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隧道建设(中英文) ›› 2026, Vol. 46 ›› Issue (S1): 375-386.DOI: 10.3973/j.issn.2096-4498.2026.S1.032

• 地质与勘察 • 上一篇    下一篇

基于分布式声波传感的城市隐伏岩溶探测方法

张丹1, 2, 程飞3, 4, 徐卓群1, 张翔3, 4, 艾志伟1, 林锴1   

  1. (1. 江苏省交通智能感知与管控重点实验室, 江苏 南京 210014; 2. 南京大学地球科学与工程学院,江苏 南京 210023; 3. 江苏省铁路集团有限公司, 江苏 南京 210012; 4. 江苏省智能与绿色铁路工程研究中心, 江苏 南京 210012)
  • 出版日期:2026-06-30 发布日期:2026-06-30
  • 作者简介:张丹(1976—),男,山东威海人,2021年毕业于南京大学,地质工程专业,博士,教授,现从事地质灾害监测与防治方面的教学和科研工作。E-mail: zhangdan@nju.edu.cn。

Distributed Acoustic Sensing-Based Detection of Urban Hidden Karst

ZHANG Dan1, 2, CHENG Fei3, 4, XU Zhuoqun1, ZHANG Xiang3, 4, AI Zhiwei1, LIN Kai1   

  1. (1. Jiangsu Provincial Key Laboratory of Intelligent Sensing and Control of Integrated Traffic, Nanjing 210014, Jiangsu, China; 2. School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, Jiangsu, China; 3. Jiangsu Railway Group Co., Ltd., Nanjing 210012, Jiangsu, China; 4. Jiangsu Provincial Engineering Research Center of Intelligent and Green Railway, Nanjing 210012, Jiangsu, China)
  • Online:2026-06-30 Published:2026-06-30

摘要: 为满足城市环境下隐伏岩溶非开挖、快速布设及精细化探测的需求,研究不同DAS光缆耦合方式对主动源信号及频散特征的影响,提出一套适用于城市道路的背景噪声成像方案。对比土埋法、石膏固定法、点胶固定法、胶带固定法和沙袋压覆法等多种光缆与地面的耦合方式,分析不同耦合条件下主动源信号的信噪比和频散曲线特征; 考虑施工便捷性和快速部署的需求,提出适用于城市道路条件的石膏固定耦合布设方法。采用背景噪声成像技术,在南京上元门地区开展城市岩溶探测方法的试验研究。利用金属铠装振动传感光缆作为传感阵列,连续采集多天的背景噪声数据,通过频率-贝塞尔变换方法得到80 m排列长度的面波频散谱,提取5~40 Hz频段的基阶频散曲线,采用竞争粒子群优化算法反演获得地下40 m以浅的地层横波速度结构。结果表明: 1)基于DAS的背景噪声成像方法得到的浅层横波速度剖面准确反映了浅地表地层结构,与邻近的钻孔资料具有很好的对应关系,验证了该方法的有效性; 2)沿光缆长度在70~120 m等处发现了明显的低速异常区,根据邻近钻孔低速异常区岩芯存在溶蚀现象,可以推测该区域为岩溶发育区。

关键词: 光纤传感, 分布式声波传感, 岩溶, 背景噪声成像, 横波

Abstract: To fulfill the requirements of trenchless excavation, rapid deployment, and high-resolution imaging of urban hidden karsts, the influence of various cable-ground coupling mechanisms on distributed acoustic sensing (DAS) signals is examined and an optimized ambient noise imaging scheme is proposed. Initially, five coupling methods including soil burial, gypsum fixation, glue bonding, tape attachment, and sandbag coverage are evaluated by analyzing the signal-to-noise ratio and dispersion characteristics of active-source signals. Balancing construction efficiency with signal fidelity in urban road environments, the gypsum-fixation method is identified as the optimal deployment strategy. Subsequently, a field validation is conducted in the Shangyuanmen area in Nanjing, China. Using a metal-armored sensing cable as a linear array, continuous ambient noise data are recorded over several days. Surface-wave dispersion spectra are generated via the frequency-Bessel transform for an 80 m array, and fundamental-mode dispersion curves are extracted within the 5-40 Hz range. The shear-wave velocity structure of the upper 40 m is then reconstructed using a competitive particle swarm optimization algorithm. The results indicate that: (1) The DAS-based ambient noise imaging method produces shallow velocity profiles that accurately characterize the near-surface stratigraphy, showing high correlation with local borehole logs. (2) Distinct low-velocity anomalies are detected at distances of 70-120 m along the array. Integrated analysis with borehole cores—which reveal significant dissolution features—confirms that these anomalies correspond to active karst development zones.

Key words: fiber optic sensing, distributed acoustic sensing, karst, ambient noise tomography, shear wave