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Shallow seismic detection of the fault zone associated with a high scarp in southwestern Montana

机译:蒙大拿州西南部断层带高陡断层的浅层地震探测

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摘要

We collected shallow reflection data in southwestern Montana, USA, across a 5.4-m-high tectonic scarp. The goal was to image the normal fault associated with the scarp, observed in an adjacent trench. Processing of the data was challenging because the height of the scarp was comparable to the depths of the reflectors of interest. To find out how to proceed, we processed synthetic data generated using velocity models derived in part from actual shot gathers. The actual data are dominated by large-amplitude low-frequency surface waves, but clear high-frequency reflections are seen in the more distant geophones. Common-offset gathers for the raw and high-pass filtered data reveal sharp discontinuities in arrival times and a strong decrease in amplitudes, respectively, under the scarp. These changes in the wavefield are indicative of lateral variations in elastic properties and are consistent with the presence of a fault zone seen in the trench. The actual data were stacked after the surface waves were removed with a narrow f-k filter. Severe muting was applied to isolate the reflections seen in the high-pass filtered data. The stacked data reveal a clear and fairly continuous horizontal reflector on the down-thrown side of the fault and more disrupted reflectors on the upthrown side, with truncated reflections and changes in amplitude roughly across the projection of the fault mapped in the trench. These observations are consistent with faulting and would be difficult to explain if the scarp were an erosional feature.
机译:我们收集了美国西南部蒙大拿州一个5.4 m高的构造陡峭带的浅反射数据。目的是成像在相邻沟槽中观察到的与断层有关的正常断层。数据的处理具有挑战性,因为斜纹的高度与感兴趣的反射器的深度相当。为了弄清楚如何进行,我们处理了使用速度模型生成的合成数据,该速度模型部分来自实际的镜头集。实际数据主要由大振幅低频表面波控制,但在较远的地震检波器中可以看到清晰的高频反射。原始和高通滤波数据的共同偏移收集分别显示了在陡峭状态下到达时间的急剧不连续和幅度的强烈下降。波场中的这些变化表示弹性特性的横向变化,并且与沟槽中出现的断层带一致。用窄的f-k滤波器去除表面波后,将实际数据堆叠起来。应用了严重的静音来隔离在高通滤波数据中看到的反射。堆叠的数据显示出断层下侧的清晰,相当连续的水平反射层,上层侧的反射层更多的被破坏,反射被截断,振幅大致沿着断层在沟槽中的投影分布。这些观察结果与断层相符,如果陡坡是侵蚀性特征,将很难解释。

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