期刊文献+

矿井超前精细探测技术方法与应用 被引量:11

Mine Advanced Detailed Detection Technology Method and Optimization
原文传递
导出
摘要 为了预测煤矿掘进工作面的水害,采用矿井瞬变电磁法、矿井直流电法、矿井瑞利波法、矿井反射波法4种井下超前探测技术。通过井下数据采集、处理和反演计算,形成可视化图件,来解释矿井含水体及构造的范围和位置特征,建立了一套适合煤矿掘进过程中井下物探动态监测水害的技术方法。结果表明:矿井瞬变电磁法可探测掘进工作面正前方、前方顶板、前方底板和前方侧帮含水体;矿井直流电法可探测掘进工作面正前方含水体;矿井瑞利波法(或矿井反射波法)可以探测前方构造及采空区边界。 Mine transient electromagnetic method,mine direct current method,mine rayleigh wave method,mine reflected wave method four kinds of mine advanced detection technology are adopted to forecast water disaster in coal mine heading face.By the mine data acquisition,processing and inverse calculation,visualization graph is formed,and use it explain range and location characteristic of the mine water-logged stratum and structural,so as to build built a set technology method for mine geophysical dynamic monitoring water disaster in coal mine tunneling process.Result indicates that mine transient electromagnetic method may detect heading face water-contained of positive front,front roof,front floor and front sidewall;mine direct current method may detect heading face water-contained of positive front;mine rayleigh wave method(or mine reflected wave method) may detect front structure and goaf boundaries.
作者 牟义
出处 《煤矿安全》 CAS 北大核心 2012年第11期88-91,共4页 Safety in Coal Mines
基金 国家重点基础研究发展计划(973计划)资助项目(2010CB226806) 国家自然科学基金资助项目(51004065) 国家科技重大专项资助项目(2011ZX05040-002) 国家国际科技合作专项资助项目(0S2012ZR0400)
关键词 矿井瞬变电磁法 矿井直流电法 矿井瑞利波法 矿井反射波法 超前探测 防治水 电法勘探 地震勘探 mine transient electromagnetic method mine direct current method mine rayleigh wave method mine reflected wave method advanced detection water control electrical prospecting seismic exploration.
  • 相关文献

参考文献4

二级参考文献34

  • 1王华军,梁庆九.瞬变电磁数据采集、解释软件系统研制[J].工程地球物理学报,2005,2(6):425-430. 被引量:13
  • 2张昌达.航空重力测量和航空重力梯度测量问题[J].工程地球物理学报,2005,2(4):282-291. 被引量:30
  • 3徐义贤,夏江海.第74届SEG年会近地表地球物理综述[J].工程地球物理学报,2004,1(4):385-386. 被引量:2
  • 4[1]关永清.感应脉冲瞬变航电仪[M].北京:地质出版社,1978.1-10.
  • 5[2]Ken Witherly.The quest for the Holy Grail in mining geophysics:A review of the development and application of airborne EM systems over the last 50 years.The Leading Edge,2000,19 (3):270-274.
  • 6[3]David Fountain.Airborne electromagnetic system-50 years of development[J].Exploration Geophysics,1998,29:1-11.
  • 7[4]David Fountain,Richard Smith.March 8,2003,55 Years of Aem; 50 Years of Kegs! http://www.fugroairborne.com.au/resources/download/KEGSSymposiumAEM.pdf.
  • 8[5]S N Sheard,T J Ritchie,Karen R.Christopherson,et al.,Mining,Environmental,Petroleum,and Engineering Iindustry Applications of Electromagnetic Techniques in Geophysics[J].Surveys in Geophysics,2005,26:653-659.
  • 9[6]David K Fountain(Speaker,Fugro Airborne Surveys).January 30,2002.Recent Aem Developments.:Megatem.Development,Applications,Success.http://www.fugroairborne.com.au/resources/download/AEMdev.pdf.
  • 10[7]Richard Smith,David Fountain,Michel Allard.The MEGATEM fixed-wing transient EM system applied to mineral exploration:a discovery case history[J].First Break,2003,21:p.71-75.

共引文献42

同被引文献130

引证文献11

二级引证文献101

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