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Validating Surfactant Performance in the Eagle Ford Shale: A Correlation between the Reservoir-on-a-Chip Approach and Enhanced Well Productivity

机译:验证鹰福特页岩中的表面活性剂性能:蓄水池接近储层方法与提高生产率之间的相关性

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For liquids-rich shale plays, surfactants have proven to be a critical component in hydraulic fracturing fluid systems for enabling enhanced oil and gas recovery. The industry’s most commonly used surfactant is a non-emulsifying surfactant (NES), but it has been previously demonstrated that a weakly emulsifying surfactant (WES) appears to be more efficient at mobilizing oil through tight pore throats. In this study, fundamental differences between those two surfactant types were further demonstrated using a Reservoir-on-a-Chip (ROC) approach, which allows direct visualization of oil recovery with the various surfactant fluids, allowing for the testing on both homogenous and heterogeneous pore structures with various geometries. The laboratory testing showed that, compared to a non-surfactant-bearing control fluid and the NES, the WES showed higher oil recovery efficiency at equal driving pressure. As a result of the laboratory testing indications, a multiple well trial program was conducted in two separate areas of the Eagle Ford shale. Production data from the wells stimulated using a WES-bearing fracturing fluid were normalized in terms of lateral lengths and fracturing stages, and compared to the offset wells stimulated using a NES-bearing fracturing fluid. Early production results suggest that wells treated with the WES exhibited enhanced productivity compared to those treated with the NES.
机译:对于富含液体的页岩游戏,表面活性剂已被证明是液压压裂流体系统中的关键组件,用于实现增强的油和气体回收。该行业最常用的表面活性剂是非乳化表面活性剂(NE),但先前已经证明弱乳化表面活性剂(WES)似乎在通过紧密孔喉部调动油时更有效。在该研究中,使用储层 - 芯片(ROC)方法进一步证明了这两种表面活性剂类型之间的根本差异,这允许通过各种表面活性剂流体直接可视化油回收,从而允许对均匀和异质的测试进行测试孔隙结构具有各种几何形状。实验室测试表明,与非表面活性剂控制流体和NE相比,WES在等于驱动压力下显示出更高的储油效率。由于实验室检测指示,在鹰福特页岩的两个单独区域进行了多个井试验计划。根据横向长度和压裂阶段刺激使用耐效率压裂液刺激的孔的生产数据,并与使用NES轴承压裂液刺激的偏移孔相比。早期生产结果表明,与用NES处理的人相比,随着WES治疗的井表现出了增强的生产力。

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