首页> 外文会议>Convention of the Gulf Coast Association of Geological Societies American Association of Petroleum Geologists Sectional Meeting;Meeting of the Gulf Coast Section of the Society of Economic Paleontologists and Mineralogists >Application of Azimuthal Deep Resistivity and Azimuthal Near-Bit Gamma during Reservoir Navigation in Highly-Dipping Sand Reservoirs, Grand Isle 16 Field, Gulf of Mexico
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Application of Azimuthal Deep Resistivity and Azimuthal Near-Bit Gamma during Reservoir Navigation in Highly-Dipping Sand Reservoirs, Grand Isle 16 Field, Gulf of Mexico

机译:在高浸砂储层中的储层导航过程中的应用方位形深电阻率和方位角近伽马,大岛16田,墨西哥湾

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The correct placement of horizontal wells in highly-dipping sand reservoirs and managing to stay within the reservoir has long presented challenges. Landing and subsequent navigation requires rapid and accurate decision making as drilling progresses, often at high rates of penetration. The use of traditional triple-combo measurements usually does not suffice due to the lack of azimuthal capability and the excessive distance between formation evaluation sensors and the bit. A combination of near-to-bit measurements with azimuthal capabilities has shown to assist in timely decision making and aid in simplifying complex navigation problems. This paper discusses the interpretation and application of deep azimuthal resistivity and near-bit gamma ray measurements during reservoir navigation in thin, complex reservoirs with very high dips. When used with reservoir navigation software, the azimuthal deep resistivity measurements provide reservoir navigation engineers timely information as to whether a conductive formation is approaching, from which direction, and the distance to the most conductive bed. Also, azimuthal near-bit gamma ray measurements provide early indication of the wellbore exiting the reservoir and an estimation of structural dip measurements from real-time azimuthal gamma ray image obtained from measurements near the bit. This information is critical for adjusting the wellbore trajectory, if necessary, to stay within the reservoir section and avoid exit. The advantage of using deep azimuthal resistivity and azimuthal near-bit gamma ray measurements is highlighted by a field example demonstrating its successful application in a complex and highly-dipping sand reservoir located in the Grand Isle 16 Field, Gulf of Mexico. Timely indications of reservoir geometry changes, together with the deep azimuthal resistivity and near-bit gamma image from this service, helped successfully drill a horizontal section in highly-dipping sand with 80% net-to-gross ratio.
机译:在高浸渍砂水库中正确放置水平井并留在水库内的施工长期呈现挑战。着陆和随后的导航需要快速准确地决策,因为钻探进展,通常处于高渗透率。由于缺乏方位角能力和地层评估传感器之间的过度距离,传统三相测量的使用通常不足以存在。具有方位形功能的近距离测量的组合已显示有助于及时的决策和帮助简化复杂导航问题。本文讨论了在薄,复杂储层中储层导航期间深度方位角电阻率和近伽马光线测量的解释和应用,具有非常高的倾角。当与储存器导航软件一起使用时,方位角深电阻率测量提供了水库导航工程师,及时提供关于导电地层是否接近的信息,从哪个方向和到最大导电床的距离。此外,方位角近塔伽马射线测量提供了离开储存器的井筒的早期指示,并且从钻头附近的测量获得的实时方位角伽马射线图像估计结构浸测量。如果有必要,此信息对于调整井筒轨迹,将停留在储存器部分内并避免退出。使用深度方位角电阻率和方位角接近伽马射线测量的优点是突出了一个领域示例,证明其成功应用于位于位于墨西哥湾大岛16田野的复杂和高度浸泡的砂储层中。水库几何形状的及时迹象,以及来自这项服务的深度方位角电阻率和近塔伽马图像,帮助成功钻取高度浸渍砂,具有80%的净比例。

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