LI Jie, QIU Liming, YIN Shan, LIU Yang, TONG Yongju. Experimental study on characteristics of strain and acoustic emission in the process of coal rock expansion and fracture[J]. Journal of Mine Automation, 2021, 47(2): 63-69. DOI: 10.13272/j.issn.1671-251x.2020110052
Citation: LI Jie, QIU Liming, YIN Shan, LIU Yang, TONG Yongju. Experimental study on characteristics of strain and acoustic emission in the process of coal rock expansion and fracture[J]. Journal of Mine Automation, 2021, 47(2): 63-69. DOI: 10.13272/j.issn.1671-251x.2020110052

Experimental study on characteristics of strain and acoustic emission in the process of coal rock expansion and fracture

More Information
  • Published Date: February 19, 2021
  • In order to solve the problem that there are few researches on the acoustic emission characteristics in the process of coal rock expansion and fracture, experiments on coal rock expansion and fracture are carried out to analyze the change law of strain and acoustic emission signals during the whole process of coal rock expansion and fracture. The results show that: ① the coal-rock expansion and fracture process can be divided into micro-fracture stage (Ⅰ), macro-fracture generation and expansion stage (Ⅱ) and splitting stage (Ⅲ). ② the strain evolution of coal and rock samples in the expansion process is consistent, showing the trend of 'slow change→acceleration→extreme value'. However, the acoustic emission signals of the two samples at each stage are quite different. ③ the acoustic emission ringing counts are more abundant in the coal samples at stages Ⅰ and Ⅱ, and the cumulative ringing counts increase exponentially near stage Ⅲ; while the acoustic emission ringing counts are less in the rock samples at stages Ⅰ and Ⅱ, and the cumulative ringing counts show a 'sudden increase - calm' trend near stage Ⅲ. ④ there is deformation localization in the process of both coal and rock expansion and fracture. The sudden change of strain variation coefficient and the increase of acoustic emission peak frequency range can be used as the precursor characteristics of coal rock expansion,fracture and instability. The research results can provide a basis for monitoring and early warning of coal rock fractures and other projects.
  • Related Articles

    [1]LYU Pengfei, LU Kangbin, CAO Shubin, CONG Risheng. Acoustic emission and fragment fractal characteristics of rock burst tendency coal samples under different strain rate loads[J]. Journal of Mine Automation, 2023, 49(1): 123-130, 139. DOI: 10.13272/j.issn.1671-251x.2022050022
    [2]FENG Junling, TIAN Muqin, HE Ying, WANG Xi. Simulation analysis on influencing factors of cutting head load of longitudinal roadheader[J]. Journal of Mine Automation, 2020, 46(5): 21-27. DOI: 10.13272/j.issn.1671-251x.2019090068
    [3]WANG Jianxin, CHENG Junhao. Research on relationship between tailing slurry concentration and ultrasonic attenuation coefficient[J]. Journal of Mine Automation, 2020, 46(2): 45-49. DOI: 10.13272/j.issn.1671-251x.2019050038
    [4]SUN Jiping, CHEN Bang. A coal-rock recognition method based on statistical modeling ofsteerable pyramidal decomposition coefficients[J]. Journal of Mine Automation, 2016, 42(12): 1-5. DOI: 10.13272/j.issn.1671-251x.2016.12.001
    [5]WANG Hao, WANG Xiaoran, LIU Xiaofei, LI Xuelong, ZHAN Tangqi. Study on internal strain and acoustic emission characteristics of loaded concrete[J]. Journal of Mine Automation, 2016, 42(10): 74-78. DOI: 10.13272/j.issn.1671-251x.2016.10.017
    [6]LYU Ganggang, SHEN Rongxi, QIU Liming, ZHAO Cong, QI Jinxing, WANG Jinghao. Experimental research of variation characteristics of electromagnetic radiation, acoustic emission and surface electric potential during water inrush in mine floor[J]. Journal of Mine Automation, 2015, 41(10): 16-19. DOI: 10.13272/j.issn.1671-251x.2015.10.005
    [7]YANG Jianjian, LI Xu, FU Shichen, WU Miao. Research on correction coefficient of relationship formula of shearer parameters and coal rock hardness[J]. Journal of Mine Automation, 2015, 41(8): 123-126. DOI: 10.13272/j.issn.1671-251x.2015.08.031
    [8]LI Baolin, WANG Enyuan, LI Nan, GAO Qinqiong, ZHOU Ming. Characteristic analysis of acoustic emission monitoring signal in coal seam hydraulic fracturing[J]. Journal of Mine Automation, 2015, 41(8): 38-42. DOI: 10.13272/j.issn.1671-251x.2015.08.010
    [9]TONG Min-ming, LI Peng-zhen, TONG Zi-yuan, LI Meng. Research of identification of acoustic emission signal of coal and rock[J]. Journal of Mine Automation, 2013, 39(12): 38-42. DOI: 10.7526/j.issn.1671-251X.2013.12.010
    [10]HE Jian-ping. Analysis of Waveform Changing Characteristics of Rock Acoustic Emission Signal[J]. Journal of Mine Automation, 2008, 34(6): 30-32.
  • Cited by

    Periodical cited type(6)

    1. 胡振鹏,吴恒. 煤层气激励淘洗增产技术试验与应用. 中国煤层气. 2023(05): 16-19 .
    2. 王丙乾,刘子强. 新疆尼勒克县胡吉尔台南部矿区煤层气成藏研究. 中国煤层气. 2023(05): 8-11 .
    3. 赵毅鑫,乔海清,谢镕澴,郭继鸿. 煤岩单轴压缩破坏声发射轻量化三维卷积预测模型研究. 岩石力学与工程学报. 2022(08): 1567-1580 .
    4. 杨喆,马重阳,周英麒,商飞,张恒庆. 典型破片侵彻靶板的动能表征方法. 兵器装备工程学报. 2022(08): 311-316 .
    5. 董文专,卢阳,黄翔. 灰岩单轴抗压损伤特性试验研究. 萍乡学院学报. 2022(03): 16-19 .
    6. 任建喜,陈首佳,岳东,霍小泉,袁增云,范志海,寇义民,侯正利. 玉华矿4~(-2)煤裂隙煤岩三轴压缩破坏机理研究. 煤矿安全. 2021(09): 54-63 .

    Other cited types(4)

Catalog

    Article Metrics

    Article views (188) PDF downloads (13) Cited by(10)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return