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A land-based controlled-source electromagnetic method for oil field exploration: An example from the Schoonebeek oil field

机译:用于油田勘探的陆基控源电磁法:Schoonebek油田的一个例子

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Controlled-source electromagnetic (CSEM) data are sensitive to the subsurface resistivity distribution, but 3D inversion results are ambiguous, and in-depth interpretation is challenging. Resolution and sensitivity analysis as well as the influence of noise on resolution have been used to quantify 3D inversion performance. Based on these numerical studies, a land-based CSEM survey was designed and carried out at the Schoonebeek oil field, the Netherlands. The acquired data were processed and subsequently inverted for the resistivity distribution. The 1D and 3D inversion of horizontal electric-field data show the reservoir at the right depth, matching well-log data without using a priori knowledge about the actual reservoir depth. We used a 1D model with fine layering as a starting model for 3D inversion. Synthetic data inversions and sensitivity tests demonstrate that resistive or conductive bodies inside the reservoir zone may be well-detectable with our limited acquisition geometry. Spatial variations in the reservoir resistivity are visible in the measured data and after inversion by assuming good knowledge of the background resistivity distribution. The reservoir resistivity and size, however, have to be interpreted with care considering the intrinsically low resolution of electromagnetic (EM) which is further reduced by manmade EM noise.
机译:控制源电磁(CSEM)数据对地下电阻率分布敏感,但3D反转结果是模糊的,深入的解释是具有挑战性的。分辨率和敏感性分析以及噪声对分辨率的影响已被用于量化3D反转性能。基于这些数值研究,在荷兰的Schoonebeek油田设计和开展了基于陆地CSEM调查。处理了所获取的数据,随后反转电阻率分布。水平电场数据的1D和3D反转显示储存器在右深度,匹配井 - 日志数据而不使用关于实际储库深度的先验知识。我们使用了一个具有精细分层的1D模型作为3D反转的起始模型。合成数据兼容和灵敏度测试表明,储存区内的电阻或导电体可以通过我们的有限采集几何形状可检测得良可检测。通过假设对后台电阻率分布的良好了解,在测量的数据和反转之后可见储层电阻率的空间变化。然而,储层电阻率和大小必须在考虑到通过人类的EM噪声进一步降低的电磁(EM)的本质上低分辨率来解释。

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