高级检索

基于煤岩界面波场特征的巷道顶底煤厚度探测技术研究及应用

Research and application of roadway roof or floor coal thickness detection technology based on coal-rock interface wavefield characteristics

  • 摘要: 煤层厚度是煤矿生产与安全的关键控制要素,也是智慧矿山建设的核心参数。传统探测方法在中薄煤层中取得了一定成果,但在厚及特厚煤层中,因厚度变化大且多含夹矸,煤层与夹矸的参数差异常导致探测产生误差。针对特厚煤层中夹矸导致的探测误差问题,提出一种基于煤岩界面识别的弹性波动态探测方法。通过煤岩波速测试获取了煤与顶底板岩石的波速等基础参数,结合非零偏移距地震原理与时间域有限差分声波数值模拟技术构建二维地质模型,系统分析了不同煤厚、波阻抗差异及地质背景下地震波的反射特征。结果表明:煤−岩界面因波阻抗差异大,反射信号显著强于岩−岩界面;煤层厚度主要影响信号时延,厚度相差5 m时延约相差1 ms,顶底板砂岩与泥岩的岩性差异对信号时延影响较小;在不连沟煤矿巷道开展了现场面波工业性试验,结果显示,探测煤厚与实测值高度吻合,7个探测点中平均误差不超过4.89%。现场试验也总结出,当底板存在浮煤时,在铁托盘上进行锤击激发可获得更接近真实煤厚的探测结果。该研究验证了该方法在特厚煤层中探测顶底煤厚的有效性与工程适用性。

     

    Abstract: Coal seam thickness is a key controlling factor for coal mine production and safety, as well as a core parameter for the construction of smart mines. Traditional detection methods have achieved some success in medium- and thin-seam coal mines; however, in thick and extra-thick coal seams, due to significant variations in thickness and the frequent presence of interbedded rock, differences in the parameters of the coal seam and the interbedded rock often lead to detection errors. Aiming at the problem of detection errors caused by intercalated gangue in extra-thick coal seams, this study proposes a dynamic elastic wave detection method based on coal-rock interface recognition. Through coal-rock wave velocity testing, non-zero offset seismic principles, and time-domain finite difference simulation, the reflection characteristics of seismic waves under different coal thicknesses, wave impedance differences, and geological backgrounds are systematically analyzed. The results show that: due to the large wave impedance difference at the coal-rock interface, the reflection signal is significantly stronger than that at the rock-rock interface; the coal seam thickness mainly affects the signal time delay, while the lithological difference has little impact, a 5-meter difference in thickness results in a delay difference of approximately 1 millisecond; the average error of the on-site industrial test at 7 detection points does not exceed 4.89%. The on-site industrial tests have also shown that when loose coal is present on the floor, striking the iron tray with a hammer yields detection results that more closely reflect the actual coal thickness. The study verifies the effectiveness and engineering applicability of this method in detecting the thickness of the top and bottom coal in extra-thick coal seams.

     

/

返回文章
返回