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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >A study of azimuthal electromagnetic wave LWD based on self-adaptive hp finite element method
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A study of azimuthal electromagnetic wave LWD based on self-adaptive hp finite element method

机译:基于自适应HP有限元法的方位形电磁波LWD研究

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摘要

Azimuthal electromagnetic wave logging-while-drilling (LWD) technology can detect weak electromagnetic wave signal and realize real-time resistivity imaging. It has great values to reduce drilling cost and increase drilling rate. In this paper, self-adaptive hp finite element method (FEM) has been used to study the azimuthal resistivity LWD responses in different conditions. Numerical simulation results show that amplitude attenuation and phase shift of directional electromagnetic wave signals are closely related to induced magnetic field and azimuthal angle. The peak value and polarity of geological guidance signals can be used to distinguish reservoir interface and achieve real-time geosteering drilling. Numerical simulation results also show the accuracy of the self-adaptive hp FEM and provide physical interpretation of peak value and polarity of the geological guidance signals.
机译:方位角电磁波测井钻孔(LWD)技术可以检测弱电磁波信号并实现实时电阻率成像。 它有很大的价值,可以减少钻井成本并提高钻井率。 在本文中,自适应HP有限元方法(FEM)已经用于研究不同条件下的方位形电阻率LWD响应。 数值模拟结果表明,定向电磁波信号的幅度衰减和相移与诱导磁场和方位角密切相关。 地质引导信号的峰值和极性可用于区分水库界面并实现实时地升钻。 数值模拟结果还显示了自适应HP FEM的精度,并提供了地质引导信号的峰值的物理解释和地质引导信号的极性。

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