Shock and Vibration

Seismic Responses to Rock Engineering Activities: From Experiments to Numerical Modelling and Field Monitoring 2022


Publishing date
01 Mar 2023
Status
Published
Submission deadline
21 Oct 2022

Lead Editor

1China University of Mining and Technology, Xuzhou, China

2Imperial College London, London, UK

3Shaoxing University, Shaoxing, China

4Sichuan University, Chengdu, China

5Wuhan University, Wuhan, China


Seismic Responses to Rock Engineering Activities: From Experiments to Numerical Modelling and Field Monitoring 2022

Description

Understanding the mechanism of seismicity is crucial in reducing hazardous seismic risks (such as induced earthquakes, coal/rockburst, or gas outburst) associated with rock engineering activities, such as coal mining, hard rock mining, tunnelling, hydraulic fracturing, deep wastewater disposal, and geothermal energy production. These engineering activities can change the stresses around underground spaces, and the variation of stress exerted on the surrounding rocks can result in induced seismicity. In laboratory tests, acoustic emissions can be generated in the damage and failure process of coal/rock specimens under loading.

Seismic monitoring in the field is a powerful tool in understanding rock properties at depth and their evolution with stress perturbations, fluid injection, or temperature changes in relation to rock engineering activities. Therefore, understanding the evolution of the mechanical properties of rock and the associated stress-strain evolutions in the laboratory, how they relate to the seismic attributes measured in the field, and how they are impacted by anthropogenic perturbations, such as stress, pressure, or temperature, is a challenging task for the improvement of rock engineering safety and stability.

This Special Issue focuses on seismic responses to rock engineering activities, including coal mining, hard rock mining, tunnelling, hydraulic fracturing, deep wastewater disposal, and geothermal energy production, involving the latest achievements in theoretical analyses, numerical modelling, laboratory experiments, and in-situ investigations. We welcome both original research and review articles.

Potential topics include but are not limited to the following:

  • Mechanisms of induced seismicity
  • Numerical modelling of seismicity
  • Acoustic emission performance in laboratory tests
  • Laboratory simulations of induced seismicity
  • Seismicity evolution in coal/rock failure
  • Microseismic monitoring at field scale
  • Seismic-derived stress inversion technique
  • Seismicity source location technique
  • Joint inversion of source location and focal mechanism of seismicity
  • Mechanical properties and fracture mechanism of deep rock mass
  • Shear fracture characteristics of rock mass under dynamic disturbance
  • Shear mechanism and acoustic emission of joints in dynamic and static state

Articles

  • Special Issue
  • - Volume 2022
  • - Article ID 7606360
  • - Research Article

[Retracted] Mining Stress Distribution in Stope and Overlying Rock Fracture Characteristics and Its Disaster-Pregnant Mechanism of Coal Mine Earthquake

Pengfei Lyu | Kangbin Lu | Xuehua Chen
  • Special Issue
  • - Volume 2022
  • - Article ID 2271635
  • - Research Article

[Retracted] Study on Dynamic Evolution of Overburden Rock Movement and Mining-Induced Stress of Ultra-high Working Face

Tao Li | Zheng Li | Jingdan Sun
  • Special Issue
  • - Volume 2022
  • - Article ID 2262401
  • - Research Article

[Retracted] Research on Temporal and Spatial Distribution Characteristics of Microseismic Events of Slip-Type Rockburst

Kun Xu | Leibo Song | ... | Gang Wang
  • Special Issue
  • - Volume 2022
  • - Article ID 1663350
  • - Research Article

[Retracted] Study on the Failure Mechanism of Strain Rockburst

Lichao Zhou | Gang Wang | ... | Yong Niu
  • Special Issue
  • - Volume 2022
  • - Article ID 2370301
  • - Research Article

[Retracted] Study on Rheological Properties of Coal Rock Containing Gas under Disturbance Conditions

Guoyu Zhang | Zikang Huang | ... | Jimin Su
  • Special Issue
  • - Volume 2022
  • - Article ID 6750871
  • - Research Article

Analysis on Spatial Disturbance Influence of Surrounding Rock Stress in the Staggered Roadways and Its Control Countermeasures

Qingwei Bu | Benqing Yuan | ... | Nuo Xu
Shock and Vibration
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Acceptance rate25%
Submission to final decision95 days
Acceptance to publication17 days
CiteScore2.800
Journal Citation Indicator0.400
Impact Factor1.6
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