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Evaluation of In-Situ Stress Environment in the Utica Play and Implications on Completion Design and Well Performance

机译:utica在utica效力环境中的评价与完成设计和良好性能的影响

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The in-situ stress condition of an unconventional play has a fundamental influence on well productivity because stress controls how the rock responds to hydraulic fracturing, affects proppant-fracture conductivity and alters reservoir properties such as permeability and porosity. In this study, pore pressure and minimum horizontal stress are assessed in the Utica and Point-Pleasant play using easy-to-acquire data and traditional poro-elastic concepts. The result exposes the existence of significant in-situ stress variations in the play and suggests that changes in kerogen maturity, tectonic stress and lithology cause these variations. Integration of completion and production data confirms that stress variability has strong implications on well performance. Transformation of the kerogen in oil and then gas generates overpressure in the reservoir that decreases the net-confining stress and leads to high well productivity in the dry gas area. Horizontal stress increases significantly in structured areas due to tectonic footprint, leading to higher breakdown pressure during stimulation and lower well productivity. Stress contrast between the carbonate rich Point-Pleasant and clay-rich Utica formations allows increasing pumped fluid volume without excessive fracture upward growth. This study, while being applied to the Utica play, provides methodologies easily applicable to other unconventional plays.
机译:非传统发挥的原位应力条件对良好的生产率具有根本的影响,因为压力控制岩石如何应对液压压裂,影响支撑剂 - 断裂电导率,并改变储层性质,例如渗透性和孔隙率。在本研究中,使用易于获取的数据和传统的多孔弹性概念,在UTICS和点愉快的游戏中评估孔隙压力和最小水平应力。结果揭示了戏剧中显着的原位应力变化,并表明了基因成熟度,构造应力和岩性的变化导致这些变化。完成和生产数据的整合确认,压力变异性对良好性能的影响很大。油的转化在油中的过程中的转化在储层中产生过压,这降低了净限制的压力,并导致干气区域的高良好生产力。由于构造占地面积,结构化区域的水平应力显着增加,导致刺激期间的击穿压力较高,生产力较低。碳酸盐丰富的点宜人和富含粘土的UTICA组之间的应力对比允许增加泵浦的流体体积而不会过度裂缝向上生长。本研究在应用于utica戏剧时,提供了容易适用于其他非常规的戏剧的方法。

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