首页> 外文学位 >Continuous measurement-while-drilling surveying system utilizing MEMS inertial sensors.
【24h】

Continuous measurement-while-drilling surveying system utilizing MEMS inertial sensors.

机译:利用MEMS惯性传感器的随钻连续测量测量系统。

获取原文
获取原文并翻译 | 示例

摘要

Oil and gas are global fuels obtained primarily from drilling wells in underground terrestrial reservoirs. Vertical drilling is preferred because of its simplicity and therefore low cost, but subsurface targets can often be procured only by directing the wellbore along predefined nonvertical trajectories. For instance, directional drilling must be employed to reach locations inaccessible to the drilling rig, to side track an existing well (multilateral drilling), or to drill multiple wells from the same offshore platform (horizontal drilling). A complete knowledge of the wellbore direction and orientation during the drilling process is essential to guarantee proper directional drilling procedure. Thus, besides the conventional drilling assembly, directional drilling operations require position sensors to provide azimuth, inclination, and toolface angles of the drill. These sensors are part of the measurement-while-drilling (MWD) tool, which in current technology is installed several feet behind the drill bit. Values for inclination and toolface angles are determined from accelerometer measurements at predetermined stationary surveying stations; these values are then incorporated with magnetometer measurements to deliver the azimuth angle. Values for inclination and azimuth angles at the current surveying station are combined with those from the previous station to compute the position of the probe. However, there is no accurate information about the wellbore trajectory between survey stations. Additionally, the magnetic field of the magnetometers has deleterious effect on the overall accuracy of surveying measurements.;A method to provide continuous information about the wellbore trajectory has been developed in this study. The module developed integrates a rotary steerable system (RSS) and MWD tool into one drilling probe utilizing inertial navigation system (INS) technology. This is achieved by designing a reliable real-time low cost MWD surveying system based on MEMS inertial sensors miniaturized inside the RSS housing installed directly behind the drill bit. A continuous borehole surveying module based on MEMS inertial sensors integrated with other drilling measurements was developed using Kalman filtering. In addition, qualification testing of MEMS accelerometers and gyroscopes under hostile drilling environments was conducted. Techniques to detect and mitigate shock and vibration effects while drilling are proposed to enhance the performance of the MEMS inertial sensors.
机译:石油和天然气是主要从地下陆地油藏的钻井中获得的全球燃料。优选垂直钻井,因为其简单性并因此成本低廉,但通常只能通过沿预定的非垂直轨迹引导井眼来采购地下目标。例如,必须采用定向钻探以到达钻机无法到达的位置,对现有井进行侧向钻探(多边钻探)或从同一海上平台钻多个井(水平钻探)。全面了解钻井过程中的井眼方向和定向对于确保正确的定向钻井程序至关重要。因此,除了传统的钻探组件,定向钻探操作还需要位置传感器以提供钻头的方位角,倾斜度和工具面角度。这些传感器是随钻测量(MWD)工具的一部分,在当前技术中,该工具安装在钻头后面几英尺处。倾斜度和工具面角度的值由预定的固定测量站处的加速度计测量值确定;然后将这些值与磁力计测量结果结合起来以提供方位角。将当前测量站的倾斜度和方位角值与前一个测量站的倾角和方位角值相结合,以计算探头的位置。然而,没有关于测量站之间的井眼轨迹的准确信息。此外,磁力计的磁场对测量测量的整体准确性有不利影响。这项研究已经开发出一种提供有关井眼轨迹连续信息的方法。开发的模块利用惯性导航系统(INS)技术将旋转导向系统(RSS)和MWD工具集成到一个钻探探头中。这是通过基于MEMS惯性传感器设计可靠的实时低成本MWD测量系统来实现的,该MEMS惯性传感器在直接安装在钻头后面的RSS壳体内微型化。使用卡尔曼滤波技术开发了一个基于MEMS惯性传感器并结合其他钻探测量的连续钻孔测量模块。此外,在恶劣的钻孔环境下进行了MEMS加速度计和陀螺仪的鉴定测试。为了提高MEMS惯性传感器的性能,提出了在钻孔时检测和减轻冲击和振动影响的技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号