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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >A New Azimuthal Deep-reading Resistivitytool For Geosteering And Advancedrnformation Evaluation
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A New Azimuthal Deep-reading Resistivitytool For Geosteering And Advancedrnformation Evaluation

机译:新型用于地质导向和高级信息评估的方位角深度电阻率仪

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Drilling services and oil companies have long been interested in acquiring the capability of landing a well accurately in a hydrocarbon reservoir and remaining in it for optimal drainage. Although traditional logging-while-drilling (LWD) propagation resistivity tools can help to achieve this goal, their overall effectiveness is not satisfactory because they lack azimuthal sensitivity. Ideally, geosteering and advanced formation-evaluation methods, such as anisotropy calculations, require azimuthally sensitive measurements.rnThis paper discusses a newly developed propagation resistivity tool that is designed to be azimuthally sensitive for use in geosteering and formation evaluation while drilling. It uses the tilted-antenna concept to produce directionally sensitive measurements that are lacking in traditional LWD propagation tools. This paper also discusses the theory and the development of this tool, as well as the experimentation and numerical-modeling data used to characterize its azimuthal capability. Advanced application algorithms used to calculate the horizontal and the vertical resistivity (anisotropy calculation), as well as dipping angle, will be explained in detail. Finally, the paper presents and discusses field examples to demonstrate that this newly developed tool is a two-in-one service: geosteering and advanced formation evaluation.rnThe azimulhal deep-reading resistivity is shown to bear promise for use in optimization of well trajectory and well placement and in advanced formation evaluation while drilling. This newly developed tool is superior to traditional propagation tools in locating bed boundaries and in keeping the well in the desired pay zone. In addition to providing traditional multiple-depth-of-investigation resistivity measurements, this new tool provides multiple-depth-of-investigation azimuthal resistivity measurements.
机译:长期以来,钻井服务和石油公司一直对获得能够在碳氢化合物储层中准确降井并保留在其中以实现最佳排水的能力感兴趣。尽管传统的随钻测井(LWD)传播电阻率工具可以帮助实现这一目标,但由于缺乏方位敏感性,因此它们的整体效果并不令人满意。理想情况下,地质转向和先进的地层评估方法(例如各向异性计算)需要对方位角敏感的测量结果。本文讨论了一种新开发的传播电阻率工具,该工具被设计为对方位角敏感,用于钻井时的地质转向和地层评估。它使用倾斜天线的概念来产生方向敏感的测量,这是传统LWD传播工具所缺乏的。本文还讨论了该工具的理论和发展,以及用于表征其方位角能力的实验和数值模型数据。将详细说明用于计算水平和垂直电阻率(各向异性计算)以及倾角的高级应用算法。最后,本文提出并讨论了现场实例,以证明该新开发的工具是地质导向和高级地层评估的二合一服务。rn方位角深层电阻率显示出有望用于优化井眼轨迹和井位和钻井时进行高级地层评估。这种新开发的工具在定位床层边界并将井保持在所需的产油区方面优于传统的传播工具。除了提供传统的多次调查电阻率测量值之外,此新工具还提供多次调查方位角电阻率测量值。

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