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Microseismic low-frequency precursor effect of bursting failure of coal and rock

机译:煤岩爆破破坏的微震低频前兆效应

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摘要

As a tough problem in coal mines, there is not an effective solution to rockburst evaluation and prediction as yet. In this paper, an attempt to investigate a rockburst forecasting method was undertaken by applying small scale, laboratory modeling of the coal mine roof, coal and its floor. According to rockburst danger evaluation and forecasting in deep coal mines on the basis of microseismic (MS) monitoring, the frequency-spectrum evolution was analyzed in detail by the band-stop filter and Fourier transform of MS signals monitored in time. Research results show that a strong mainshock induced by coal and rock sample bursting failure would commonly be introduced when the predominant frequency-spectrum of MS signals begins to move to lower band and the vibration velocity gradually increases, and the signals closed to mainshock, precursor signals, which indicate the tendency of increasing low-amplitude and the decreasing high-frequency. Moreover, it is also found that the rockburst disaster intensity increases with the increase of vibration velocity of precursor signal, and it is opposite with the predominant frequency of precursor signal.
机译:作为煤矿中的难题,目前还没有有效的岩爆评估和预测解决方案。本文尝试通过对煤矿顶板,煤层及其底板进行小规模,实验室建模研究岩爆预测方法。在基于微震监测的深部煤矿岩爆危险性评价和预报的基础上,通过带阻滤波器和实时监测的MS信号的傅里叶变换,详细分析了频谱演化。研究结果表明,当MS信号的主要频谱开始向低频带移动,并且振动速度逐渐增大,并且接近主震的信号(前兆信号)时,通常会引入由煤岩爆破失败引起的强烈主震。 ,这表明低振幅增加而高频下降的趋势。此外,还发现岩爆灾害的强度随前驱信号振动速度的增加而增加,与前驱信号的主要频率相反。

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