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首页> 外文期刊>Bulletin of engineering geology and the environment >A new 3D observation system designed for a seismic ahead prospecting method in tunneling
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A new 3D observation system designed for a seismic ahead prospecting method in tunneling

机译:设计用于隧道超前勘探方法的新型3D观测系统

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The tunnel seismic ahead prospecting method is usually used to estimate adverse geology ahead of a tunnel face. The observation system plays an important role in tunnel seismic ahead prospecting, which helps to obtain accurate imaging results. Optimizing the observation system is a key issue for seismic ahead prospecting. In this paper, observation layouts are evaluated and a new three-dimensional (3D) observation system is proposed by imaging results analysis. For linear and 3D layouts, imaging result analysis in this paper indicates that the mirror artifact caused by the linear layout (Which sets sources and geophones on a straight line) can be suppressed by the 3D layout, due to its energy concentration and convergence. Moreover, reflections using 3D layout identify real abnormal bodies better than the linear layout. Moreover, conventional observation layouts often use shot point on the tunnel face or front sidewall, which makes it difficult to filter interference waves from the back of the tunnel face. To solve this problem, typical numerical examples are conducted, and imaging results of observation layouts with shot point on front sidewall, tunnel face or back sidewall are studied. Results show shot point on the back sidewall helps to separate waves, suppress interference waves and extract effective waves (reflected P-waves by discontinuities) by apparent velocity filtering method, so shot point is designed on the back sidewall to get high-quality records. To balance record quality and application convenience, a new 3D observation system is proposed with 12 geophones and 10 shot points in a special arrangement. Compared with a linear layout, practical testing and application using the new 3D system indicate the main fractured zones are accurately identified and located, which proves the reliability and practicability of the new observation system.
机译:隧道地震超前勘探方法通常用于估算隧道面板前的不利地质情况。该观测系统在隧道地震超前勘探中发挥着重要作用,有助于获得准确的成像结果。优化观测系统是地震超前勘探的关键问题。本文对观测布局进行了评估,并通过成像结果分析提出了一种新的三维(3D)观测系统。对于线性和3D布局,本文的成像结果分析表明,线性布局(在直线上设置源和地震检波器)引起的镜像伪影可以通过3D布局来抑制,因为其能量集中和收敛。此外,使用3D布局的反射比线性布局更能识别真实的异常物体。而且,常规的观察布局经常在隧道面或前侧壁上使用发射点,这使得难以过滤来自隧道面后侧的干扰波。为了解决这个问题,进行了典型的数值示例,并研究了在前侧壁,隧道面或后侧壁上具有爆破点的观测布局的成像结果。结果表明,后侧壁上的射击点通过视在速度滤波方法有助于分离波,抑制干扰波并提取有效波(通过不连续性反射的P波),因此在后侧壁上设计了射击点以获得高质量的记录。为了平衡记录质量和应用程序便利性,提出了一种新的3D观测系统,该系统具有12个地震检波器和10个射击点,且布局特殊。与线性布局相比,使用新的3D系统进行的实际测试和应用表明,主要裂缝区域已得到准确识别和定位,从而证明了新观测系统的可靠性和实用性。

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