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Toward the creation of models to predict static and dynamic fault- seal potential in carbonates

机译:创建模型以预测碳酸盐岩的静态和动态断层密封潜力

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In contrast to faults in clastic reservoirs, rules to predict the exploration and production timescale fault-seal potential in carbonates are lacking. This paper provides a summary of carbonate reservoirs with cross-fault column height differences that represent examples of apparent static fault seal, and a summary of observed examples of dynamic fault seal in carbonate reservoirs and aquifers. These include cross-fault differences in water table depths across carbonate-carbonate juxtapositions, cross-fault pressure differences in carbonate aquifers separated by faults, production-induced cross-fault pressure differences in carbonate hydrocarbon reservoirs, sealing behaviour of faults in carbonate reservoirs inferred from well tests, and examples of low fault transmissibilities from history-matching exercises from carbonate reservoirs. This paper also documents the range of compositions of fault rocks in carbonates and the range of permeabilities that have been reported from low-permeability fault cores in carbonate fault zones, as well as the implications of the observed range of fault permeabilities in carbonates for sealing behaviours. The purpose of this paper is not to argue that every fault in a carbonate reservoir will seal or will even be capable of sealing. There are, however, enough examples of faults in carbonates that are sealing in a dynamic sense, and in a static sense, that the topic of carbonate fault seal should warrant much more study. Creation of predictive models will ultimately require a considerable amount of subsurface data, but these models should be created.
机译:与碎屑岩储层的断层相比,缺乏预测碳酸盐岩勘探和生产时间尺度断封潜力的规则。本文总结了具有交叉断层柱高度差的碳酸盐岩储层,这些碳酸盐岩储层代表了表观静态断层密封的例子,并总结了碳酸盐岩储层和含水层中动态断层密封的实例。其中包括碳酸盐岩-碳酸盐岩并列的地下水位深度的交叉断层差异、断层分隔的碳酸盐岩含水层的交叉断层压力差、碳酸盐岩油气藏中生产引起的交叉断层压力差、从井测试中推断出的碳酸盐岩储层中断层的密封行为,以及碳酸盐岩储层历史匹配练习中低断层传递率的例子。本文还记录了碳酸盐岩中断层岩石的组成范围和碳酸盐岩断层岩带低渗透断层岩芯的渗透率范围,以及观察到的碳酸盐岩断层渗透率范围对密封行为的影响。本文的目的并不是要论证碳酸盐岩储层中的每个断层都会密封,甚至能够密封。然而,有足够多的碳酸盐断层在动态意义上和静态意义上密封的例子,碳酸盐断层密封的主题应该值得更多的研究。创建预测模型最终将需要大量的地下数据,但应该创建这些模型。

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