煤炭工程 ›› 2023, Vol. 55 ›› Issue (6): 128-133.doi: 10. 11799/ ce202306023

• 研究探讨 • 上一篇    下一篇

多源融合监测技术在特厚煤层高强度开采地表沉陷实测中的应用#br# #br#

兰天龙,王东昊,孙兴宇,丁 磊,杜明泽   

  1. 1. 内蒙古蒙泰不连沟煤业有限责任公司,内蒙古 准格尔 017000
    2. 煤炭科学技术研究院有限公司 安全分院,北京 100013
  • 收稿日期:2022-10-19 修回日期:2022-12-26 出版日期:2023-06-20 发布日期:2023-06-30
  • 通讯作者: 王东昊 E-mail:467164046@qq.com

Influence of the first working face mining on failure and deformation characteristics of soft coal and rock in lower seam of contiguous seams#br# #br#

  • Received:2022-10-19 Revised:2022-12-26 Online:2023-06-20 Published:2023-06-30

摘要:

针对特厚煤层综放开采覆岩破坏剧烈、地表沉陷规律不明、地表塌陷难以控制等关键问题, 以不连沟煤矿F6207 和F6211 工作面为研究对象, 利用TSX 和Sentinel-1 数据进行多源观测融合的垂直沉降处理, 通过偏移跟踪计算出工作面地表下沉范围值, 从而得到了整个工作面的变形场。根据地表变形范围与地下开采范围计算基于InSAR 多源监测的短期动态开采影响角, 建立了基于多元信息融合技术的多维地表沉陷监测体系, 突破了以往常规地表移动观测单一布“ 点” 或“线” 的局限性。结果表明, InSAR 多源融合监测技术能有效提高地表残余变形监测的精度, 解决了黄土沟壑区特厚煤层高强度开采地表沉陷与覆岩破坏规律实测难题。

关键词: 特厚煤层, 黄土沟壑区, 覆岩破坏, 地表沉陷, InSAR监测, 多源数据融合

Abstract:

Aiming at the key problems such as severe overburden failure, unclear surface subsidence law and difficult control of surface collapse in fully mechanized caving mining of extra-thick coal seam, taking F6207 and F6211 working faces of Bulangou Coal mine as research objects, the vertical subsidence processing using TSX and Sentinel-1 data was carried out by multi-source observation fusion. The subsidence range of the working face is calculated by migration tracking, and the deformation field of the whole working face is obtained. Calculated according to the scope of the surface deformation range and underground mining based on InSAR Angle, the influences of multi-source monitoring short-term dynamic mining based on multiple information fusion technology of multidimensional surface subsidence monitoring system, break through the conventional single cloth surface movement observation data in "spot" or "line", the limitation of boundaries and accurately identify the subsidence area, The monitoring accuracy of surface residual deformation is effectively improved, and the problem of surface subsidence and overburden failure law measurement of extra-thick coal seam with high intensity mining in loess gully region is solved.

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