Skip to main content

Open Access Experimental study of deep depth tunnel surrounding rock rockburst proneness with equivalent material simulating method based on digital speckle correlation technique

Used equivalent material simulating experimental method,with the help of digital speckle correlation technique,researched the surrounding rock stress evolutive characters and law of deformation and failure during the excavation of deep rock roadway,revealed the deep rock surrounding rock stability control mechanism.Analysed the regularities of rock burst and surrounding rock failure considering the excavation speed and support pattern,seeked the internal relations between rock burst and surrounding rock deformation and failure in deep depth tunnel.Obtianed the following rules from the experimental results with excavation speed accelerated,the surrounding rock deformation plastic zone gradually expanding,deep stone drift rock burst tendency and damage level is gradually increasing;weak rock bolt support has some control function on surrounding rock deformation,strong anchor nets supporting has obvious effect on the surrounding rock,supporting strength improves,deep rock’s resistance to plastic deformation ability increases,overall deformation decreases,stability of surrounding rock increases.

Keywords: deep rock roadway; digital speckle; equivalent material simulating experiment; rockburst

Document Type: Research Article

Publication date: 15 October 2011

More about this publication?
  • The Journal publishes the peer-reviewed papers with original research, new developments and innovations, site measurements and case studies in coal science and mining industry. It aims to be a leading platform for the publication of high quality papers and an authoritative source of information for analysis, review and evaluation related to coal science and mining technologies.

    The Journal covers the following areas:

    - coalfield geology and exploration
    - coal resources/reserves estimation
    - mine planning and design, mine optimization
    - mine construction and development, mine operation
    - mine electrical and equipment, mine automation
    - mine health and safety
    - ventilation and control, methane drainage and capture
    - coal processing and utilization
    - low carbon technology
    - coal economics, mine management
    - coal mine environmental impact assessment and control
    - mine rehabilitation, mine closure, etc.

    The Journal is a unique comprehensive academic periodical completely dedicated to the coal science and mining industry in the world. The Journal stands out as an excellent source of scientific information in coal industry with nearly 400 papers published in 12 issues per annum.

    The Journal is published monthly by China Coal Society.
  • Editorial Board
  • Information for Authors
  • Submit a Paper
  • Ingenta Connect is not responsible for the content or availability of external websites
  • Access Key
  • Free content
  • Partial Free content
  • New content
  • Open access content
  • Partial Open access content
  • Subscribed content
  • Partial Subscribed content
  • Free trial content