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Magnetotelluric measurements along a reflection seismic profile: Reprocessing and reinterpretation of MT data for crustal-scale electric resistivity structure in central Victoria, Australia

机译:沿反射地震剖面的大地电磁测量:澳大利亚维多利亚州中部地壳尺度电阻率结构的MT数据的重新处理和解释

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Magnetotelluric(MT) soundings were done in Central Victoria, Australia, to investigate the electrical conductivity structure of the Bendigo and Melbourne structural zones. We reprocess and reinterpret the MT data, which were acquired along the same path as the seismic transect in 2006 by GeoScience Victoria (GSV). Deep crustal faulting in this region is considered to be responsible for significant mineralization and magmatic processes. The resulting two dimensional (2D) MT conductivity model is consistent with the seismic interpretation in that it clearly shows known boundaries as well, as additionally reveals four clearly isolated resistors, which could be hardly imaged by reflection seismic. With the result previously published, these resistors can be interpreted as granite or granodiorite intruded in the Devonian, or alteration associated with fluid migration. The 2-D electric conductivity model also agrees with seismic interpretations, which shows that internal faults in the Bendigo Zone are thrust fault systems with listric geometries that are connected in the mid-crust, and clarifies that the Bendigo Zone and Melbourne Zone experienced different tectonic evolution during the Benambran Orogeny in the Silurian. The model also supports the conjecture that the Melbourne Zone formed as a foreland basin to the uplifted Bendigo Zone.
机译:在澳大利亚维多利亚州中部进行了大地电磁测深,以调查本迪戈和墨尔本结构区的电导率结构。我们对MT数据进行了重新处理和重新解释,这些数据是与维多利亚地质科学公司(GSV)在2006年通过地震样线获得的相同路径。该地区的深层地壳断层被认为是造成重要矿化和岩浆作用的原因。所得的二维(2D)MT电导率模型与地震解释相一致,因为它也清楚地显示了已知的边界,并且另外揭示了四个清晰隔离的电阻器,这些电阻器很难通过反射地震成像。根据先前公布的结果,这些电阻器可以解释为侵入泥盆纪的花岗岩或花岗闪长岩,或与流体运移相关的变化。二维电导率模型也与地震解释相吻合,表明本迪戈地区的内部断层是逆冲断层系统,具有连接在地壳中部的列表几何,并阐明了本迪戈地区和墨尔本地区经历了不同的构造志留纪贝南布兰造山运动的演化。该模型还支持了墨尔本地区形成为隆起的本迪戈地区的前陆盆地的推测。

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