Shock and Vibration

Technology, Research, and Outlook of Coal Rock Dynamic Disasters in Deep Mining


Publishing date
01 Nov 2021
Status
Published
Submission deadline
25 Jun 2021

Lead Editor

1China University of Mining and Technology, Beijing, China

2University of Wollongong, Wollongong, Australia

3China University of Mining & Technology, Beijing, China

4China Coal Research Institute, Beijing, China

5Institute of Geonics AS CR, Ostrava, Czech Republic


Technology, Research, and Outlook of Coal Rock Dynamic Disasters in Deep Mining

Description

In recent years, coal rock dynamic disasters have become more serious with the gradual increase in mining intensity, and depth. The most typical coal rock dynamic disasters in deep mining are coal-gas outbursts, rock bursts, and coal-gas compound dynamic disasters. The occurrence mechanism of these coal rock dynamic disasters is complex, and there is usually no obvious macro precursor. It brings great difficulties to the prediction and prevention of these disasters in deep mining, which seriously restricts efficient coal mining and global energy security. Therefore, it is of great significance to study the causes, prevention, and controls of coal rock dynamic disaster in deep mining.

The occurrence of coal rock dynamic disaster is the instability process of coal rock under high stress. To understand the mechanism of dynamic disasters, it is necessary to master the coal rock fracture and multifield coupling characteristics. Meanwhile, traditional monitoring and early warning methods are not developed enough to meet the needs of deep mining. Thus, it is critical to create a multi-parameter comprehensive identification and early warning of disaster risk based on multi precursor information fusion method, with the help of artificial intelligence, big data, deep learning.

The aim of this Special Issue is to solicit original research articles and review papers reflecting the advances in the research on the occurrence mechanism, monitoring, and early warning of coal rock dynamic disasters. Submissions including rock mechanics in deep mining, multi-scale and multifield coupling analysis, intelligent prediction, and precise prevention control of coal rock dynamic disasters are highly encouraged.

Potential topics include but are not limited to the following:

  • Multi-scale/field coupling failure characteristics of coal and rock
  • Shock dynamic mechanical characteristics, and constitutive theory of coal and rock
  • Shock or vibration characteristics caused by mining disturbance
  • Energy dissipative theory of coal, and rock during dynamic failure
  • Stability analysis theory, and control of deep surrounding rock
  • Hydraulic fracturing, gas drainage, and gas seepage of coal and rock
  • Microseismic, acoustic emission, and electromagnetic radiation responses under shock/blasting loading
  • Physical experiments or numerical simulation of rock burst, coal-gas outburst, and compound dynamic disasters
  • Mechanisms of coal rock dynamic disaster in deep mining
  • Big data, cloud computing, artificial intelligence, virtual reality, and other technologies in monitoring, and preventing coal rock dynamic disaster

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 9973634
  • - Research Article

Stress Distribution and Optimum Spacing Determination of Double-Withdrawal-Channel Surrounding Rocks: A Case Study of Chinese Coal Mine

Yanjun He | Jianhua Li
  • Special Issue
  • - Volume 2021
  • - Article ID 7968730
  • - Research Article

Rockburst Prediction Based on the KPCA-APSO-SVM Model and Its Engineering Application

Yuefeng Li | Chao Wang | ... | Jianwei Cheng
  • Special Issue
  • - Volume 2021
  • - Article ID 7241538
  • - Research Article

Research and Application of Hydraulic Punching Pressure Relief Antireflection Mechanism in Deep “Three-Soft” Outburst Coal Seam

Beifang Gu | Yanling Wu
  • Special Issue
  • - Volume 2021
  • - Article ID 7491414
  • - Research Article

Three-Dimensional Physical Simulation and Control Technology of Roof Movement Characteristics in Non-Pillar Gob-Side Entry Retaining by Roof Cutting

Xinzhu Hua | Guanfeng Chang | ... | Chen Li
  • Special Issue
  • - Volume 2021
  • - Article ID 4764732
  • - Research Article

Fracture Mechanism in Overlying Strata during Longwall Mining

Zhengyi Ti | Jiazhen Li | ... | Caiwang Tai
  • Special Issue
  • - Volume 2021
  • - Article ID 9928168
  • - Research Article

Numerical Investigation of Relationship between Bursting Proneness and Mechanical Parameters of Coal

Hongwei Wang | Jiaqi Song | ... | Yaodong Jiang
  • Special Issue
  • - Volume 2021
  • - Article ID 9931137
  • - Research Article

Response Characteristics of Coal-Like Material Subjected to Repeated Hydraulic Fracturing: An Evaluation Based on Real-Time Monitoring of Water Injection Pressure and Roof Stress Distribution

Yongjiang Zhang | Benqing Yuan | Xingang Niu
  • Special Issue
  • - Volume 2021
  • - Article ID 9997597
  • - Research Article

A Numerical Investigation of the Hazardous Injection Area of Induced Earthquake during Hydraulic Fracturing

Zhiyong Niu | Shiquan Wang | ... | Yibin Yang
  • Special Issue
  • - Volume 2021
  • - Article ID 9955994
  • - Research Article

Study on Response Characteristics of Surrounding Rock Rupture Microseismic Events during Coal Roadway Excavation

Yajuan Wang | Dongji Lei | ... | Tao Ma
  • Special Issue
  • - Volume 2021
  • - Article ID 4328550
  • - Research Article

Stability Assessment of Deep Three-Soft Outburst Coal Seam Roof Based on Fuzzy Analytic Hierarchy Process

Qingling Meng | Yanling Wu | ... | Kejiang Lei
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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