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隧道建设(中英文) ›› 2025, Vol. 45 ›› Issue (4): 782-794.DOI: 10.3973/j.issn.2096-4498.2025.04.012

• 地质与勘察 • 上一篇    下一篇

宽照明高信噪比隧道三维地震超前预报方法研究

肖玉兰   

  1. (中铁上海设计院集团有限公司, 上海 200070
  • 出版日期:2025-04-20 发布日期:2025-04-20
  • 作者简介:肖玉兰(1974—),女,江西新干人,1999年毕业于西南交通大学,水文地质与工程地质专业,本科,高级工程师,现从事岩土工程技术工作。E-mail: 1023680382@qq.com。

Three-Dimensional Seismic Advance Prediction Method for Tunnels With Wide Illumination and High Signal-to-Noise Ratio

XIAO Yulan   

  1. (China Railway Shanghai Design Institute Group Corporation Limited, Shanghai 200070, China)
  • Online:2025-04-20 Published:2025-04-20

摘要: 为实现隧道超前方向不良地质体真三维精细探测成像,提出宽照明高信噪比隧道三维地震超前预报方法,设计3D对称观测系统(symmetric observation system,STSP),并采用数值模拟方法、地震照明分析和3D逆时偏移方法评价观测系统的合理性和优势。不规则空洞体模型和软弱夹层模型的分析结果表明STSP的优势为: 13D STSP的炮点呈线性排列,有利于使用方向滤波方法提取超前方向的反射波,数据信噪比高; 2)对于目的层的照明能量和照明范围而言,3D STSP要优于3D TRT3D true reflection tomography); 33D STSP的偏移成像精度较高,而3D TRT对地质体倾向和走向的成像明显不足。

关键词: 隧道, 三维地震超前预报, 3D对称观测系统, 地震照明分析, 3D逆时偏移方法

Abstract: Three-dimensional (3D) tunnel geological advance prediction methods currently face several challenges: (1) The arrangement of shot and geophone points is complex and nonlinear, preventing the use of directional filtering techniques to extract reflected waves in the advance direction, which results in a low signal-to-noise ratio (SNR); (2) the direct wave arrival is unsuitable for estimating the surrounding rock velocity; and (3) geophones are positioned on the tunnel walls, far from the tunnel face, leading to low illumination energy for the target body in the forward direction, which decreases the accuracy of anomaly imaging. To enable true 3D fine detection and imaging of unfavorable geological bodies in the tunnel advance direction, the author proposes a 3D seismic advance prediction method for tunnels with wide illumination and high SNR. A 3D symmetric observation system (STSP) is designed, and its advantages are evaluated through numerical simulation, illumination analysis, and 3D reverse time migration method. Results from the analysis of irregular karst cave and weak interlayer models highlight the following advantages of STSP: (1) The shot points in 3D STSP are arranged linearly, which facilitates extracting reflected waves in the advance direction via directional filtering, resulting in high data SNR. (2) In terms of illumination energy and range of the target layer, 3D STSP outperforms 3D true reflection tomography (TRT). (3) 3D STSP provides high offset imaging accuracy, whereas TRT shows insufficient accuracy in imaging the inclination and trend of geological bodies.

Key words: tunnel, three-dimensional (3D) seismic advance prediction, 3D symmetrical observation system, seismic illumination analysis, 3D reverse time migration