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首页> 外文期刊>Earth, planets and space: EPS >Audio-frequency magnetotelluric imaging of the Hijima fault, Yamasaki fault system, southwest Japan
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Audio-frequency magnetotelluric imaging of the Hijima fault, Yamasaki fault system, southwest Japan

机译:日本西南部山崎断裂系统日岛断裂的音频大地电磁成像

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摘要

An audio-frequency magnetotelluric (AMT) survey was undertaken at ten sites along a transect across the Hijima fault, a major segment of the Yamasaki fault system, Japan. The data were subjected to dimensionality analysis, following which two-dimensional inversions for the TE and TM modes were carried out. This model is characterized by (1) a clear resistivity boundary that coincides with the downward projection of the surface trace of the Hijima fault, (2) a resistive zone (>500 Ω m) that corresponds to Mesozoic sediment, and (3) shallow and deep two highly conductive zones (30-40 Ω m) along the fault. The shallow conductive zone is a common feature of the Yamasaki fault system, whereas the deep conductor is a newly discovered feature at depths of 800-1,800 m to the southwest of the fault. The conductor is truncated by the Hijima fault to the northeast, and its upper boundary is the resistive zone. Both conductors are interpreted to represent a combination of clay minerals and a fluid network within a fault-related fracture zone. In terms of the development of the fluid networks, the fault core of the Hijima fault and the highly resistive zone may play important roles as barriers to fluid flow on the northeast and upper sides of the conductive zones, respectively.
机译:在日本山崎断裂系统的主要部分-日岛断裂沿断面的十个地点进行了音频大地电磁(AMT)调查。对数据进行维数分析,然后对TE和TM模式进行二维反演。该模型的特征是(1)清晰的电阻率边界与Hijima断层的表面迹线的向下投影重合;(2)对应于中生代沉积物的电阻带(> 500Ωm),(3)浅沿断层深处有两个高导电区(30-40Ωm)。浅层导电带是山崎断裂系统的共同特征,而深层导体是在断裂西南部800-1,800 m处新发现的特征。导体被日岛断裂向东北截断,其上边界为电阻带。两种导体均被解释为代表与断裂相关的断裂带内的粘土矿物和流体网络的组合。就流体网络的发展而言,日岛断裂的断层核心和高阻带可能分别起着阻碍流体流向导电区东北和上部的屏障的重要作用。

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