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(107021)Failure analysis of water-bearing sandstone using acoustic emission and energy dissipation

机译:(107021)隔音发射和能量耗散含水砂岩的故障分析

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摘要

We performed uniaxial compression tests on sandstone with variable water contents (dry, natural, and fully saturated) and monitored deformation and failure in real-time using acoustic emission (AE) techniques. We propose sandstone damage variables on the basis of accumulative AE energy and dissipated energy theory. The results provide a useful framework for evaluating rock failure and structural design of rock engineering to improve service life. The peak strength of sandstone in the natural and saturated state is 18.75% and 51.70% lower than that in the dry state, respectively. The stress-time results show a gradual change of the sandstone deformation mode from brittle to ductile with increasing water content. The AE data are closely related to crack compression and formation and the propagation and evolution of new fractures, which reflect the sandstone's internal damage. Increasing water content also shows a clear influence on accumulate AE energy but does not affect the strong increase prior to damage. The damage variables can accurately reveal the evolution of rock damage during compression.
机译:我们在砂岩上进行了单轴压缩试验,使用可变水含量(干燥,自然,完全饱和),并使用声发射(AE)技术实时监测变形和失效。我们在累积AE能量和消散能源理论的基础上提出砂岩损伤变量。结果为评估岩石故障和岩石工程结构设计提供了一种有用的框架,以改善使用寿命。砂岩在天然和饱和状态下的峰强度分别比干燥状态低18.75%和51.70%。应力 - 时间结果显示砂岩变形模式从脆性到延展性随着水含量的逐渐变化。 AE数据与裂纹压缩和形成以及新骨折的传播和演化密切相关,这反映了砂岩的内部损伤。增加的含水量也显示出对积累AE能量的明显影响,但在损伤之前不会影响强劲增加。损伤变量可以准确揭示压缩过程中岩石损伤的演变。

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