Geofluids

Research Progress of Gas Flow During Coal Seam Gas Extraction and Gas-bearing Disasters


Publishing date
01 Sep 2022
Status
Published
Submission deadline
29 Apr 2022

Lead Editor

1Shandong University of Science and Technology, Qingdao, China

2Luleå University of Technology, Luleå, Sweden

3Henan Polytechnic University, Jiaozuo, China

4Xi'an University of Science and Technology, Xian, China

5China University of Mining and Technology, Xuzhou, China

6China Coal Technology and Engineering Group Chongqing Research Institute, Chongqing, China


Research Progress of Gas Flow During Coal Seam Gas Extraction and Gas-bearing Disasters

Description

During coal mining in the past decades, gas has been regarded as a disaster factor. However, with the concept of resource maximization being put forward, we have seen green energy, which inspires humans to mine and use. In recent years, the methods, theories, and equipment for the exploitation and utilization of coal seam gas (CSG) or coalbed methane (CBM) have quickly developed. What’s more, with shallow resource depletion, CSG/CBM extraction has transferred to deep areas. The deep gas environment is different from that of shallow areas. Therefore, there are many difficulties during CSG/CBM extraction, which need methods or technical innovation to overcome them.

In the in-situ stress environment, the state of CSG/CBM is steady. Once it is affected by the artificial disturbance, the gas adsorption equilibrium will be broken. Gas will then be desorbed from the coal matrix. When gas enters coal fractures, diffusion and seepage form in the fractures within different scales. During CSG/CBM extraction, the mechanism of gas adsorption/desorption, diffusion, seepage, and other flow modes require us to pay more attention. In addition, some dynamic disasters related to gas flow may be caused during CSG/CBM extraction. The role of gas and how it affects the forming and development process of dynamic disasters cannot be neglected. Therefore, the mechanism of dynamic disasters needs further research, as well as prevention and control theories and methods.

This Special Issue aims to bring together original research and review articles highlighting recent advances and challenges in the progress of gas flow during coal seam gas extraction and gas-bearing disasters, We welcome submissions focusing on gas adsorption and analytical characteristics, gas flow law and extraction, gas disaster mechanism, gas disaster monitoring and early warning, gas disaster prevention and control technology measures and related research on dynamic disasters of gas-bearing coal.

Potential topics include but are not limited to the following:

  • Methods and equipment of coal seam gas/coalbed methane extraction
  • Technology of coal seam gas/coalbed methane utilization
  • Gas flow of CBM/CSG
  • Gas adsorption, diffusion, and seepage
  • Mechanism of coal/rock dynamic disasters in gas
  • Prevention and control theories of dynamic disasters of gas-bearing coal
  • Control technology of coal and rock dynamic disasters
  • Mechanics and dynamics of gas-bearing coal

Articles

  • Special Issue
  • - Volume 2022
  • - Article ID 8270471
  • - Research Article

Experimental Study on Axial Compression Performance of 7A04 High Strength Aluminum Alloy Circular Tube Concrete Short Column

Zuo-Jin Zhang | Feng-Xia Han | Qing Liu
  • Special Issue
  • - Volume 2022
  • - Article ID 5033940
  • - Research Article

Research on the Nonlinear Characteristics of Acoustic Emission and Damage Mechanism of Gassy Coal under Unloading Conditions

Jie Liu | Qiuping Li | ... | Hao Wang
  • Special Issue
  • - Volume 2022
  • - Article ID 6371887
  • - Research Article

Fracture Development and Multifield Coupling Evolution Law of Soft Overburden Rock in a Medium-Thick Coal Seam Mine

Junjie Cai | Xijian Li | ... | Bize Xu
  • Special Issue
  • - Volume 2022
  • - Article ID 8274137
  • - Review Article

A Review of the Research on Thermo-Hydro-Mechanical Coupling for the Frozen Soil

Yun Chao Teng | Zhen Chao Teng | ... | Bo Li
  • Special Issue
  • - Volume 2022
  • - Article ID 4964740
  • - Research Article

The Research of the Influence on Stress below the Roadway Floor of the Coal Seam Becoming Thin

Liang Chen | Qi Liu
  • Special Issue
  • - Volume 2022
  • - Article ID 8957574
  • - Research Article

Three-Dimensional Discrete Element Analysis of Crushing Characteristics of Calcareous Sand Particles

Zucheng Lu | Heying Hou | ... | Zhuojie Pan
  • Special Issue
  • - Volume 2022
  • - Article ID 1372243
  • - Research Article

Experimental Study on the Pore Structure of Middle- and Low-Rank Coal and Its Influence on Methane Adsorption

Gaini Jia | Ming Yang | ... | Lei Liu
  • Special Issue
  • - Volume 2022
  • - Article ID 6441669
  • - Research Article

Prediction Method for the Ground Vibration Damage Boundary of Thick and Hard Rock Layer Fracture Type Mine Quakes

Ming Zhang | Xuelong Hu | ... | Qingwei Bu
  • Special Issue
  • - Volume 2022
  • - Article ID 8418218
  • - Research Article

Research of the Backfill Body Compaction Ratio Based on Upward Backfill Safety Mining of the Close-Distance Coal Seam Group

Xingping Lai | Leiming Zhang | ... | Kaiwen Mu
  • Special Issue
  • - Volume 2022
  • - Article ID 8214322
  • - Research Article

Quantitative Study on the Stress Distribution Characteristics of Coal Rock with Faults

Dayang Xu | Hu Si | ... | Yunpei Liang
Geofluids
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Acceptance rate29%
Submission to final decision141 days
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CiteScore2.300
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Impact Factor1.7
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