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Multi-frequencies GPR measurements for delineating the shallow subsurface features of the Yushu strike slip fault

机译:多频率GPR测量以描绘玉树走滑断裂的浅层地下特征

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In order to assess Ground penetrating radar (GPR) for imaging the shallow subsurface geometry and characteristics of the fault in Yushu area, details GPR measurements with 25??MHz, 100??MHz and 250??MHz frequencies antenna were firstly conducted in four sites along the Yushu fault after geomorphologic and geological investigation. The 25??MHz profiles delineated an excellent general view of deformation zones at a much wider area and greater depth. While the 100??MHz and 250??MHz data provided more detailed analysis of the shallow subsurface deformation about the geologic structure and the fault, including the stratigraphic structures, the dip angle and direction of the fault plane. The remarkable variation in the pattern and relative amplitude of electromagnetic waveform on the two-dimensional GPR profiles are all obvious and it is considered as the main fault zone with a nearly vertical fault with the dip angle of 70?°a??85?°. High frequency GPR profiles show a good consistency with the trench sections at three sites. The geometry of the main fault zone can be depicted and deduced up to ~a??12??m deep or even deeper on the 25??MHz GPR profile in Yushu area and it is considered to be the result of the movement of active faults. Whata??s more, the geophysical features on GPR profile associated to the strike-slip fault are further summarized in different geological and geomorphological environment in Yushu area, the study also provides further evidence that GPR is valuable for fault investigation and palaeoseismic study in the Qinghai-Tibet??Plateau area.
机译:为了评估玉树地区地下浅层几何特征和断层特征成像的探地雷达(GPR),首先在四个频率范围内分别使用25兆赫兹,100兆赫兹和250兆赫兹的天线进行了详细的GPR测量。经过地貌和地质调查,发现玉树断裂带沿线的遗址。 25兆赫的轮廓描绘了在更宽的面积和更大的深度处的变形区的出色总体视图。 100兆赫兹和250兆赫兹的数据提供了对地质构造和断层的浅层地下变形的更详细分析,包括地层结构,倾角和断层平面方向。二维GPR剖面上电磁波形的模式和相对振幅的明显变化都很明显,被认为是主断层带,具有接近垂直断层,倾角为70°°a≤85°°。 。高频GPR曲线显示与三个位置的沟槽部分具有良好的一致性。在玉树地区25兆赫兹GPR剖面上,可以描述并推断出主断层带的几何形状,深度高达〜a ?? 12 ?? m,甚至更深,这被认为是活动带运动的结果。故障。此外,在玉树地区不同的地质和地貌环境中,还进一步总结了与走滑断层有关的GPR剖面的地球物理特征,该研究还提供了进一步的证据,表明GPR对于该地区的断层调查和古地震研究是有价值的。青藏高原地区。

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