• DocumentCode
    1732627
  • Title

    A study based on 2D seismic prospecting method of distributed real-time data acquisition system

  • Author

    Sun Bin ; Zheng Mukai ; Zou Jie ; Sun Xiurong

  • Author_Institution
    SDIC Qujing Coal Dev. Co., Ltd., Qujing, China
  • fYear
    2013
  • Firstpage
    7191
  • Lastpage
    7195
  • Abstract
    In allusion to problems such as complexity of coalfield geological condition, lack of experience of geophysical prospecting, low sensitivity and poor resolution of traditional seismometers in Enhong coal mine area of Yunnan Province, this paper puts forward a real-time data acquisition method based on distributed acquisition system. The collected real-time data are of high-precision and high-reliability after being compared with those geological section maps via extractive geological samples from a series of misering engineering. Thereupon this method is proved to be able to ascertain accurately coal seam strike of northwest shallow seam and southeast deep seam, occurrence conditions of stable distance between coal seams, and development situations of structures often faults, two anticlines and one syncline in test sections. The imaging data from test provide scientific instructions and reliable data reference for reasonable layout of mining face and mine roadway, as well as high efficiency and safety underground mining.
  • Keywords
    data acquisition; faulting; geophysical techniques; mining; 2D seismic prospecting method; anticlines; distributed real-time data acquisition system; extractive geological samples; faults; geological section maps; mine roadway; mining face layout; misering engineering; northwest shallow seam; occurrence conditions; safety underground mining; southeast deep seam; syncline; 2D Seismic Prospecting Method; Distribution System; Real-time Data Acquisition;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (CCC), 2013 32nd Chinese
  • Conference_Location
    Xi´an
  • Type

    conf

  • Filename
    6640703