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Study on Electric-Magnetic-Acoustic Signal Regularity and Its Correlation during Rock Shear Failure

机译:电磁声信号规律性研究及其在岩剪破坏期间的相关性研究

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摘要

During mining activities, the deformation and damage of coal rock materials might result in coal rock dynamic disasters, such as rock burst. It leads to serious casualties and property losses. Generally, the occurrence of dynamic failure of coal and rock are caused by shear failure of coal seam. Geophysics signals are generated and related to damage evolution in this loading process. In this paper, sandstone samples were subjected to shear failure laboratory experiments, and the electric-magnetic-acoustic signal regularity was measured and analyzed comparatively. The results indicated magnetic signals were more correlated with stress and acoustic emission (AE) signals, while the amplitude of electric signal fluctuation was larger when main failure occurred. With the increase of sample size and shear strength, the strength of electric-magnetic-acoustic signals increased. The correlation coefficients between the magnetic signal and stress as well as AE energy were superior to those of electric signals. The coupling model between AE and electric signals was established, which shows good statistical correlation. This study lays the foundations for further interpreting the generation mechanism of the electric signal. It provides a new method to indicate the damage evolution of coal rock materials.
机译:在采矿活动期间,煤岩材料的变形和损坏可能导致煤岩动态灾害,如岩石爆裂。它导致严重伤亡和财产损失。通常,煤和岩体动态失效的发生是由煤层的剪切失效引起的。地球物理信号被生成并与此加载过程中的损坏演变相关。本文对砂岩样品进行了剪切衰竭实验室实验,并相对测量电磁声信号规律并进行分析。结果表明磁信号与应力和声发射(AE)信号更相关,而当发生主故障时电信号波动的幅度更大。随着样品尺寸和剪切强度的增加,电磁信号的强度增加。磁信号和应力之间的相关系数以及AE能量优于电信号的相关系数。建立了AE和电信号之间的耦合模型,其显示出良好的统计相关性。该研究奠定了进一步解释电信号的产生机制的基础。它提供了一种指示煤岩材料的损伤演变的新方法。

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