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Experimental Feasibility of the In-Drilling Alignment Method for Inertial Navigation in Measurement-While-Drilling

机译:测量中钻进惯性导航的钻进对准方法的实验可行性

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Conventional methods in horizontal drilling processes incorporate magnetic surveying techniques for determining the position and attitude of the bottom-hole assembly (BHA). This results in an increased weight of the drilling assembly, higher cost due to the use of nonmagnetic drill collars necessary for shielding the magnetometers, and significant errors in the position of the drilling bit. A novel inertial navigation system (INS)-based technique has been previously proposed as an alternative to magnetometer-based downhole surveying. Previous studies have shown theoretically that an adaptive-filter-based in-drilling alignment (IDA) fine alignment method successfully limits the error growth associated with INS. This study aims at examining IDA's practical feasibility and, specifically, its ability to estimate the azimuth angle. Experimental testing of the IDA method was conducted under laboratory conditions with an apparatus that can easily be adopted for downhole conditions. The experimental results demonstrate that the IDA-estimated azimuth is more precise, compared with the one estimated by conventional magnetic surveying systems. The high accuracy and implementation simplicity of the proposed INS-based surveying system render it a preferred method for future horizontal drilling operations.
机译:水平钻井过程中的常规方法结合了磁测量技术,用于确定井底钻具组合(BHA)的位置和姿态。这导致钻孔组件的重量增加,由于使用了屏蔽磁力计所必需的非磁性钻collar而导致了更高的成本以及钻头位置的重大误差。先前已经提出了一种新颖的基于惯性导航系统(INS)的技术,以替代基于磁力计的井下勘测。先前的研究从理论上表明,基于自适应滤波器的钻入对准(IDA)精细对准方法成功地限制了与INS相关的误差增长。这项研究旨在检查IDA的实际可行性,尤其是其估计方位角的能力。 IDA方法的实验测试是在实验室条件下使用可轻松用于井下条件的设备进行的。实验结果表明,与常规磁测系统估计的方位角相比,IDA估计的方位角更为精确。所提出的基于INS的勘测系统的高精度和简单实施使其成为未来水平钻井作业的首选方法。

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