• DocumentCode
    633654
  • Title

    Study on Seismic Wave Propagation Characteristic of Deep-Hole Loose Blasting in Coal Mine

  • Author

    Xia Hong-bing ; Xu Ying ; Wang Hai-bo

  • Author_Institution
    Anhui Univ. of Sci. & Technol., Huainan, China
  • fYear
    2013
  • fDate
    29-30 June 2013
  • Firstpage
    1290
  • Lastpage
    1294
  • Abstract
    According to the distribution of faults in coal face, deep-hole loose blasting scheme is formulated and vibration monitoring is conducted. Obtained seismic wave attenuation rule of deep-hole loose blasting, HHT method is adopted for vibration signal decomposition to research the characteristic of spectrum and the energy distribution of the signal. Research results show that seismic wave propagation characteristic of deep-hole loose blasting accords with hard rock spread rule in Safety Regulation for Blasting, the linear component of the ligature between survey point and explosion source is the largest in the three direction components of vibration velocity, which is resulted from the difference of energy loss between different kinds of seismic wave in propagation process, the duration of blasting vibration is about 150 ms, main energy is concentrated in the low-frequency area of less than 100 Hz, and energy can be divided into several "sub-bands" with frequency distribution. According to attenuation law, the biggest single shot charge of deep-hole loose blasting in the site can be calculated inversely, and measures for reducing blasting seismic hazard in construction are proposed, which would provide a reference for the construction.
  • Keywords
    Hilbert transforms; coal; condition monitoring; earthquake engineering; explosions; geotechnical structures; mining; rocks; structural engineering; vibrations; HHT method; coal mine; deep-hole loose blasting vibrations; explosions; fault distribution; rocks; safety regulations; seismic wave attenuation; seismic wave propagation; vibration monitoring; vibration signal decomposition; vibration velocity; Attenuation; Coal; Face; Monitoring; Rocks; Seismic waves; Vibrations; Coal Mine; Deep-hole Loose Blasting; Energy; HHT Method; Spectrum; Vibration;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Digital Manufacturing and Automation (ICDMA), 2013 Fourth International Conference on
  • Conference_Location
    Qingdao
  • Type

    conf

  • DOI
    10.1109/ICDMA.2013.307
  • Filename
    6598231