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Finite Element Simulation of 3-D Marine Controlled Source Electromagnetic Fields in Anisotropic Media with Unstructured Tetrahedral Grids

机译:非结构化四面体栅格各向异性介质中三维船舶控制源电磁场的有限元模拟

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摘要

Marine controlled-source electromagnetic (CSEM) method has proved to be a powerful tool and found its increasing applications for offshore resource exploration and tectonic studies. However, bathymetric variations and anisotropic structures encountered in practical measurements have posed challenges for reliable interpretation of marine CSEM data collected in increasingly complex geologic settings. In this study, we present a Finite element (FE) based forward algorithm for simulating 3-D marine CSEM responses in geologic settings characterized with rough bathymetry and electrical anisotropy. Unstructured tetrahedral meshes are employed to permit precise descriptions of arbitrary seafloor topography. After validating the accuracy of the algorithm, we investigate the effects of bathymetric variations and complicated electric anisotropy separately and jointly on marine CSEM responses. Numerical results have demonstrated that both the bathymetry and electrical anisotropy can cause significant distortions on marine CSEM responses, but to different extent. The effects of full electrical anisotropy and bathymetry have to be taken into consideration for reliable interpretations of marine CSEM data in practice.
机译:船用控制源电磁(CSEM)方法已被证明是一种强大的工具,并发现了其越来越多的海上资源勘探和构造研究的应用。然而,在实际测量中遇到的碱基变化和各向异性结构对在越来越复杂的地质环境中收集的海洋CSEM数据的可靠解释构成了挑战。在这项研究中,我们提出了一种基于有限元(FE)的前向算法,用于模拟具有粗碱度碱和电各向异性的地质设置中的三维船用CSEM响应。非结构化的四面体网格用于允许准确描述任意海底地形。在验证算法的准确性后,我们在海洋CSEM反应上分别和共同地研究了碱度变化和复杂电力各向异性的影响。数值结果表明,沐浴和电向各向异性均可对海洋CSEM反应的显着扭曲,但在不同程度上。必须考虑到全电气各向异性和沐浴碱的影响,以便在实践中可靠地解释对海洋CSEM数据的可靠解释。

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