|
|
|
| Experimental study on precursor characteristics of coal and gas outbursts based on acoustic emission energy analysis |
| TANG Jupeng1,HAO Na1,PAN Yishan2,SUN Shengjie1 |
| (1. School of Mechanics and Engineering,Liaoning Technical University,Fuxin,Liaoning 123000,China;2. School of Physics,Liaoning University,Shenyang,Liaoning 110036,China) |
|
|
|
|
Abstract Coal and gas outbursts are the most serious dynamic disasters in the process of coal mining,and unclear understanding of outburst mechanisms restricts the reliability and effectiveness of disaster early warning. Taking Sunjiawan outburst coal seam in Fuxin as the research object,the similarity experiments of coal and gas outburst with different mining depths were carried out using a self-developed true triaxial test device of coal and gas outburst and the DS5 series full-information acoustic emission signal analysis and testing system. The energy evolution process of coal and gas outburst was analyzed,and the relationship between acoustic emission parameter characteristics and precursor information of coal and gas outburst was established. The results show that the coal and gas outburst process has four stages including early incubation,late incubation,excitation-development and termination and in the process,the acoustic emission energy signals show “steady-rise-peak” variation,indicating that coal and gas outburst is a mechanical process of coal damage and energy accumulation. In the early stage of gestation,the AE energy is at a low level with a steadily rising accumulation,the low energy frequency dominates,and the outburst danger is weak. In the late stage of gestation,the AE energy increases greatly and high-energy frequency dominates,highlighting the risk. The difference of AE energy signals in different periods of outburst can be used as outburst precursor information to monitor the dynamic changes of coal and rock internal fractures in real time and further to guide outburst prediction and early warning. Based on acoustic emission energy,a quantitative index reflecting the danger level of coal and gas outburst in incubation period is defined,which provides scientific reference for the prediction and early warning of dynamic disasters in coal mining.
|
|
|
|
|
|
[1] HUDECEK V. Analysis of safety precautions for coal and gas outburst-hazardous strata[J]. Journal of Mining Science,2008,44(5):464–472.
[2] 赵生才. 深部高应力下的资源开采与地下工程——香山会议第175次综述[J]. 地球科学进展,2002,17(2):295–298.(ZHAO Shengcai. Resource exploitation and underground engineering under deep high stress—— the 175th review of Xiangshan conference[J]. Advance in Earth Sciences,2002,17(2):295–298.(in Chinese))
[3] 谢和平,高 峰,鞠 杨,等. 深地科学领域的若干颠覆性技术构想和研究方向[J]. 工程科学与技术,2017,49(1):1–8.(XIE Heping,GAO Feng,JU Yang,et al. Novel idea and disruptive technologies for the exploration and research of deep earth[J]. Engineering Science and Technology,2017,49(1):1–8.(in Chinese))
[4] 蓝 航,陈东科,毛德兵. 我国煤矿深部开采现状及灾害防治分析[J]. 煤炭科学技术,2016,44(1):39–46.(LAN Hang,CHEN Dongke,MAO Debing. Current status of deep mining and disaster prevention in China[J]. Coal Science and Technology,2016,44(1):39–46.(in Chinese))
[5] 贺永年,韩立军,邵 鹏,等. 深部巷道稳定的若干岩石力学问题[J]. 中国矿业大学学报,2006,35(3):288–295.(HE Yongnian,HAN Lijun,SHAO Peng,et al. Some problems of rock mechanics for roadways stability in depth[J]. Journal of China University of Mining and Technology,2006,35(3):288–295.(in Chinese))
[6] 柏建彪,侯朝炯. 深部巷道围岩控制原理与应用研究[J]. 中国矿业大学学报,2006,35(2):146–148.(BAI Jianbiao,HOU Chaojiong. Control principle of surrounding rocks in deep roadway and its application[J]. Journal of China University of Mining and Technology,2006,35(2):146–148.(in Chinese))
[7] 吴自立. AE信号参数预测预报煤(岩)与瓦斯突出危险性的进展及展望[J]. 矿业安全与环保,2005,32(1):27–28.(WU Zili. Progress and prospect of ae signal parameter for predicting coal and gas outburst hazard[J]. Mining Safety and Environmental Protection,2005,32(1):27–28.(in Chinese))
[8] FRID V. Electoromagnetic radiation method for rock and gas outburst forecast[J]. Journal of Applied Geophysics,1995,38(2):97–104.
[9] WU S Y,GUO Y Y,LI Y X,et al. Research on the mechanism of coal and gas outburst and the screening of prediction indices[J]. Procedia Earth and Planetary Science,2009,1(1):173–179.
[10] JONG-SEOK H,CHUN-IN L,SEOKWON J. Measurement of acoustic emission and source location considering anisotropy of rock under triaxial compression[J]. Key Engineering Materials,2004,4(2):1 574–1 579.
[11] SCHIAVI A,NICCOLINI G,TARIZZO P,et al. Analysis of acoustic emissions at low frequencies in brittle materials under compression[J]. Experimental Mechanics on Emerging Energy Systems and Materials,2011,3(2):103–108.
[12] 高保彬,李回贵,李化敏,等. 声发射/微震监测煤岩瓦斯复合动力灾害的研究现状[J]. 地球物理学进展,2014,29(2):689–697. (GAO Baobin,LI Huigui,LI Huamin,et al. Current situation of the study on acoustic emission and microseismic monitoring of coupling dynamic catastrophe for gas-filled coal-rock[J]. Progress in Geophysics,2014,29(2):689–697.(in Chinese))
[13] 何学秋,窦林名,牟宗龙,等. 煤岩冲击动力灾害连续监测预警理论与技术[J]. 煤炭学报,2014,39(8):1 485–1 491.(HE Xueqiu,DOU Linming,MOU Zonglong,et al. Continuous monitoring and warning theory and technology of rock burst dynamic disaster of coal[J]. Journal of China Coal Society,2014,39(8):1 485–1 491.(in Chinese))
[14] 王恩元,何学秋,刘贞堂,等. 煤体破裂声发射的频谱特征研究[J]. 煤炭学报,2004,29(3):289–292.(WANG Enyuan,HE Xueqiu,LIU Zhentang,et al. Study on frequency spectrum characteristics of acoustic emission in coal or rock deformation and fracture[J]. Journal of China Coal Society,2004,29(3):289–292.(in Chinese))
[15] 张酉年. 掘进工作面煤与瓦斯突出声电瓦斯预警指标优化研究与应用[硕士学位论文][D]. 徐州:中国矿业大学,2019.(ZHANG Younian. Optimization and application of the early-warning index for heading-face coal and gas outburst based on combined ae-emr- gas parameters[M. S. Thesis][D]. Xuzhou:China University of Mining and Technology,2019.(in Chinese))
[16] 邱黎明. 煤巷掘进突出危险性的声电瓦斯监测预警研究[博士学位论文][D]. 徐州:中国矿业大学,2018.(QIU Liming. Research on monitoring and early warning of coal and gas outburst in driving process of coal roadway by EMR,AE and gas[Ph. D. Thesis][D]. Xuzhou:China University of Mining and Technology,2018.(in Chinese))
[17] 王雪龙,冯增朝,李 慧,等. 三轴加载下煤与瓦斯突出声发射可靠性分析[J]. 煤矿安全,2015,46(8):160–163.(WANG Xuelong,FENG Zengchao,LI Hui,et al. Reliability Analysis of Acoustic Emission for Coal and Gas Outburst Under Triaxial Loading[J]. Safety in Coal Mines,2015,46(8):160–163.(in Chinese))
[18] 陈玉涛,覃 俊,李建功,等. 声发射技术在煤与瓦斯突出预测中的应用研究[J]. 矿业安全与环保,2017,44(6):11–16.(CHEN Yutao,QIN Jun,LI Jiangong,et al. Application of AE technique in coal and gas outburst prediction[J]. Mining Safety and Environ Mental Protection,2017,44(6):11–16.(in Chinese))
[19] 张超林,许 江,彭守建,等.煤与瓦斯突出物理模拟实验研究进展及展望[J]. 煤田地质与勘探,2018,46(4):28–34.(ZHANG Chaolin,XU Jiang,PENG Shoujian,et al. Advances and prospects in physical simulation of coal and gas outburst[J]. Coal Geology and Exploration,2018,46(4):28–34.(in Chinese))
[20] 李新平,汪 斌,周桂龙. 我国大陆实测深部地应力分布规律研究[J]. 岩石力学与工程学报,2012,31(增1):2 875–2 880.(LI Xinping,WANG Bin,ZHOU Guilong. Reserch on Distribution Rule of Geostress in Deep Stratumin in Chinese Mainland[J]. Chinese Journal of Rock Mechanics and Engineering,2012,31(Supp.1):2 875–2 880.(in Chinese))
[21] 唐巨鹏,杨森林,王亚林,等. 地应力和瓦斯压力作用下深部煤与瓦斯突出试验[J]. 岩土力学,2014,35(10):2 769–2 775.(TANG Jupeng,YANG Senlin,WANG Yalin,et al. Experiment of coal and gas outbursts under ground stress and gas pressure in deep mines[J]. Rock and Soil Mechanics,2014,35(10):2 769–2 775.(in Chinese))
[22] 张庆贺,袁 亮,王汉鹏,等. 煤与瓦斯突出物理模拟相似准则建立与分析[J]. 煤炭学报,2016,41(11):2 773–2 779.(ZHANG Qinghe,YUAN Liang,WANG Hanpeng,et al. Establishment and analysis of similarity criteria for physical simulation of coal and gas outburst[J]. Journal of China Coal Society,2016,41(11):2 773– 2 779.(in Chinese))
[23] 张超林. 深部采动应力影响下煤与瓦斯突出物理模拟试验研究[硕士学位论文][D]. 重庆:重庆大学,2015.(ZHANG Chaolin. Physical simulation experiment on coal and gas outburst under deep mining-induced stress[M. S. Thesis][D]. Chongqing:Chongqing University,2015.(in Chinese))
[24] 陈忠达,袁万杰,郑东启. 级配理论应用研究[J]. 重庆交通学院学报,2005,24(4):44–48.(CHEN Zhongda,YUAN Wanjie,ZHENG Dongqi. Study on the application of grading theory[J]. Journal of Chongqing Jiaotong University,2005,24(4):44–48.(in Chinese))
[25] 蒋承林. 煤壁突出孔洞的形成机制研究[J]. 岩石力学与工程学报,2000,19(2):225–228.(JIANG Chenglin. Study of forming mechanism of outburst hole[J]. Chinese Journal of Rock Mechanics and Engineering,2000,19(2):225–228.(in Chinese))
[26] 胡千庭,周世宁,周心权. 煤与瓦斯突出过程的力学作用机制[J]. 煤炭学报,2008,33(12):1 368–1 372.(HU Qianting,ZHOU Shining,ZHOU Xinquan. Mechanical mechanism of coal and gas outburst process[J]. Journal of China Coal Society,2008,33(12):1 368–1 372.(in Chinese)) |
|
|
|