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Study on Mine Rock Disaster Based on Acoustic Emission Technology

机译:基于声发射技术的矿山岩石灾害研究

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Study the effect of water on the acoustic emission quiet period before the destruction of rock based on the uniaxial loading experiment of acoustic emission of drying, natural and saturated basalt. The results show that the drying, natural and saturated basalt have AE quiet period before rupture. The load level of AE quiet period quiet period increase and shorter duration, and quiet period recognition is more difficult.AE quiet period, the AE event rate maintain per 10, but AE energy rate is not calm and characterized by accelerated release, and the release rate decreases with the increasing of water content. Due to full water characteristics of the actual mining basalt and the complexity of its fracture, the dominant frequency the AE rate of mutational characteristics and the AE event rate calm characteristic can be combined used to obtain information. The rate of mutation phenomenon before AE quiet period can be used as early warning information of saturated basalt rupture, and AE quiet period can be used as precursory information of saturated basalt rupture.
机译:基于干燥玄武岩,天然玄武岩和饱和玄武岩声发射的单轴载荷实验,研究水对岩石破坏前声发射静默期的影响。结果表明,干燥,天然玄武岩和饱和玄武岩在破裂前均处于AE静默期。 AE静默期静默期的负荷水平增加且持续时间较短,且静默期识别更加困难。AE静默期时,AE事件发生率保持在每10次,但AE能量率并不平静且具有加速释放和释放的特点。随着含水量的增加,水的比例降低。由于实际开采的玄武岩的全水特征及其断裂的复杂性,可以结合使用主导频率,突变特征的AE率和AE事件速率的平静特征来获得信息。 AE静默期之前的突变现象发生率可以作为饱和玄武岩破裂的预警信息,而AE静默期可以作为饱和玄武岩破裂的前兆信息。

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