煤破裂微震信号的频谱特征

Liu Jikun , Li Chengwu , Wang Cuixia , Zhang Ruming , Zhang Hao
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引用次数: 6

摘要

本文研究了煤破裂过程中观测到的微震信号的频谱特征。在由偏航微机控制的电液伺服压力测试仪、微震传感器、加载系统和信号采集系统组成的试验系统上进行了煤破裂微震观测。结果表明:煤破裂初期,微震信号随压应力的增大而增大;在这个阶段,信号在一段时间内保持稳定。大量的微震信号出现在主破裂事件之前。微震事件发生频率在煤层破裂后立即达到最大值。利用经验模态分解(EMD)方法,利用Hilbert-Huang变换(HHT)将微地震信号分解为多个本征模态函数(IMF)。在希尔伯特能谱和边际谱计算中,发现微震信号的主频段在10 ~ 100hz之间。应用HHT的优点是可以提取信号的主要特征。对煤微震信号的HHT分析证实了这一事实,表明该技术在煤破裂领域是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectral characteristics of micro-seismic signals obtained during the rupture of coal

This study was performed to investigate the spectral characteristics of micro-seismic signals observed during the rupture of coal. Coal rupture micro-seismic observations were obtained on a test system that included an electro-hydraulic servo pressure tester controlled by a YAW microcomputer, a micro-seismic sensor, a loading system, and a signal collection system. The results show that the micro-seismic signal increases with increasing compressive stress at the beginning of coal rupture. The signal remains stable for a period at this stage. A large number of micro-seismic signals appear immediately before the main rupture event. The frequency of micro-seismic events reaches a maximum immediately after the coal ruptures. Micro-seismic signals were decomposed into several Intrinsic Mode Functions (IMF’s) by the empirical mode decomposition (EMD) method using a Hilbert-Huang transform (HHT). The main frequency band of the micro-seismic signals was found to range from 10 to 100 Hz in the Hilbert energy spectrum and from marginal spectrum calculations. The advantage of applying an HHT is that this can extract the main features of the signal. This fact was confirmed by an HHT analysis of the coal micro-seismic signals that shows the technique is useful in the field of coal rupture.

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