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Fracture Behavior of Intact Rock Using Acoustic Emission: Experimental Observation and Realistic Modeling

机译:声发射对完整岩石断裂行为的影响:实验观察与现实建模

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摘要

It is well known that acoustic emission (AE) is a powerful nondestructive testing tool for examining the behavior of materials deforming under stress. One can use it to monitor fracture or damage in a rock mass by listening to AE events during failure under compressive loads. In this paper, an experimental study on the AE source location in square cylinder granite specimens under uniaxial compression is reported. In order to determine the three-dimensional location of AE events, eight AE sensors were mounted on the specimen. The AE source location was determined via the acquisition of eight channel AE sensors after filtering, processing, reporting, and visualizing seismic data. On the basis of the laboratory experiment results, the granite sample was numerically simulated via the Burgers model using the discrete element program PFC~(2D) (Particle Flow Code in Two Dimensions) to further study the mechanism of fracture initiation and propagation in intact rock. In PFC~(2D), materials may be modeled as either bonded (cemented) or unbonded (granular) assemblies of particles. It can describe nonlinear behavior and localization with accuracy that cannot be matched by typical finite element programs. The consistency of stress-strain curves obtained with PFC~(2D) and with the test results shows that PFC~(2D) is a practical tool for reproducing AE events in rock, and use of the Burgers model is feasible in the field of rock failure and provides an analysis of the microcracking activity inside the rock volume to predict rock fracture patterns under uniaxial loading conditions.
机译:众所周知,声发射(AE)是一种功能强大的无损测试工具,用于检查应力下材料变形的行为。人们可以用它来监测岩体的破裂或破坏,方法是在压缩载荷作用下,通过监听声发射事件来监测岩石的破裂或破坏。本文报道了单轴压缩作用下方筒花岗岩试样中声发射源位置的实验研究。为了确定AE事件的三维位置,在样品上安装了八个AE传感器。在过滤,处理,报告和可视化地震数据之后,通过采集八个通道的AE传感器来确定AE源位置。根据实验室实验结果,使用离散元素程序PFC〜(2D)(二维颗粒流代码)通过Burgers模型对花岗岩样品进行了数值模拟,以进一步研究完整岩石中裂缝的萌生和扩展机理。 。在PFC〜(2D)中,可以将材料建模为粒子的粘合(粘合)或非粘合(颗粒)组件。它可以以典型的有限元程序无法比拟的精度描述非线性行为和定位。用PFC〜(2D)得到的应力-应变曲线与试验结果的一致性表明,PFC〜(2D)是再现岩石中AE事件的实用工具,使用Burgers模型在岩石领域是可行的破坏,并提供了对岩石内部微裂纹活动的分析,以预测单轴载荷条件下的岩石破裂模式。

著录项

  • 来源
    《Geotechnical testing journal》 |2013年第6期|903-914|共12页
  • 作者单位

    Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines, College of Resource and Civil Engineering, Northeastern Univ., Shenyang, 110819, China;

    State Key Laboratory of Geohazard Prevention and Geoenvironment Protection, Chengdu Univ. of Technology, Chengdu, 610059, China;

    Candidate, GeoEngineering Centre at Queen's - RMC, Queen's Univ., Kingston, ON, K7L 3N6 Canada;

    Deep Earth Energy Lab, School of Civil Engineering, Monash Univ., Clayton, VIC3800, Australia;

    Candidate, College of Resource and Civil Engineering, Northeastern Univ., Shenyang, 110819, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    acoustic emission; microcracking; rock; numerical modeling; fracture process; initiation and propagation of fracture;

    机译:声发射微裂纹岩石;数值建模;断裂过程裂缝的萌生和扩展;

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