张磊, 刘玥. 基于颗粒离散元模型的煤岩损伤演化及声发射特性分析[J]. 煤矿安全, 2017, 48(11): 213-216.
    引用本文: 张磊, 刘玥. 基于颗粒离散元模型的煤岩损伤演化及声发射特性分析[J]. 煤矿安全, 2017, 48(11): 213-216.
    ZHANG Lei, LIU Yue. Analysis of Coal-rock Damage Evolution and Acoustic Emission Characteristics Based on Particle Discrete Element Model[J]. Safety in Coal Mines, 2017, 48(11): 213-216.
    Citation: ZHANG Lei, LIU Yue. Analysis of Coal-rock Damage Evolution and Acoustic Emission Characteristics Based on Particle Discrete Element Model[J]. Safety in Coal Mines, 2017, 48(11): 213-216.

    基于颗粒离散元模型的煤岩损伤演化及声发射特性分析

    Analysis of Coal-rock Damage Evolution and Acoustic Emission Characteristics Based on Particle Discrete Element Model

    • 摘要: 借助于颗粒离散元程序PFC对单轴压缩作用下的煤岩数值模型进行了声发射及损伤演化特性分析,并基于声发射累积次数建立了损伤演化关系模型。研究结果表明,通过对不同阶段的声发射规律进行监测分析,能够为煤岩内部细观裂纹的萌生、扩展及贯通过程的预测提供参考;煤岩的损伤过程大致可分为未损伤、损伤稳定发展和损伤迅速发展3个阶段,并且与煤岩的宏观变形破坏过程存在较密切的对应关系。

       

      Abstract: In this paper, we analyze the coal-rock acoustic emission and damage evolution characteristics under the uniaxial compression by means of particle discrete element program PFC (particle flow code), and establish damage evolution relationship model based on the acoustic emission cumulative frequency. The research results show that monitoring the various stages of the acoustic emission laws can predict the coal-rock internal mesoscopic crack initiation and propagation cut-through process; coal-rock damage process can be roughly divided into three stages including undamage, stable development of damage and rapid development of damage, and the macroscopic deformation and failure process has a close corresponding relation with the coal-rock damage process.

       

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