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Three-dimensional interpretation considering the static and the sea-effects of magnetotelluric data obtained in Jeju, Korea

机译:考虑在韩国济州获得的大地电磁数据的静态和海洋效应的三维解释

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Three-dimensional (3D) magnetotelluric (MT) surveys have been performed in Jeju, the largest volcanic island in Korea to figure out any possible structures or potential anomaly for remnant deep geothermal resources. Various approaches have been applied to interpret MT data observed in Jeju. MT dataset shows generally simple stratigraphy of four layers, though contains the severe static and the sea-effects. In our previous works, the induction vectors and 3D inversion results have commonly indicated the existence of a conductive anomaly in central parts of the island, beneath Mt. Halla. The 3D inversion dealt the static shifts as inversion parameters. The Jeju MT dataset, however, still contains the effect of conductive sea water surrounding the island.The sea-effect on MT impedance can be represented as a distortion tensor and excluded from the Jeju MT dataset by an iterative sea-effect correction. In this study, 3D inversion incorporating static shift parameterization was conducted using MT dataset corrected using 1D resistivity model obtained from the iterative scheme. Reasonably reconstructed images are obtained through the 3D inversion and using the MT dataset with sea-effect correction. The inversion result still shows the conductive anomaly in a similar depth. RMS misfits converged to a lower value than that of inversion using MT data before the sea-effect correction. From the fact, it is highly possible that the conductive anomaly is not an artifact but a real underground structure. Further investigation about the anomaly including exploration drilling is needed to see if it is from a fracture containing conductive sea water or related to the old volcanic activities.
机译:已经在韩国最大的火山岛济州岛进行了三维(3D)大地电磁(MT)调查,以找出残留的深部地热资源的任何可能结构或潜在异常。已采用各种方法来解释在济州观测到的MT数据。 MT数据集显示出简单的四层地层,尽管其中包含严重的静电和海洋效应。在我们之前的工作中,感应矢量和3D反演结果通常表明在岛的中央部分(山下)存在导电异常。哈拉3D反演将静态位移视为反演参数。但是,济州岛MT数据集仍然包含岛屿周围的导电海水的影响,对MT阻抗的海效应可以表示为变形张量,并且可以通过迭代海效应校正将其从济州岛MT数据集中排除。在这项研究中,使用从迭代方案中获得的一维电阻率模型校正的MT数据集,进行了包含静态位移参数化的3D反演。通过3D反演并使用具有海效应校正功能的MT数据集可以获得合理的重建图像。反演结果仍显示出相似深度的导电异常。在海效应校正之前,RMS失配收敛到比使用MT数据进行反演时更低的值。从事实出发,导电异常很有可能不是伪影而是真正的地下结构。需要对包括勘探钻探在内的异常进行进一步调查,以查看其是否来自包含导电海水的裂缝或与旧火山活动有关的裂缝。

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