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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >3D time-domain airborne electromagnetic inversion based on secondary field finite-volume method
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3D time-domain airborne electromagnetic inversion based on secondary field finite-volume method

机译:基于二次场有限体积法的3D时域空机电磁反转

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摘要

We investigate an algorithm for 3D time-domain airborne electromagnetic (AEM) inversion based on the finite-volume (FV) method and direct Gauss-Newton optimization, where we obtain high efficiency by constraining the modeling volume to the AEM volume of influence (VOI) of a 3D source within the earth, rather than using the larger VOI of the AEM system. A half-space or layered earth is used to model the background field in the time domain, taking into account the transmitter waveform through convolution. Assuming that the 3D source of any secondary field detected at a survey point lies within the moving VOI of the airborne system, we conduct time-domain forward modeling and Jacobian calculation using an FV method within the 3D source VOI that requires a small number of cells for discretization. A local mesh and direct solver are shown to further speed up the computation. A synthetic isolated synclinal conductor inversion shows good agreement with the model geometry and provides a good fit to the data contaminated with noise. A synthetic multiple-body model inversion was also quite successful, showing that our algorithm is effective and about four times faster than inversion using the total-field method. Finally, we inverted GEOTEM data over the Lisheen deposit, where our inversion result was consistent with the published geology.
机译:我们基于有限体积(FV)方法和直接高斯 - 牛顿优化的3D时域空机电磁(AEM)反转算法,通过将建模体积限制为影响的影响,我们获得高效率(VOI )地球内的3D源,而不是使用AEM系统的较大的VOI。半空间或分层地球用于模拟时域中的背景场,考虑到通过卷积的发射机波形。假设在测量点检测到的任何次要场的3D源位于空机系统的移动VoI内,我们使用需要少量小区的3D源VOI中的FV方法进行时域正向建模和雅比亚计算为了离散化。显示了本地网状和直接解算器,以进一步加速计算。合成分离的旋上旋钮导体反演显示与模型几何形状的良好一致性,并提供良好的符合噪声污染的数据。合成的多体模型反演也很成功,表明我们的算法是有效的,并且比使用总现场方法的反转速度快4倍。最后,我们通过LILHEN押金倒置地理数据,我们的反演结果与已发表的地质学一致。

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