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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Large-scale 3D inversion of marine magnetotelluric data: Case study from the Gemini prospect, Gulf of Mexico
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Large-scale 3D inversion of marine magnetotelluric data: Case study from the Gemini prospect, Gulf of Mexico

机译:海洋大地电磁数据的大规模3D反演:来自墨西哥湾双子座前景的案例研究

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摘要

Three-dimensional magnetotelluric (MT) inversion is an emerging technique for offshore hydrocarbon exploration. We have developed a new approach to the 3D inversion of MT data, based on the integral equation method. The Tikhonov regularization and physical constraint have been used to obtain a stable and reasonable solution of the inverse problem. The method is implemented in a fully parallel computer code. We have applied the developed method and software for the inversion of marine MT data collected by the Scripps Institution of Oceanography (SIO) in the Gemini prospect, Gulf of Mexico. The inversion domain was discretized into 1.6 million cells. It took nine hours to complete 51 iterations on the 832-processor cluster with a final misfit between the observed and predicted data of 6.2%. The inversion results reveal a resistive salt structure, which is confirmed by a comparison with the seismic data. These inversion results demonstrate that resistive geoelectrical structures like salt domes can be mapped with reasonable accuracy using the 3D inversion of marine MT data.
机译:三维大地电磁(MT)反演是一种新兴的海上油气勘探技术。我们已经基于积分方程法开发了一种新的MT数据3D反演方法。 Tikhonov正则化和物理约束已用于获得反问题的稳定合理的解决方案。该方法在完全并行的计算机代码中实现。我们已将开发的方法和软件用于反演由墨西哥湾双子星座斯克里普斯海洋学研究所(SIO)收集的海洋MT数据。反向域离散为160万个单元。在832个处理器的集群上完成9个迭代花费了9个小时,最终观测到的数据与预测数据之间的不匹配率为6.2%。反演结果显示了一种电阻盐结构,通过与地震数据的比较证实了这一点。这些反演结果表明,可以使用海洋MT数据的3D反演,以合理的精度映射诸如盐丘之类的电阻性地电结构。

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