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Ten Months of Ground Imaging Ahead of TBM Using Seismic Reflector Tracing

机译:TBM使用地震反射器描绘前十个月的地面成像

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Forty surveys using Tunnel Reflector Tracing (TRT) developed by C-Thru Ground (CTG) were conducted in Brazil over 3.8 km of the TBM-driven tunnel, excavated mostly in granite-gneissic rock. Each survey extended around 200 m ahead of the face.A hand-held swept frequency source was applied at the rock surface through openings in the TBM shield. Seismic S-waves were measured by an array of accelerometers coupled to the tunnel walls within 20 m behind the sources. Later, the TRT images were compared to the TBM data, the rock types, and the water discharge locations. Approximately 90% of significant features were predicted by the surveys including an anomaly which produced around 30001/min inflow of water. It was first detected approximately 175 meters ahead of the TBM, and confirmed when at 51 m ahead. The analysis also included: differences in wave polarity, a significance of adjusting the attenuation correction between surveys to accommodate for changing features, particularly for longer image ranges, and for detecting smaller features near larger anomalies. Prospects for assessing wave velocity ahead of the face were also investigated.
机译:使用C-Thru地面(CTG)开发的隧道反射器描绘(TRT)的四十次调查在巴西在TBM驱动隧道3.8千米上进行,主要在花岗岩 - 神道岩石中挖掘。每个调查在面部前方延伸约200米。通过TBM屏蔽中的开口施加手持式扫描频率源。通过连接到源20米内的隧道壁的加速度计阵列测量地震S波。稍后,将TRT图像与TBM数据,岩石类型和排水位置进行比较。调查预测了大约90%的显着特征,包括一个异常,产生约30001 / min流入的水。首先在TBM之前检测到大约175米,并​​在提前51米时确认。该分析还包括:波极性的差异,调节调查之间的衰减校正的重要性,以适应改变特征,特别是对于更长的图像范围,以及用于检测较大的异常附近的较小特征。还调查了评估面部波速的前景。

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