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Research on Fast Measurement Method of Borehole Trajectory Based on Fiber Optic Gyro MWD System

机译:基于光纤陀螺MWD系统的井眼轨迹快速测量方法研究

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The measurement-while-drilling (MWD) system usually uses the fluxgate, which can be sensitive to the earth magnetic field, to measure the borehole trajectory, but it is easily disturbed by the external magnetic field and has low measurement accuracy. The fiber-optic-gyroscope (FOG)-based inertial navigation system (INS) has the advantages of anti-electromagnetic interference. It can improve the measurement accuracy of MWD. Using the analytic coarse alignment method of INS to measure the borehole trajectory requires the downhole instruments to be completely stationary and takes more than three minutes. But in the process of drilling, it is difficult for the instruments to keep completely static. If the static time is too long, it is very easy to cause downhole accidents. Therefore, in order to realize the project of FOG-Based MWD system, the fast measurement method of borehole trajectory must be researched. This paper presents a method of inertial frame alignment based on gravity information, which can reduce the effects of disturbances by using the integral of gravity information. The swing and sliding downhole motions are simulated to verify the algorithm. The results show that in the low frequency swing environment, the azimuth of the analytic coarse alignment oscillates in the range of 0° to 180° and the azimuth accuracy of inertial frame alignment is better than 2° at 100s. In the sliding experiment, the azimuth convergence time of inertial frame alignment is 60s and the precision is 0.6° at 120s. The new method can meet the requirement of the fast measurement of borehole trajectory.
机译:随钻测量(MWD)系统通常使用对地磁场敏感的磁通门来测量井眼轨迹,但是它很容易受到外部磁场的干扰,并且测量精度较低。基于光纤陀螺仪(FOG)的惯性导航系统(INS)具有抗电磁干扰的优点。它可以提高MWD的测量精度。使用INS的解析粗对准方法来测量井眼轨迹时,要求井下仪器完全静止并且需要三分钟以上的时间。但是在钻孔过程中,仪器很难保持完全静止。如果静态时间过长,很容易引起井下事故。因此,为了实现基于FOG的随钻测井系统的工程,必须研究井眼轨迹的快速测量方法。本文提出了一种基于重力信息的惯性框架对准方法,该方法可以通过利用重力信息的积分来减少干扰的影响。模拟了井下运动和滑动运动,以验证该算法。结果表明,在低频摆动环境下,解析粗对准的方位角在0°至180°范围内振荡,惯性坐标系对准的方位角精度在100s时优于2°。在滑动实验中,惯性框架对准的方位角收敛时间为60s,在120s时的精度为0.6°。该新方法可以满足快速测量井眼轨迹的要求。

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