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Borehole trajectory uncertainty and its characterization

机译:钻孔轨迹不确定性及其表征

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To solve the problem of borehole trajectory uncertainty, some methods such as error ellipsoid posture characterization, sectional error ellipse solution and error elliptic cylinder construction were proposed and an application example was given. According to the definition of inclination, azimuth and tool-face angle, a characterization method of error ellipsoid posture of borehole trajectory was presented. By intercepting the error ellipsoid with an arbitrary plane in space, the general concept and algorithm of sectional error ellipse were established to analyze the borehole trajectory errors in horizontal plane, plumb plane, normal plane, etc. Based on the theory of surface tangency and curve projection, a construction method of error elliptic cylinder of borehole trajectory was put forward to evaluate the axial enveloping error of borehole trajectory and its variation along well depth. The research shows that the deeper the well, the greater the borehole trajectory error will be. In deep and ultra-deep wells measured using conventional measurement while drilling (MWD), the borehole trajectory position error reaches tens of meters. The research results provide a complete set of analysis methods for borehole trajectory error, which can evaluate the accuracy and reliability of borehole trajectory monitoring.
机译:为了解决钻孔轨迹不确定性的问题,提出了一些方法,如误差椭圆形姿势表征,截面误差椭圆溶液和误差椭圆缸结构,并给出了应用例。根据倾斜度,方位角和工具面角的定义,提出了钻孔轨迹的误差椭圆形姿势的表征方法。通过在空间中与任意平面拦截误差椭圆形,建立了截面误差椭圆的一般概念和算法,以分析水平平面,垂直平面,普通平面等的钻孔轨迹误差。基于表面切线和曲线理论投影,提出了钻孔轨迹的误差椭圆缸的施工方法,以评估钻孔轨迹的轴向包封误差及其沿孔深度的变化。研究表明,井更深,钻孔轨迹误差越大。在钻孔(MWD)的同时使用常规测量测量的深层和超深井,钻孔轨迹位置误差达到几十米。研究结果为钻孔轨迹误差提供了一套完整的分析方法,可以评估钻孔轨迹监测的准确性和可靠性。

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