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Approximate treatment of seafloor topographic effects in three-dimensional marine magnetotelluric inversion

机译:三维海洋大地电磁反演中海底地形效应的近似处理

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摘要

Seafloor magnetotelluric (MT) observations using ocean bottom electromagnetometers (OBEMs) provide information on the electrical conductivity structure of the oceanic mantle. A three-dimensional (3-D) analysis is particularly important for marine MT data because the electric and magnetic fields observed on the seafloor are distorted by the rugged seafloor topography and the distribution of land and ocean. Incorporating topography into 3-D models is crucial to making accurate estimates of the oceanic mantle's conductivity structure. Here we propose an approximate treatment of seafloor topography to accurately incorporate the effect of topography without significantly increasing the computational burden. First, the topography (lateral variation in water depth) is converted to lateral variation in effective conductivity by volumetric averaging. Second, we compute the electric and magnetic field components used to calculate the MT responses at arbitrary points from the electric field components on staggered grids, using a modified interpolation and extrapolation scheme. To verify the performance of this approximate treatment of seafloor topography in 3-D inversions, we tested the method using synthetic seafloor datasets and both 3-D forward modeling and inversion. The results of the synthetic inversions show that a given conductivity anomaly in the oceanic upper mantle can be recovered with sufficient accuracy after several iterations.
机译:使用海底电磁计(OBEM)进行的海底大地电磁(MT)观测可提供有关海洋地幔电导率结构的信息。三维(3-D)分析对于海洋MT数据尤为重要,因为在海底观察到的电场和磁场会因崎sea的海底地形以及陆地和海洋的分布而失真。将地形整合到3-D模型中对于准确估算大洋地幔的电导率结构至关重要。在这里,我们提出了一种海底地形的近似处理方法,可以在不显着增加计算负担的情况下准确地合并地形的影响。首先,通过体积平均将地形(水深的横向变化)转换为有效电导率的横向变化。其次,我们使用改进的内插法和外推法计算电场和磁场分量,以根据交错网格上的电场分量在任意点计算MT响应。为了验证在3-D反演中这种近似处理海底地形的性能,我们使用合成海底数据集以及3-D正向建模和反演测试了该方法。综合反演的结果表明,经过几次迭代,海洋上地幔中的给定电导率异常可以得到足够的精度。

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