One-dimensional Laterally Constrained Joint Anisotropic Inversion of CSRMT and ERT Data

IF 1 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL Journal of Environmental and Engineering Geophysics Pub Date : 2021-03-01 DOI:10.32389/JEEG20-060
A. Shlykov, A. Saraev, S. Agrahari, B. Tezkan, Akarsh Singh
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引用次数: 4

Abstract

In this paper, we discuss several approaches for a joint inversion of controlled source radiomagnetotelluric (CSRMT) and electrical resistivity tomography (ERT) data observed over anisotropic media. We compare results of 2D isotropic joint inversion with results of a newly developed joint 1D anisotropic inversion algorithm. The developed algorithm involves the full controlled source high frequency forward and inversion formulations without the plane wave assumption. We demonstrate that for measurements on an anisotropic subsurface the isotropic joint inversion cannot fit both datasets properly due to a high anisotropy of shallow horizons of quaternary sands and loams. The joint anisotropic inversion helps to solve this problem and highlights the advantages of a joint inversion of CSRMT and ERT data. We also demonstrate application of the laterally constrain algorithm for the anisotropic inversion. Results of the joint 1D anisotropic inversion of CSRMT and ERT data were successfully compared with existing borehole data.
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CSRMT和ERT数据的一维横向约束联合各向异性反演
本文讨论了在各向异性介质上观测到的可控源辐射大地电磁(CSRMT)和电阻率层析成像(ERT)数据联合反演的几种方法。将二维各向同性联合反演的结果与新开发的一维各向异性联合反演算法的结果进行了比较。所开发的算法包括全可控源高频正演和反演公式,没有平面波假设。研究表明,在各向异性地下测量中,各向同性联合反演不能很好地拟合两个数据集,因为第四系砂层和壤土层的浅层具有很高的各向异性。联合各向异性反演有助于解决这一问题,突出了CSRMT和ERT数据联合反演的优势。我们还演示了横向约束算法在各向异性反演中的应用。将CSRMT和ERT联合一维各向异性反演结果与现有钻孔资料进行了对比。
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来源期刊
Journal of Environmental and Engineering Geophysics
Journal of Environmental and Engineering Geophysics 地学-地球化学与地球物理
CiteScore
2.70
自引率
0.00%
发文量
13
审稿时长
6 months
期刊介绍: The JEEG (ISSN 1083-1363) is the peer-reviewed journal of the Environmental and Engineering Geophysical Society (EEGS). JEEG welcomes manuscripts on new developments in near-surface geophysics applied to environmental, engineering, and mining issues, as well as novel near-surface geophysics case histories and descriptions of new hardware aimed at the near-surface geophysics community.
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