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Comprehensive early warning of rock burst utilizing microseismic multi-parameter indices 被引量:17
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作者 Linming Dou Wu Cai +1 位作者 Anye Cao Wenhao Guo 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2018年第5期767-774,共8页
Rock bursts have become one of the most severe risks in underground coal mining and its early warning is an important component in the safety management. Microseismic(MS) monitoring is considered potentially as a powe... Rock bursts have become one of the most severe risks in underground coal mining and its early warning is an important component in the safety management. Microseismic(MS) monitoring is considered potentially as a powerful tool for the early warning of rock burst. In this study, an MS multi-parameter index system was established and the critical values of each index were estimated based on the normalized multi-information warning model of coal-rock dynamic failure. This index system includes bursting strain energy(BSE) index, time-space-magnitude independent information(TSMII) indices and timespace-magnitude compound information(TSMCI) indices. On the basis of this multi-parameter index system, a comprehensive analysis was conducted via introducing the R-value scoring method to calculate the weights of each index. To calibrate the multi-parameter index system and the associated comprehensive analysis, the weights of each index were first confirmed using historical MS data occurred in LW402102 of Hujiahe Coal Mine(China) over a period of four months. This calibrated comprehensive analysis of MS multi-parameter index system was then applied to pre-warn the occurrence of a subsequent rock burst incident in LW 402103. The results demonstrate that this multi-parameter index system combined with the comprehensive analysis are capable of quantitatively pre-warning rock burst risk. 展开更多
关键词 ROCK BURST microseismic(ms)monitoring MULTI-PARAMETER indices COMPREHENSIVE EARLY WARNING
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煤层突出危险微震区域探测技术研究 被引量:10
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作者 宋大钊 何学秋 +3 位作者 窦林名 祖自银 王安虎 李振雷 《中国安全科学学报》 CAS CSCD 北大核心 2021年第1期89-94,共6页
为解决煤与瓦斯突出矿井缺乏区域性在线探测预警技术问题,首先,将能反映矿井动、静载荷的微震(MS)技术应用于煤与瓦斯突出矿井,研究掘进诱发微震信号的时空演化特征;然后,基于震动波计算机断层扫描技术(CT),反演研究掘进工作面区域应力... 为解决煤与瓦斯突出矿井缺乏区域性在线探测预警技术问题,首先,将能反映矿井动、静载荷的微震(MS)技术应用于煤与瓦斯突出矿井,研究掘进诱发微震信号的时空演化特征;然后,基于震动波计算机断层扫描技术(CT),反演研究掘进工作面区域应力场分布特征,对比分析应力异常区与事故发生位置的空间关系;最后,探讨MS技术在突出矿井的应用前景。结果表明:突出矿井松软煤层MS事件主要分布在应力集中区、掘进扰动区及构造影响区;当掘进工作面逐渐临近地质构造时,MS能量、频次会逐渐增多;基于震动波速反演得到的区域应力场结果与实际的大巷上山、停采线及掘进面等引起的应力集中相符合;金佳矿突出危险事件位置与震动波CT探测的应力异常区具有很好的对应关系,在波速梯度变化大的位置更可能发生突出。 展开更多
关键词 煤与瓦斯突出 探测预警 微震(ms)监测 震动波计算机断层扫描(CT)技术 区域应力场
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Stability analysis of surrounding rock mass in underground powerhouse considering damage effect of microfractures 被引量:3
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作者 Peiwei Xiao Haoyu Mao +3 位作者 Bo Qian Biao Li Xingguo Yang Nuwen Xu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2022年第4期1115-1130,共16页
A high-precision microseismic(MS)monitoring system was built to monitor surrounding rock microfractures in the underground powerhouse on the left bank of Shuangjiangkou Hydropower Station.The surrounding rock damage a... A high-precision microseismic(MS)monitoring system was built to monitor surrounding rock microfractures in the underground powerhouse on the left bank of Shuangjiangkou Hydropower Station.The surrounding rock damage area with spatiotemporal clustering of MS activities was studied for qualitative analysis of the damage mechanism of surrounding rock microfractures,based on the source parameters of MS events.The surrounding rock microfracture scale characterized by the source radius of MS events was considered to establish the constitutive relation.MS information was imported into the model for numerical analysis using fast Lagrangian analysis of continuain 3 dimensions(FLAC^(3D)).The results indicated that the numerical simulation results considering MS damage can better reflect the actual situation of the field.The surrounding rock microfractures mainly showed mixed failure characteristics.Shear failures appeared in localized areas while the fracture scale of sections from K0e33 m to K0e15 m on the vault was large.The deformation increment caused by microfracture damage in the shallow surrounding rock of the top arch accounted for 10%e13%,and the stress decrement in the surrounding rock caused by microfracture damage accounted for about 10%. 展开更多
关键词 Underground powerhouse microseismic(ms)monitoring Numerical modeling Microfracture damage Constitutive relation
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