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综合集成高精度智能微震监测技术及其在深部岩石工程中的应用 被引量:35
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作者 陈炳瑞 冯夏庭 +6 位作者 符启卿 王搏 朱新豪 李涛 陆菜平 夏欢 《岩土力学》 EI CAS CSCD 北大核心 2020年第7期2422-2431,共10页
通过微震技术获取更多的岩石工程灾害演化过程微震信息,自动识别岩石破裂微震信息,自动精准定位岩石破裂的位置,为灾害分析、预警与防控提供理论与技术支撑,一直是科学家和工程师研究的热点与难点。针对这些难点,研发了传感-采集-传输... 通过微震技术获取更多的岩石工程灾害演化过程微震信息,自动识别岩石破裂微震信息,自动精准定位岩石破裂的位置,为灾害分析、预警与防控提供理论与技术支撑,一直是科学家和工程师研究的热点与难点。针对这些难点,研发了传感-采集-传输一体化集成技术、32位A/D与元器件联合降噪采集技术、微震信号递归STA/LTA-BP神经网络综合识别方法以及基于PTP高精度时间同步策略的速度模型数据库速配微震源定位算法,并对这些技术进行了综合集成,提出了综合集成高精度智能微震监测技术。目前该技术已在国内外多个深部岩石工程进行了应用。应用结果表明,该技术既可应用于岩爆、冲击地压等动力型灾害监测,又可应用于岩石工程开挖(开采)围岩稳定性监测,还可推广应用于矿产资源防盗采监测,一定程度上提升了岩石工程灾害演化过程微震信号的捕获能力、岩石破裂微震信号的识别能力和微破裂源的定位精度,推动微震监测技术朝着岩石工程灾害自动监测、分析与智能预警方向快速发展。 展开更多
关键词 微震 识别算法 定位算法 岩爆 滤噪 岩石工程
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Study on fault induced rock bursts 被引量:17
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作者 LI Zhi-hua DOU Lin-ming +2 位作者 lu cai-ping MU Zong-long CAO An-ye 《Journal of China University of Mining and Technology》 EI 2008年第3期321-326,共6页
In order to study the rules of rock bursts caused by faults by means of mechanical analysis of a roof rock-mass balanced structure and numerical simulation about fault slip destabilization, the effect of coal mining o... In order to study the rules of rock bursts caused by faults by means of mechanical analysis of a roof rock-mass balanced structure and numerical simulation about fault slip destabilization, the effect of coal mining operation on fault plane stresses and slip displacement were studied. The results indicate that the slip displacement sharply increases due to the decrease of normal stress and the increase of shear stress at the fault plane when the working face advances from the footwall to the fault itself, which may induce a fault rock burst. However, this slip displacement will be very small due to the increase of normal stress and the decrease of shear stress when the working face advances from the hanging wall to the fault itself, which results in a very small risk of a fault rock burst. 展开更多
关键词 FAULT slip destabilization rock burst numerical simulation normal stress shear stress
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Classification of microseismic events in high stress zone 被引量:10
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作者 CAO An-ye DOU Lin-ming +4 位作者 YAN Ru-ling JIANG Heng lu cai-ping DU Tao-tao lu Zhen-yu 《Mining Science and Technology》 EI CAS 2009年第6期718-723,共6页
For the purpose of having a better understanding of failure mechanisms of rock fracturing in mines, the equivalent point source models of tensile, shear and explosive seismic events were established, and the relations... For the purpose of having a better understanding of failure mechanisms of rock fracturing in mines, the equivalent point source models of tensile, shear and explosive seismic events were established, and the relationship between far-field seismic displacements of the waves and the corresponding equivalent forces were analyzed as well. Based on the results of a microseismic monitoring carried out in the mining progress of 9202 working face under the upper remnant coal pillar in Sanhejian Mine, the waveform features of the seismic events associated with different failure modes were further analyzed. The results show that the signals corresponding to different failure mechanisms have different radiation patterns of the seismic displacements, and different characteristics in waveform features, such as dominant frequency, energy released, the ratio of S- to P-wave energy, and so on. In addition, the rock burst happened in the high stress zone is mainly the result of the strong shear fracturing in the mining process. The results of this study have significantly improved the understanding of the characteristics of the failures associated with underground mining, and will greatly benefit the prevention and control of rock burst hazards in burst-prone mines. 展开更多
关键词 rock burst microseismic monitoring failure mechanism WAVEFORM CHARACTERISTICS
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