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Accuracy limitations of FOG-based continuous measurement-while-drilling surveying instruments for horizontal wells

机译:基于FOG的水平井随钻连续测量测量仪器的精度限制

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Horizontal drilling processes in the oil industry utilize directional measurement-while-drilling (MWD) instruments to provide real-time monitoring of the position and the orientation of the bottom hole assembly (BHA). It has been reported that a single fiber optic gyroscope (FOG) can be incorporated with three-axis accelerometers to provide real-time MWD surveying of horizontal wells. However, the long-term performance and the accuracy limitations of this FOG-based instrumentation system have not been discussed. This article aims at describing a methodology for quantitative long-term analysis of the various surveying errors while drilling the near-vertical sections of the well. It also offers some techniques to enhance the long-term surveying accuracy in an experimental model of the FOG-based downhole-surveying instrument. The surveying errors are optimally estimated by the Kalman filtering techniques, and their long-term analysis is based on studying the corresponding mean square estimation errors. In order to limit the long-term growth of the surveying errors, we suggest improving the velocity computation provided by the FOG-based system either by continuous velocity update or by zero velocity update at some predetermined surveying stations. These techniques have significantly limited the long-term growth of the position errors (less than 100 m over a more than 2-h experiment). Moreover, the errors associated with the BHA orientation components were kept at less than 1/spl deg/. Suggested methodology significantly improved the surveying accuracy in an experimental model of the FOG-based MWD surveying system.
机译:石油工业中的水平钻井过程利用随钻定向测量(MWD)仪器来实时监控井底钻具组合(BHA)的位置和方向。据报道,可以将单光纤陀螺仪(FOG)与三轴加速度计结合使用,以提供水平井的实时MWD测量。但是,尚未讨论此基于FOG的仪器系统的长期性能和精度限制。本文旨在描述一种在钻井的近垂直部分进行钻探的同时,对各种测量误差进行定量长期分析的方法。它还提供了一些技术,可以提高基于FOG的井下测量仪器的实验模型中的长期测量精度。测量误差通过卡尔曼滤波技术进行最佳估计,其长期分析是在研究相应的均方根估计误差的基础上进行的。为了限制测量误差的长期增长,我们建议通过在某些预定的测量站进行连续速度更新或通过零速度更新来改进基于FOG的系统提供的速度计算。这些技术大大限制了位置误差的长期增长(超过2小时的实验小于100 m)。此外,与BHA方向分量相关的误差保持在小于1 / spl deg /。在基于FOG的MWD测量系统的实验模型中,建议的方法显着提高了测量精度。

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