Characterization of ground oscillations induced by underground mining

S. Kostić, N. Vasovic
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引用次数: 0

Abstract

We examine ground acceleration during M1.5 and M2.0 seismic events induced by underground mining at Upper Silesian coal basin and Legnica Glogow copper mine, respectively, using methods of nonlinear time series analysis, in order to confirm its stochastic nature. Recorded time series are firstly embedded into the adequate phase space using the mutual information and box-assisted methods. After this, we performed stationarity test, by which we confirmed that the examined ground acceleration belongs to a group of stationary processes. Surrogate data testing is applied then, which resulted in following: (1) horizontal ground acceleration at Legnica Glogow copper mine represents stationary linear stochastic processes with Gaussian inputs, (2) ground acceleration at Upper Silesian coal basin originates from a stationary Gaussian linear process that has been distorted by a monotonic, instantaneous, time-independent non-linear function, (3) vertical ground acceleration at Legnica Glogow copper mine could not be ascribed to any of the examined processes, probably due to high level of instrumental or background noise. Low values of determinism coefficient (c≤0.7), negative values of maximum Lyapunov exponent and quick saturation of neighboring points distance with the increase of embedding dimension indicate the absence of determinism in the observed ground acceleration time series.
地下开采诱发地面振动的表征
本文采用非线性时间序列分析方法,对上西里西亚煤盆地和Legnica Glogow铜矿地下开采引起的M1.5和M2.0地震事件的地面加速度进行了研究,以证实其随机性。首先利用互信息和盒辅助方法将记录的时间序列嵌入到适当的相空间中。在此基础上,我们进行了平稳性检验,证实了所测地面加速度属于一组平稳性过程。然后应用代理数据测试,结果如下:(1) Legnica Glogow铜矿水平地面加速度表现为高斯输入下的平稳线性随机过程;(2)上西利西亚煤盆地地面加速度来源于平稳高斯线性过程,该过程被单调的、瞬时的、与时间无关的非线性函数所扭曲;(3)Legnica Glogow铜矿垂直地面加速度不能归因于上述任何一个过程。可能是由于高水平的仪器或背景噪音。确定性系数较低(c≤0.7),最大Lyapunov指数为负值,相邻点距离随嵌入维数的增加迅速饱和,表明观测到的地面加速度时间序列不具有确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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