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Magnetic Shielding During MWD Azimuth Measurements and Wellbore Positioning

机译:MWD方位角测量和井眼定位期间的磁屏蔽

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摘要

Magnetic contamination of the drilling fluid may contribute significantly to errors in directional surveying of wellbores. Such contaminations shield the field measured by the magnetic sensors in measurement-while-drilling (MWD) directional tools. The resulting error often exceeds typical sensor uncertainties, and so, the accuracy of the inferred wellbore position is severely degraded. Although the magnetic interference can be reduced by careful attention to procedures for transport, pumping, and handling of drilling fluids and their associated additives, the problem has not yet been eliminated.rnTo understand the magnetic shielding effect in a well-defined setting, we have initiated a series of laboratory measurements where magnetic material of known properties are added to a well-defined nonmagnetic drilling fluid, and the resulting magnetic shielding is measured with a fluxgate magnetometer immersed in the fluid.rnIn our experiments, powdered magnetite was added to a mixture of xanthan gum in water to obtain a mixture of nominal magnetic susceptibility typical of drilling fluids containing metal from pipe wear and erosion. Immediately after stirring, the vertical component of the Earth's magnetic field inside the liquid was measured and found to be significantly damped. Without touching the system, the field was subsequently logged. It was found to continue to decay for the next hour or so, reaching a fairly sharp minimum. The magnetic field then started to increase slowly and irregularly again over the next few days.rnThis observed time dependency of the magnetic shielding is so far unknown to the surveying industry. The effect, combined with analysis of directional data, can explain errors encountered in directional surveying. Recommendations for how to minimize such errors are presented.
机译:钻井液的磁污染可能会严重导致井眼定向测量中的误差。此类污染物会屏蔽随钻测量(MWD)定向工具中的磁传感器测得的磁场。所产生的误差通常超过典型的传感器不确定性,因此,推断的井筒位置的精度会严重降低。尽管可以通过仔细注意钻井液及其相关添加剂的运输,泵送和处理程序来减少电磁干扰,但这个问题尚未消除。rn为了了解在定义明确的环境中的磁屏蔽效果,我们拥有发起了一系列实验室测量,其中将性能已知的磁性材料添加到定义明确的非磁性钻井液中,然后使用浸入流体中的磁通门磁强计测量得到的磁屏蔽。在我们的实验中,将粉末状磁铁矿添加到混合物中将黄原胶溶于水中,以获得标称磁化率的混合物,这是管道磨损和腐蚀造成的含金属钻井液的典型特征。搅拌后,立即测量液体内部地球磁场的垂直分量,发现该分量显着衰减。在不接触系统的情况下,随后记录了该字段。人们发现它会在接下来的一个小时左右继续衰减,达到一个相当尖锐的最小值。然后,在接下来的几天中,磁场又开始缓慢缓慢地不规则地增加。rnn这种观察到的时间对电磁屏蔽的依赖性迄今为止对于测量行业是未知的。这种效果与定向数据分析相结合,可以解释定向测量中遇到的错误。提出了有关如何最小化此类错误的建议。

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  • 来源
    《SPE Drilling & Completion》 |2010年第2期|P.219-222|共4页
  • 作者单位

    Technical University of Munich, Germany;

    Department of Powder Science and Technology at Telemark Industrial Research and Development Center in Porsgrunn, Norway;

    Department of Powder Science and Technology at Telemark Industrial Research and Development Center and a professor of Powder Technology at the University College of Telemark, in Porsgrunn, Norway;

    Norwegian University of Technology, Trondheim;

    Technical University of Denmark, Lyngby;

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