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Investigating Optimized Well Placement in San Andres Tight Oil Dolomite Reservoir by Integrated Reservoir Modeling Approach

机译:通过集成储层建模方法调查SAN Andres紧密油白云岩储层的优化井放置

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As a well-known tight oil dolomite reservoir in Texas, San Andres formation has attracted broad attention about horizontal drilling and development strategy. To optimize the oil recovery and asset’s economics, the aim of the study was to use an integrated approach to understand reservoir heterogeneity and performance, determine optimal landing zone and its impact on production, understand fracture geometry using different pumping schedules, and the optimal cluster spacing. In addition, the potential benefit of a refrac and infill drilling program was also investigated. To tackle the optimization problem, an integrated reservoir modeling workflow was developed. Starting with a 1-D geomechanical model which captures the in situ stress profile and rock mechanics, hydraulic fracture modeling was developed to history match the treatment process, and therefore a comprehensive fracture geometry can be estimated. In the interim, a geological model with populated reservoir properties was established based on the offset data including petrophysical logs, imaging logs and cores. After calibration, the dynamic reservoir model was built to test multiple sensitivity runs for an optimized field development strategy. Geological modeling separated the field into two models to study the variation of properties on the east and west side. The east section shows a higher porosity and lower saturations. Those water saturations increase below the main pay zone indicating a potential water source. In addition, special core analysis shows a strong oil-wet nature of the reservoir rock. In the east section, sensitivity runs included infill development and variations in landing depth. It is noted that the production is not sensitive to landing zone because fracture geometry is primarily controlled by vertical stress profile. In the west section, sensitivity runs included refrac, infill drilling, and a greenfield development plan with variations on well spacing and completion design. The observation shows tighter well spacing or cluster spacing accelerates the oil production in early time, while yielding similar long term oil recovery and shows a combination of refrac and infill drilling yields a 21% incremental oil production beyond the base case. This study provides valuable information about the workflow to develop tight oil plays by describing a detailed case study. The result also sheds light on the optimized field development strategy for analogous fields.
机译:作为德克萨斯州德克萨斯州众所周知的紧身油白云岩储层,San Andres形成引起了对水平钻井和发展战略的广泛关注。为了优化石油回收和资产的经济学,该研究的目的是使用综合方法来了解水库异质性和性能,确定最佳着陆区及其对生产的影响,了解使用不同的泵送时间表的裂缝几何,以及最佳的簇间距。 。此外,还研究了REFRAC和筛分钻井计划的潜在益处。为了解决优化问题,开发了一种集成的储层建模工作流程。从捕获原位应力型材和岩石力学的1-D地质力学模型开始,液压断裂建模开发给历史匹配处理过程,因此可以估计全面的断裂几何形状。在临时,基于包括汽水物理日志,成像日志和核心的偏移数据建立具有填充储存器特性的地质模型。校准后,建立动态储库模型以测试多个灵敏度运行,以获得优化的现场开发策略。地质建模将场景分为两种模型,以研究东西侧的性能变化。东部显示孔隙率较高,饱和度较高。那些水饱和子增加到指示潜在水源的主要薪酬区下方。此外,特殊的核心分析显示了水库岩石的强烈油脂性质。在东部,敏感性运行包括填充开发和着陆深度的变化。应注意,生产对着陆区不敏感,因为断裂几何形状主要由垂直应力分布控制。在西部,敏感性运行包括REFRAC,填充钻孔和绿地开发计划,具有井间距和完成设计的变化。该观察结果显示更严格的井间距或簇间距在早期加速油生产,同时产生类似的长期储存,并显示REFRAC和填充钻孔的组合产生超过基础壳体的21%的增量油生产。本研究提供了有关工作流程的宝贵信息,通过描述详细的案例研究来开发紧密油剧。结果还阐明了对类似领域的优化现场开发策略。

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