期刊文献+

地空电磁技术在地面区域治理注浆效果评价中的应用

Application of ground-air electromagnetic technology in evaluation of grouting effect in ground regional control
在线阅读 下载PDF
导出
摘要 地空电磁探测技术通过在地面布设电性源、空中无人机采集信号的工作方式,获取了探测区域的电磁响应数据,并分析其富水情况。煤矿地空电磁技术在山西古县老母坡矿老空水及含水构造探测,以及在冀中能源东庞矿西庞井区域治理注浆效果评价等方面得到了成功应用,对比水文地质资料,验证了探测技术的可行性与高效性,提前探明矿井的低阻异常区,为煤矿水害防治提供了技术依据。 Ground-air electromagnetic detection technology obtained the electromagnetic response data of the detection area by laying electrical sources on the ground and collecting signals by aerial drones,and analyzed its water abundance situation.The ground-air electromagnetic technology of coal mine was successfully applied in the detection of old goaf water and water-bearing structure in Laomupo Mine,Guxian County,Shanxi Province,and the evaluation of grouting effect in Xipangjing area of Jizhong Energy Dongpang Mine.Compared with hydrogeological data,the feasibility and efficiency of the detection technology were verified,and the low-resistance abnormal area of the mine was identified in advance,which provided a technical basis for the prevention and control of coal mine water disaster.
作者 周杰民 李炳辉 高小青 Zhou Jiemin;Li Binghui;Gao Xiaoqing(Hebei Coal Research Institute Co.,Ltd.,Xingtai 054000,China;Key Laboratory of Mine Water Disaster Detection and Prevention and Control,National Mine Safety Administration,Xingtai 054000,China;Hebei Engineering Research Center of Mine Geophysical Exploration,Xingtai 054000,China;Shanxi Guxian Laomupo Coal Industry Co.,Ltd.,Linfen 041000,China)
出处 《煤炭与化工》 2025年第1期93-97,共5页 Coal and Chemical Industry
关键词 地空电磁探测 区域治理 注浆效果评价 高分辨率 ground-air electromagnetic detection regional control evaluation of grouting effect high resolution
作者简介 周杰民(1986-),男,河北邢台人,高级工程师。
  • 相关文献

参考文献7

二级参考文献70

  • 1朱凯光,王昊,彭聪,张琼,范天姣,景春阳.基于BP神经网络的固定翼航空电磁线圈姿态校正[J].吉林大学学报(地球科学版),2020,50(1):252-260. 被引量:4
  • 2底青云,Martyn Unsworth,王妙月.复杂介质有限元法2.5维可控源音频大地电磁法数值模拟[J].地球物理学报,2004,47(4):723-730. 被引量:85
  • 3王忠,黄跃,林君,吕国印,冯晓兰.高速、大动态范围瞬变电磁接收机的研制[J].仪器仪表学报,2006,27(4):416-419. 被引量:14
  • 4刘宗燕,纪洪广.采空区顶板垮落造成的冲击性灾害预测[J].西部探矿工程,2007,19(3):101-102. 被引量:3
  • 5Fountain D. 60 years of airborne Em-focus on the last decade. //AEM2008-Sth International Conference Airborne Electromagnetics Haikko Manor. Finland, 2008 1-5.
  • 6Tohru M, Yoshikazu T, Kusunoki K, et al. Development of grounded electrical source airborne transient EM( GREATEM ). Eacploration Geophysics, 1998, 29(1-2) : 61 64.
  • 7Mogi T, Kusunoki K, Kaieda H, et al. Grounded electrical source airborne transient electromagnetic (GREATEM) survey of Mount Bandai, north-eastern Japan. Exploration Geophysics, 2009, 40(1) : 1-7.
  • 8Ito H, Mogi T, Jomori A, et al. Further investigations of underground resistivity structures in coastal areas using grounded-source airborne electromagnetics. Earth, Planets and Space, 2011, 63(8): eg-e12.
  • 9嵇艳鞠,林君,许洋铖.大定源时间域吊舱式半航空电磁勘探理论研究.第九届中国国际地球电磁学术讨论会论文集,2009:121-126.
  • 10Ji Y J, Yang G H, Guan S S, et al. Interpretation research on electrical source of time domain ground-airborne electromagnetic data. ICETCE, 2011, 4(6) 1537-1540.

共引文献119

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部