Ding Ling, Zhao Yangfeng, Pan Yishan, Fan Yi
School of Mechanics and Engineering, Liaoning Technical University, Fuxin, 123000, Liaoning, China.
Liaoning Key Laboratory of Mining Environment and Disaster Mechanics, Liaoning Technical University, Fuxin, 123000, China.
Sci Rep. 2024 Mar 20;14(1):6718. doi: 10.1038/s41598-024-57076-0.
To explore the effect of different stress environments on fault-slip rockbursts. Bidirectional shear friction experiments with different lateral pressures were conducted on precracked syenogranites buried at 800 m. The macroscopic statistical parameters (cumulative number of AE events, magnitude and b value) and local characteristic parameters (amplitude and dominant frequency) of acoustic emission during the stick-slip process under different lateral pressures were investigated. In addition, based on fractal theory, the nonlinear characteristics of AE spectrum were analyzed. On this basis, the microscopic mechanism of fault stick-slip was discussed. The results show that the lateral pressure influences the friction strength of the fault and stick-slip motion characteristics. With increasing lateral pressure, the proportion of transgranular shear fractures increases, which leads to an increase of cumulative number of AE events and magnitude. The periodic decrease in the b value is more significant at high lateral pressure. There is a good correlation between a high-magnitude AE event and a stress drop. The AE frequency with phased response characteristics can be used to effectively identify the evolution of fault stick-slip instability at the laboratory scale. A sharp increase in the amplitude of the dominant frequency can be regarded as one of the precursory features of fault stick-slip instability. The AE frequency spectra have multifractal characteristics, that differ among the different stages. The maximum multifractal dimension and spectral width can reflect the difference in energy released during fault stick-slip motion.
为探究不同应力环境对断层滑移型岩爆的影响。对埋深800 m的含预制裂纹的正长花岗岩进行了不同侧向压力的双向剪切摩擦试验。研究了不同侧向压力下黏滑过程中声发射的宏观统计参数(声发射事件累积数、震级和b值)和局部特征参数(振幅和主频)。此外,基于分形理论,分析了声发射频谱的非线性特征。在此基础上,探讨了断层黏滑的细观机制。结果表明,侧向压力影响断层的摩擦强度和黏滑运动特征。随着侧向压力的增加,穿晶剪切破裂比例增加,导致声发射事件累积数和震级增大。在高侧向压力下,b值的周期性下降更为显著。高震级声发射事件与应力降之间存在良好的相关性。具有相位响应特征的声发射频率可有效识别实验室尺度下断层黏滑失稳的演化。主频振幅的急剧增加可视为断层黏滑失稳的前兆特征之一。声发射频谱具有多重分形特征,且在不同阶段有所不同。最大多重分形维数和频谱宽度可反映断层黏滑运动过程中能量释放的差异。