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The research of Radon transform applied in the tunnel seismic prediction

机译:Radon变换在隧道地震预测中的应用研究

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With speeding up of railway construction, the more long and deep tunnels are being scheduled. As the geological condition prediction before the tunnel workface is of significant importance for safety, quality, progress and cost etc. of the tunnel construction, non-destructive geophysical methods, such as high-density electrical survey, electromagnetic methods, seismic reflection method and so on are widely used for the prediction. In the seismic prediction, the reflection records are not, however, just the waves being reflected from the ahead of the workface. For the complex geological conditions of the tunnels, many interferential reflections from other directive reflectors are stacked on the ahead reflection records, which may cause some traps for the prediction. As the time-distance curve and apparent velocities of the reflection wave records from the ahead of the tunnel workface with common-source or common-receiver layout are usually of obvious difference from that of the interferential reflections, the Radon transform with its power function in apparent velocity filtering is of potential to separate the seismic waves of ahead reflectors of the tunnel workface from the other directive reflectors. On the other hand, the Radon transform usually is important tool for the separation of P-wave and S-wave for the calculation of the ratio of P-wave to S-wave, passion ratio, and other rock physical parameters to evaluate the ahead geology condition of the workface, since the both waves are of the apparent velocity differences. In the paper, we illustrated the superiority and flexibility of the Radon transform to achieve the reflections from the ahead of the workface.1 and the P-Wave and S-wave separation under tunnel complex geological condition by numerical model and a real case.
机译:随着铁路建设的加快,越来越长和更深的隧道正在计划中。由于隧道工作面前的地质状况预测对隧道施工的安全性,质量,进度和成本等具有重要意义,因此,高密度电测,电磁法,地震反射法等无损地球物理方法等是非常重要的。广泛用于预测。然而,在地震预测中,反射记录并不只是从工作面前方反射的波。对于隧道复杂的地质条件,其他定向反射器的许多干扰反射都叠加在超前反射记录上,这可能会导致一些陷阱以进行预测。由于具有共同源或共同接收器布局的隧道工作面前方的反射波记录的时距曲线和视在速度通常与干涉反射有明显的区别,因此Radon变换具有幂函数。表观速度滤波有可能将隧道工作面前方反射器的地震波与其他定向反射器分开。另一方面,Radon变换通常是分离P波和S波的重要工具,用于计算P波与S波之比,激情比和其他岩石物理参数以评估超前情况。工作面的地质条件,因为这两个波都具有明显的速度差异。本文通过数值计算说明了Radon变换的优越性和灵活性,可实现从工作面前方反射。 1 以及隧道复杂地质条件下的P波和S波分离模型和真实案例。

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