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Spatial correlation-based characterization of acoustic emission signal-cloud in a granite sample by a cube clustering approach

机译:Spatial correlation-based characterization of acoustic emission signal-cloud in a granite sample by a cube clustering approach

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摘要

To extract more in-depth information of acoustic emission(AE)signal-cloud in rock failure under triaxial compression,the spatial correlation of scattering AE events in a granite sample is effectively described by the cube-cluster model.First,the complete connection of the fracture network is regarded as a critical state.Then,according to the Hoshen-Kopelman(HK)algorithm,the real-time estimation of fracture con-nection is effectively made and a dichotomy between cube size and pore fraction is suggested to solve such a challenge of the one-to-one match between complete connection and cluster size.After,the 3D cube clusters are decomposed into orthogonal layer clusters,which are then transformed into the ellip-soid models.Correspondingly,the anisotropy evolution of fracture network could be visualized by three orthogonal ellipsoids and quantitatively described by aspect ratio.Besides,the other three quantities of centroid axis length,porosity,and fracture angle are analyzed to evaluate the evolution of cube cluster.The result shows the sample dilatancy is strongly correlated to four quantities of aspect ratio,centroid axis length,and porosity as well as fracture angle.Besides,the cube cluster model shows a potential pos-sibility to predict the evolution of fracture angle.So,the cube cluster model provides an in-depth view of spatial correlation to describe the AE signal-cloud.

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  • 来源
    《矿业科学技术(英文版)》 |2021年第4期|535-551|共17页
  • 作者单位

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    State Key Laboratory of Coal Mine Disaster Dynamics and Control Chongqing University Chongqing 400030 China;

    State Key Laboratory of Coal Resource and Safe Mining China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

    School of Mechanics and Civil Engineering China University of Mining and Technology-Beijing Beijing 100083 China;

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