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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >2D lateral imaging inversion for directional electromagnetic logging-while-drilling measurements
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2D lateral imaging inversion for directional electromagnetic logging-while-drilling measurements

机译:2D横向成像反转,用于定向电磁测井 - 钻井测量

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摘要

Deep-directional electromagnetic (EM) logging-while-drilling technology can map reservoir boundaries and fluid contacts for strategic geosteering, reservoir navigation, and more recently, for reservoir characterization. The inversion-based resistivity mapping is used to make real-time geosteering decisions and to refine and update the reservoir model during and after drilling. Traditional 1D and 2D inversion approaches ignore the lateral changes of the reservoir, which are contained in the azimuthally sensitive measurements and only provide a longitudinal 2D representation of the 3D reservoir structure around the well. A new 2D lateral imaging inversion uses the full azimuthal sensitivity of the measurements to map the vertical and lateral resistivity heterogeneities around the wellbore. A 2.5D EM solver is run in a Gauss-Newton optimization to reconstruct the measurements in complex scenarios and determine the 2D anisotropic resistivity distribution in an imaging plane along with the orientation of the formation invariant direction with respect to the wellbore. Continuous 2D imaging along the well path generates a 3D reservoir resistivity map in the proximity of the wellbore.
机译:深定电磁(EM)钻探技术可以映射储层边界和流体接触,以实现战略性地汇率,水库导航,以及最近,以实现储层特征。基于反转的电阻率映射用于进行实时地升性决策,并在钻井期间和之后改进和更新储库模型。传统的1D和2D反转方法忽略了储存器的横向变化,该储存器包含在方位角敏感的测量中,并且仅提供井周围的3D储存器结构的纵向2D表示。新的2D横向成像反演使用测量的完全方位角灵敏度来映射井筒周围的垂直和横向电阻率异质性。 2.5D EM求解器在高斯 - 牛顿优化中运行,以重建复杂场景中的测量,并确定成像平面中的2D各向异性电阻率分布以及相对于井筒的形成不变方向的取向。沿井路径的连续2D成像在井筒接近产生3D储液电阻率图。

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