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3-D Full-tensor Magnetotelluric Analysis of Coso Geothermal Field

机译:COSO地热田的3-D全张磁仪分析

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Previous analysis of 100+ magnetotelluric (MT) soundings from the Coso Geothermal Field, CA revealed important correlations with known fault locations, injection and production well intervals, and zones of drilling losses (Newman et al., 2008). However, this three-dimensional inverse modeling effort considered only the off-diagonal elements of the impedance tensor, and initialized from interpolated two-dimensional TM results. Phase data in the Zyx component of the impedance tensor exhibited unique out-of-quadrant behavior that could not be reproduced with this inversion workflow. Recent experience modeling resistivity in complex three-dimensional environments using MT shows that it is necessary to analyze the full impedance tensor, because analysis using only the principal component tensor data (i.e., the off-diagonal components) can produce artifacts in the imaging process. Here we show how full-tensor three-dimensional inversion, initializing from a homogeneous 30 Ohm m half-space, retrieves a better-fitting model than previous work, and in particular is able to explain the anomalous Zyx phase trend. Furthermore, this result does not make simplifying assumptions about dimensionality and directionality of the Earth.
机译:以前分析了来自COSO地热场的100+磁通尿(MT)探测,CA与已知的故障位置,注射和生产井间隔和钻孔损失区(Newman等,2008)的重要相关性。然而,这种三维逆建模工作仅考虑阻抗张量的偏差元素,并从内插二维TM结果初始化。阻抗张量的Zyx分量中的相位数据表现出独特的超象限行为,无法通过这种反转工作流来再现。最近的经验使用MT的复杂三维环境中的电阻率表明,需要分析完全阻抗张量,因为仅使用主成分张量数据(即,偏离对角线组件)的分析可以在成像过程中产生伪像。在这里,我们展示了全张量三维反转,从均匀的30欧姆M半空间初始化,比以前的工作检索更好的拟合模型,特别是能够解释异常的Zyx相位趋势。此外,该结果不会简化地球的维度和方向性的假设。

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