Application of Microtremor Survey Technology in a Coal Mine Goaf

被引:7
|
作者
Yu, Chuantao [1 ]
Wang, Zheng [1 ]
Tang, Mingyu [1 ]
机构
[1] Taiyuan Univ Technol, Coll Min Engn, Taiyuan 030024, Peoples R China
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 01期
关键词
microtremor survey technology; linear array; goaf; spatial autocorrelation; dispersion curve; EXPLORATION; DISPERSION;
D O I
10.3390/app13010466
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Goafs are one of the main factors that endanger the safety of mining areas, leading to roadway collapse, land subsidence and other problems. Determining how to detect goafs accurately and efficiently is an important issue faced in engineering geophysical exploration research. Microtremor survey technology, used in geophysical exploration, has been developed in recent years. It has the advantages of low cost, flexible construction, low topographic impact and high efficiency. In this paper, microtremor survey technology was applied to the detection of a coal mine goaf. In the known goaf area of the Taiyuan Nanling Coal Mine, a linear observation array was arranged to conduct rolling acquisition, observe the microtremor signal records of the natural field and use the extended spatial autocorrelation method to extract the dispersion curve. Through the inversion of the extracted dispersion curve, the apparent shear wave velocity profile of the underground medium clearly showed the location of the goaf. It was roughly consistent with the goaf data obtained from the mine. The detection results reflect the advantages of micromotion exploration. The goaf of Coal Seam #2 and its affected area appear to be due to an obvious low-speed phenomenon. The boundary of the apparent shear wave velocity profile of micromotion detection was basically consistent with the boundary of the goaf, indicating that micromotion exploration technology has good technical advantages and application prospects in the detection of coal mine goafs. The rolling acquisition method of linear arrays can be used to ensure accurate detection, improve exploration efficiency and save on exploration costs.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Hydraulic fracturing applied to inducing longwall coal mine goaf falls
    Jeffrey, RG
    Mills, KW
    [J]. PACIFIC ROCKS 2000: ROCK AROUND THE RIM, 2000, : 423 - 430
  • [42] Comprehensive Geophysical Evaluation of Grouting in the Goaf of an Urban Underground Coal Mine
    Ma, Xiaoyin
    Su, Maoxin
    Xue, Yiguo
    Wang, Peng
    Qiu, Daohong
    Han, Min
    Ju, Zhanying
    Liao, Zelai
    [J]. MINE WATER AND THE ENVIRONMENT, 2023, 42 (03) : 513 - 526
  • [43] Simulation test on water-rock interaction in coal mine goaf
    Sun, Yajun
    Zhao, Xianming
    Xu, Zhimin
    Guo, Juan
    Zhang, Li
    Chen, Ge
    Chen, Tianci
    Zhu, Lulu
    Gao, Yating
    Chen, Weiyang
    [J]. Meitiandizhi Yu Kantan/Coal Geology and Exploration, 2023, 51 (01): : 237 - 246
  • [44] A Large Goaf Group Treatment by means of Mine Backfill Technology
    Jia, Hanwen
    Yan, Baoxu
    Yilmaz, Erol
    [J]. ADVANCES IN CIVIL ENGINEERING, 2021, 2021
  • [45] Development of innovative goaf inertisation practices to improve coal mine safety
    Ren, TX
    Balusu, R
    Humphries, P
    [J]. COAL 2005: 6th Australasian Coal Operators' Conference, 2005, 2005 (02): : 315 - 322
  • [46] Research and application of technique of injecting liquid CO2 in goaf of Shigang coal mine to preventing fire
    Tong, Xin-Long
    Huang, Zhi-An
    Zhang, Ying-Hua
    Zhang, Yan-Feng
    Wang, Xin-Tong
    [J]. PROGRESS IN MINE SAFETY SCIENCE AND ENGINEERING II, 2014, : 31 - 36
  • [47] Technology of across-goaf drainage of coalbed methane from a lower coal seam group and its primary application: Taking Sihe mine field as an example
    Li, Junjun
    Li, Guofu
    Hao, Haijin
    Hao, Chunsheng
    Wang, Zheng
    [J]. Meitiandizhi Yu Kantan/Coal Geology and Exploration, 2021, 49 (04): : 96 - 104
  • [48] Research on N2-inhibitor-water mist fire prevention and extinguishing technology and equipment in coal mine goaf
    Liu, Hongwei
    Wang, Fei
    [J]. PLOS ONE, 2019, 14 (09):
  • [49] The Application of Cognitive radio spectrum sensing technology in the coal mine communication
    Chen Guizhen
    Zhang Xiaochun
    Ding Enjie
    Qi Hongwei
    [J]. 2009 INTERNATIONAL SYMPOSIUM ON INTELLIGENT UBIQUITOUS COMPUTING AND EDUCATION, 2009, : 537 - +
  • [50] Application prospect of 5G technology in coal mine intelligence
    Wang, Guofa
    Zhao, Guorui
    Hu, Yahui
    [J]. Meitan Xuebao/Journal of the China Coal Society, 2020, 45 (01): : 16 - 23