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Experimental study on the characteristics of microseismic signals generated during granite rockburst events

机译:花岗岩岩爆发事件中产生的微震信号特性的实验研究

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摘要

Rockburst is a typical catastrophic phenomenon in deep underground excavation. Microseismic (MS) monitoring is an extremely significant technique for rockburst prediction. The effectiveness of rockburst warning using MS depends on the cognition of characteristics of the MS during the rockburst process, especially the MS precursor information before rockbursts. In the present study, the rockburst process in granite is reproduced in the laboratory using a true triaxial rockburst testing system. Some notable characteristics of the MS in terms of its quiescent period, waveform fractal dimension, activity level, b value, lgN/b, and frequency spectra were obtained. These MS characteristics are consistent with that obtained on-site, which indicates that the laboratory investigation of rockbursts using MS signals is feasible. In addition, a systematic comparison between MS and AE signals during rockbursts was performed. The obtained results indicate that there are essential differences between MS and AE signals in precursors of the rockburst. The quiescent period of the AE hits was much longer than that of the MS amplitude immediately preceding the rockburst. Besides, the change rate of the time-dependent fractal dimensions of the MS was much higher than that of the AE before a rockburst occurred. Furthermore, there was also a quiescent period in the evolution of the signal activeness index of the AE. However, the Microseismic activity index did not show an obvious quiescent period. On the eve of the rockburst, there were high-amplitude signals with low frequency appearing continuously in both kinds of signals, while the frequency range of MS signals is extremely lower than that of the AE. These different precursors enlighten us that the accuracy of rockbursts prediction can be effectively increased by integrated usage of MS and AE signals.
机译:Rockburst是一种典型的地下挖掘灾难现象。微震(MS)监测是岩虫预测的一种极其重要的技术。岩爆警告使用MS的有效性取决于岩爆过程中MS特征的认知,尤其是摇滚乐前的MS前体信息。在本研究中,使用真正的三轴岩爆检测系统在实验室中塑造了花岗岩中的摇滚乐爆发过程。在其静止时段,波形分形尺寸,活性水平,B值,LGN / B和频谱中获得了MS的一些显着特性。这些MS特性与现场获得的特征一致,这表明使用MS信号的岩肉的实验室调查是可行的。此外,执行岩爆期间MS和AE信号之间的系统比较。所得结果表明,岩爆前体中的MS和AE信号之间存在基本差异。 AE命中的静止时段比立即摇滚突发的MS幅度的静态时段长得多。此外,MS的时间依赖性分形尺寸的变化率远高于AE在发生岩体之前的分形尺寸的变化率。此外,AE信号激活率指数的演化中还存在静止时段。然而,微震活动指数没有显示出明显的静态时期。在摇滚乐的前夕,在两种信号中连续出现低频率的高幅度信号,而MS信号的频率范围远低于AE的频率范围。这些不同的前体阐明了我们可以通过对MS和AE信号的综合使用可以有效地增加岩爆预测的准确性。

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    Guangxi Univ Key Lab Disaster Prevent & Struct Safety Minist Educ Sch Civil Engn & Architecture Nanning 530004 Guangxi Peoples R China;

    Guangxi Univ Key Lab Disaster Prevent & Struct Safety Minist Educ Sch Civil Engn & Architecture Nanning 530004 Guangxi Peoples R China;

    Guangxi Univ Key Lab Disaster Prevent & Struct Safety Minist Educ Sch Civil Engn & Architecture Nanning 530004 Guangxi Peoples R China;

    Civil Engn Grp Corp China Second Engn Bur LTD Beijing 101100 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Rockburst; Microseismic; True triaxial test; Precursor information;

    机译:摇滚乐;微震;真正的三轴测试;前体信息;

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