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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Three-dimensional joint inversion for magnetotelluric resistivity and static shift distributions in complex media
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Three-dimensional joint inversion for magnetotelluric resistivity and static shift distributions in complex media

机译:复杂介质中大地电磁电阻率和静态位移分布的三维联合反演

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摘要

Accurate interpretation of magnetotelluric (MT) data in the presence of static shift arising from near-surface inhomogeneities is an unresolved problem in three-dimensional (3-D) inversion. While it is well known in 1-D and 2-D studies that static shift can lead to erroneous interpretation, how static shift can influence the result of 3-D inversion is not fully understood and is relevant to improved subsurface analysis. Using the synthetic data generated from 3-D models with randomly distributed heterogeneous overburden and elongate homogeneous overburden that are consistent with geological observations, this paper examines the effects of near-surface inhomogeneity on the accuracy of 3-D inversion models. It is found that small-scale and shallow depth structures are severely distorted while the large-scale structure is marginally distorted in 3-D inversion not accounting for static shift; thus the erroneous near-surface structure does degrade the reconstruction of smaller-scale structure at any depth. However, 3-D joint inversion for resistivity and static shift significantly reduces the artifacts caused by static shifts and improves the overall resolution, irrespective of whether a zero-sum or Gaussian distribution of static shifts is assumed. The 3-D joint inversion approach works equally well for situations where the shallow bodies are of small size or long enough to allow some induction such that the effects of near-surface inhomogeneity are manifested as a frequency-dependent shift rather than a constant shift.
机译:在存在由于近地表非均质性引起的静态位移的情况下对大地电磁(MT)数据的准确解释是三维(3-D)反演中尚未解决的问题。虽然在1-D和2-D研究中众所周知,静态位移会导致错误的解释,但尚未完全理解静态位移如何影响3-D反演的结果,并且与改进的地下分析有关。利用由3D模型产生的综合数据,这些数据具有与地质观测一致的随机分布的非均质覆盖层和细长均匀覆盖层,本文研究了近地表非均质性对3-D反演模型精度的影响。发现在不考虑静态位移的情况下,在3-D反演中小尺度和浅层深度结构严重变形,而大尺度结构略有变形。因此,错误的近地表结构的确会降低任何深度的小尺度结构的重建能力。但是,电阻率和静态位移的3-D联合反演可显着减少由静态位移引起的伪影,并提高整体分辨率,而与假定静态位移的零和分布或高斯分布无关。 3-D联合反演方法在浅体尺寸较小或足够长以允许感应的情况下同样有效,这样近地表非均匀性的影响表现为频率相关的偏移而不是恒定的偏移。

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