Shock and Vibration

Rock Burst in Underground Engineering: Experiments and Analysis


Publishing date
01 Feb 2021
Status
Published
Submission deadline
25 Sep 2020

Lead Editor

1Shandong University of Science and Technology, Qingdao, China

2China University Mining and Technology, Beijing, China

3Colorado School of Mines, Denver, USA


Rock Burst in Underground Engineering: Experiments and Analysis

Description

Rock bursts are common dynamic disasters in deep underground engineering and resource mine development. Rock bursts are characterized by locality, abruptness, concealment, strong shock and vibration, etc, and can cause heavy causalities and economic losses in underground projects. Deep mining of resources has become a common phenomenon: at present, coal mining depth has reached 1500m, geothermal mining depth exceeds 3000m, non-ferrous metal mining depth exceeds 4350m, and oil and gas resource mining can reach depths of 7500m.

Under the influence of deep high stress and complex geological environments, rock burst disasters have become a major problem in deep underground engineering. As such, generation mechanisms, monitoring and early warning systems, prevention and control of rock bursts are all areas in underground engineering that have attracted increasing levels of research from all over the world. In addition, practical solutions have been explored and proposed, which lay a solid foundation for deep underground engineering and resource mine development.

The aim of this Special Issue is to provide an opportunity for scholars worldwide to carry out broad scientific and technological discussion to further understand the nature of rock bursts in order to reduce and prevent accidents. Original research and review articles relating to laboratory experiment tests, theoretical models, numerical simulations, monitoring and early warning methods, and case study of rock bursts are all welcome.

Potential topics include but are not limited to the following:

  • Theoretical studies of rock burst occurrence
  • Laboratory test investigations of rock burst mechanisms
  • Numerical simulation of rock or coal failure at high stresses
  • Monitoring and warning technologies and equipment
  • Methods and techniques for prevention and control in underground engineering

Articles

  • Special Issue
  • - Volume 2020
  • - Article ID 8866783
  • - Research Article

A Pocket Assay Grouting Technology for Rock Burst Control under Huge-Thick Conglomerate

Junwei Shi | Xiangrui Meng | ... | Ying Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8871865
  • - Research Article

Analysis of the Characteristics and Influencing Factors of Gas Explosion in Heading Face

Xue-bo Zhang | Jian-liang Gao | ... | Chun-xia Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8864336
  • - Research Article

Rockburst Occurrence Mechanism Based on the Self-Sustaining Time-Varying Structure of Surrounding Rock

Baojie Fan | Fujun Zhao | ... | Zongtang Zhang
  • Special Issue
  • - Volume 2020
  • - Article ID 8846624
  • - Research Article

Prevention Technology for Strong Mine Pressure Disaster in the Hard-Roof Large-Mining-Height Working Face

Hongfei Duan | Lijuan Zhao
  • Special Issue
  • - Volume 2020
  • - Article ID 8842863
  • - Research Article

Experimental Study on Energy Evolution and Storage Performances of Rock Material under Uniaxial Cyclic Compression

Fengqiang Gong | Jingyi Yan | ... | Song Luo
  • Special Issue
  • - Volume 2020
  • - Article ID 8838966
  • - Research Article

Study on Mechanical Failure and PermeabilityCharacteristicsof Porous Gas-Bearing Coal under Triaxial Stress

Xue-bo Zhang | Wen-yuan Wang | ... | Shuai-shuai Shen
  • Special Issue
  • - Volume 2020
  • - Article ID 8883897
  • - Research Article

Study on Deflection of Surrounding Rock Force Chain and Disaster Mechanism of Instability in Deep Stope

Guang-Xiang Xie | Anying Yuan | Lei Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8820886
  • - Research Article

Use of the Equivalent Mining Height Method for Understanding Overlying Strata Movement and Stress Distribution in an Isolated Coal Pillar

Yang Chen | Dong Li | ... | Sitao Zhu
  • Special Issue
  • - Volume 2020
  • - Article ID 8878280
  • - Research Article

The Principle of Invariant Stress of the Surrounding Rock of the Hole under the Condition of Equal Pressure in the Deep Rock Mass

Xiangye Wu | Jingya Wang | ... | Eryu Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8832528
  • - Research Article

Effect of Moisture Content on Bursting Liability of Sandstone due to Freeze-Thaw Action

Kesheng Li | Maotong Li | ... | Depeng Ma
Shock and Vibration
 Journal metrics
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Acceptance rate27%
Submission to final decision102 days
Acceptance to publication17 days
CiteScore2.800
Journal Citation Indicator0.400
Impact Factor1.6
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