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Access and Integration of Emerging Technologies: Keys to Successful Imaging of Reservoir Fluids in Depth and Time

机译:新兴技术的访问与整合:深度和时间内储层液体成功成功成功的关键

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Low cost access to bypassed hydrocarbon pay can prolong field life and increase ultimate recovery. Avoiding or delaying breakthrough of flood fluids avoids or delays expensive workovers. An appropriately accurate description of the fluid type, position and flow vector of all fluids in the extended vicinity of the wells in a reservoir is critical information for reservoir management decisions. Obtaining such an appropriately accurate description is what we call "fluid imaging." "Appropriate accuracy" of a fluid image means, for example, that variations in fluids over a spatial extent smaller than the distance between wells can be detected or predicted with high confidence. The lower limit of the required resolution is dictated by the commercial impact. Resolving a volume of fluid 10 meters thick and 200 meters in lateral extent at a distance of 200 meters from a well has been chosen as the goal. Achieving the goal will require breakthrough technologies as well as breakthrough systems integration spanning a wide range of petroleum technologies. A collaboration called "DeepLook" focused on achieving that goal was established in 1997. DeepLook is comprised of a group of oil companies (8) and oil industry service companies (5). It defines and funds projects in collaboration with technology organizations outside the oil industry. Selected projects address DeepLook goals and offer the possibility of breakthrough capability. In the fourth quarter of 1997, the initial projects began. The projects focus on long-range indirect detection of hydrocarbons; sensor technology for continuous downhole and in-reservoir monitoring; technologies for physical deployment of sensors, data mining, integration, fusion, modeling and interpretation. The presentation will discuss the projects in more detail and summarize early results.
机译:旁路碳氢化合物工资的低成本获得可以延长场寿命并增加最终的恢复。避免或延迟洪水液的突破避免或延迟昂贵的讨论。在储存器中的孔的延伸附近的所有流体的流体类型,位置和流量矢量的适当准确描述是用于储层管理决策的关键信息。获得这种适当准确的描述是我们所谓的“流体成像”。例如,流体图像的“适当的精度”,例如,可以通过高置信度检测或预测流体在空间范围内的流体的变化。所需分辨率的下限由商业影响决定。在距离井中的距离为200米处的横向厚度和200米处的较大液体的液体较大。实现目标将需要突破性技术以及跨越各种石油技术的突破性系统集成。在1997年成立了一个名为“Deeplook”的合作,重点是实现目标.Deeblook由一组石油公司(8)和石油工业服务公司(5)组成。它与石油工业外的技术组织合作定义和资金项目。选定的项目地址Deeplook目标并提供了突破性能力的可能性。 1997年第四季度,初步项目开始了。该项目专注于碳氢化合物的远程间接检测;传感器技术,用于连续井下和储层监测;体育部署技术,数据挖掘,集成,融合,建模和解释。演示文稿将更详细地讨论项目并总结早期结果。

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