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Electrical conductivity images of Quaternary faults and Tertiary detachments in the California Basin and Range

机译:加利福尼亚盆地和山脉第四纪断层和第三系电导率图像

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Comparison of an electrical resistivity section derived from magnetotelluric (MT) data to a geologic section extending eastward from the Sierra Nevada near latitude 36°20′N shows that the crust is dominated by steeply dipping conductive features that correlate with active strike-slip faults. While there is a subhorizontal conductor at a depth ~20 km beneath some of the profile, it is broken by vertical structures associated with the active strike-slip faults. The continuous subhorizontal anomalies in the lower crust typically observed in extensional regions are therefore absent in the resistivity section. The present-day strike-slip tectonic regime as indicated by geodetic data in this part of the Basin and Range is not producing features that could be inferred to indicate subhorizontal shear zones resulting from lateral crustal flow during extension. Because the Miocene tectonic regime resulted in the formation of metamorphic core complexes and thus was accompanied by such flow, the present regime appears to represent a fundamental transition in the mode of crustal deformation in the region. A serendipitous result of our study was the identification on resistivity sections of carbonate aquifers in the upper crust. Comparison of resistivities from the MT section to measured fluid resistivities from springs and boreholes suggests that the aquifers must be heterogeneous, with more saline brines occupying the deepest portions of the carbonates.
机译:从大地电磁(MT)数据得出的电阻率剖面与从内华达山脉向北纬36°20′N附近向东延伸的地质剖面的比较表明,地壳以陡倾的导电特征为主,与活跃的走滑断层有关。虽然在某些剖面下方约20 km处有一个亚水平导体,但它被与活动走滑断层有关的垂直结构所破坏。因此,在电阻率部分不存在通常在伸展区域观察到的下地壳连续的水平下异常。盆地和山脉这部分地区的大地测量数据表明,今天的走滑构造状态并未产生可以推断出伸展过程中地壳横向流动引起的水平下剪切带的特征。由于中新世构造机制导致了变质岩心复合物的形成,因此伴随着这种流动,本机制似乎代表了该地区地壳形变模式的基本转变。我们研究的一个偶然结果是在上地壳碳酸盐含水层的电阻率剖面上的识别。将MT断面的电阻率与来自弹簧和钻孔的测得的流体电阻率进行比较,表明含水层必须是非均质的,更多的盐水盐水占据了碳酸盐的最深部分。

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