Axis anisotropic Occam’s 3D inversion of tensor CSAMT in data space

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
Xiao Liu, Fang-Wen Zheng
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引用次数: 0

Abstract

As geological exploration conditions become increasingly complex, meeting the requirements of precise geological exploration necessitates the development of a controlled-source audio magnetotelluric (CSAMT) inversion method that considers anisotropy to improve the effectiveness of inversion accuracy and interpretation accuracy of data. This study is based on the 3D finite-difference forward modeling of axis anisotropy using the reciprocity theorem to calculate the Jacobian matrix by applying the search method to automatically search for the Lagrange operator. The aim is to establish inversion iteration equations to achieve the axis anisotropic Occam’s 3D inversion of tensor CSAMT in data space. Further, we obtain an underground axis anisotropic 3D geoelectric model by inverting the impedance data of tensor CSAMT. Two synthetic data examples show that using the isotropic tensor CSAMT algorithm to directly invert data in anisotropic media can generate false anomalies, leading to incorrect geological interpretations. Meanwhile, the proposed anisotropic inversion algorithm can effectively improve the accuracy of data inversion in anisotropic media. Further, the inversion examples verify the effectiveness and stability of the algorithm.

轴向各向异性奥卡姆三维反演数据空间中的张量 CSAMT
随着地质勘探条件的日益复杂,为满足精确地质勘探的要求,有必要发展一种考虑各向异性的可控源音频磁法(CSAMT)反演方法,以提高反演精度和数据解释精度。本研究基于轴各向异性的三维有限差分正演建模,利用互易定理计算雅各布矩阵,应用搜索法自动搜索拉格朗日算子。目的是建立反演迭代方程,实现轴线各向异性奥卡姆张量 CSAMT 在数据空间的三维反演。此外,我们还通过反演张量 CSAMT 的阻抗数据,获得了地下轴各向异性三维地电模型。两个合成数据实例表明,使用各向同性张量 CSAMT 算法直接反演各向异性介质中的数据会产生错误异常,导致错误的地质解释。同时,所提出的各向异性反演算法能有效提高各向异性介质中数据反演的准确性。此外,反演实例验证了算法的有效性和稳定性。
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来源期刊
Applied Geophysics
Applied Geophysics 地学-地球化学与地球物理
CiteScore
1.50
自引率
14.30%
发文量
912
审稿时长
2 months
期刊介绍: The journal is designed to provide an academic realm for a broad blend of academic and industry papers to promote rapid communication and exchange of ideas between Chinese and world-wide geophysicists. The publication covers the applications of geoscience, geophysics, and related disciplines in the fields of energy, resources, environment, disaster, engineering, information, military, and surveying.
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