成岩流体,这些流体富含钙或周期性呈酸性,从而促进白云石溶解和二次孔隙发育。

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