首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Correlational fractal characterisation of stress and acoustic emission during coal and rock failure under multilevel dynamic loading
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Correlational fractal characterisation of stress and acoustic emission during coal and rock failure under multilevel dynamic loading

机译:多级动力荷载作用下煤与岩土衰竭期间应力和声发射的相关分数

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摘要

The fractal characterisation of stress and acoustic emission (AE) of coal and rock failure may provide quantitative guidance for analysing the stability of rock mass during excavation engineering. The correlation between stress and AE data was calculated using fractal theory methods and Grassberger-Procaccia (G-P) algorithms to evaluate the damage and degree of flaw in coal and rock materials under multilevel dynamic loading (MDL). First, the mechanical properties of the testing device were developed to obtain synchronous data regarding the stress and AEs of coal and rock specimens under MDL. Second, strength deterioration behaviour and the Felicity effect during coal and rock failure are compared under different levels of dynamic loading. The results show that cumulative dynamic loading are less than the uniaxial compression strength of coal and rock. The Felicity effect is notable, and Felicity ratios decrease to 1 with increased loading velocity. Finally, stresses and AE signals are considered as the data mining specimens of correlation dimensions based on the G-P algorithm. Fractal characteristics on stress and AE coupling properties become more notable as the correlated dimensions become larger. However, the Felicity effect is less prominent, reflecting a lesser degree of damage and flaws in coal and rock materials. Therefore, this study suggests a data mining method for the correlation dimension to be applied in an in-situ monitoring system for rock mass excavation engineering.
机译:煤和岩石故障的应力和声学发射(AE)的分形表征可以提供分析挖掘工程中岩体稳定性的定量指导。应力和AE数据之间的相关性使用分形理论方法和草莓 - ProCACCIA(G-P)算法计算,以评估多级动态负载(MDL)下煤和岩石材料中缺陷的损伤和程度。首先,开发了测试装置的力学性能以获得关于MDL下的煤和岩石标本的应力和AES的同步数据。其次,在不同水平的动态载荷水平下比较了煤和岩石破坏期间的强度劣化行为和富集效应。结果表明,累积动态负荷小于煤炭和岩石的单轴压缩强度。富集效应是值得注意的,并且富集比率随着加载速度增加而减小到1。最后,应力和AE信号被认为是基于G-P算法的相关尺寸的数据挖掘标本。随着相关尺寸变大,应力和AE耦合特性的分形特性变得更加值得注意。然而,富集效应不太突出,反映了煤和岩石材料中较小程度的损坏和缺陷。因此,该研究表明,用于岩体挖掘工程原位监测系统中应用相关维度的数据挖掘方法。

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