Research on the time-varying mechanism of energy dissipation structure of overlying strata under the influence of mining height

ABSTRACT The mining-induced deformation and failure of overlying strata were investigated through numerical simulation, with Liuhuanggou Coal Mine selected as the case study. This research was carried out through simulation. The evolution trended of delamination amounts all present five stages: “rapid increase-decrease-continuous fluctuation-increase-rapid decrease”. The maximum order of the delamination amount at different coal seam mining heights was: 6 m > 4 m > 2 m. The fracture penetration degree generally shown a downward trend. Based on the experimental results, it was found that the mined-out area consists of the overburden compaction area, the gas migration area and the gas reservoir area through characteristic parameters. The energy structure in the overlying rock of the pressure relief gas transportation and storage area was defined based on the principle of minimum energy. The “half-moon” shape was established. The criterion for determining the fracture of the energy dissipation structure under the influence of the pile height had been derived. The drilling layout revealed that the middle layer gas drainage borehole had the best effect. The drilling layout was optimized. The methane plot ratio of optimized gas drainage boreholes increased from 3.1 % to 9.56 %, and the total gas drainage volume increased from 56.88 m 3 /min to 174.14 m 3 /min. The average gas volume fraction of the return airway, the upper corner and the working face was all less than 1%. The results of the study provided guidance for the drilling.

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Publication Details

Journal
Results in Engineering
Published
2026-09-01
DOI
https://doi.org/10.1016/j.rineng.2026.112768
Primary Topic
Geoscience and Mining Technology
Type
article
Field-Weighted Citation Impact
0.00

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article

Research on the time-varying mechanism of energy dissipation structure of overlying strata under the influence of mining height

郑家欣, Diego Maria Barbieri, Yuanjia Liu, Zechen Chang et al.
Results in Engineering
Geoscience and Mining Technology
article

Research on the time-varying mechanism of energy dissipation structure of overlying strata under the influence of mining height

郑家欣, Diego Maria Barbieri, Yuanjia Liu, Zechen Chang, Risheng Zhuo, Haifei Lin, Yu Shi, Weidong Lu, Pengxiang Zhao
article en

Abstract

ABSTRACT The mining-induced deformation and failure of overlying strata were investigated through numerical simulation, with Liuhuanggou Coal Mine selected as the case study. This research was carried out through simulation. The evolution trended of delamination amounts all present five stages: “rapid increase-decrease-continuous fluctuation-increase-rapid decrease”. The maximum order of the delamination amount at different coal seam mining heights was: 6 m > 4 m > 2 m. The fracture penetration degree generally shown a downward trend. Based on the experimental results, it was found that the mined-out area consists of the overburden compaction area, the gas migration area and the gas reservoir area through characteristic parameters. The energy structure in the overlying rock of the pressure relief gas transportation and storage area was defined based on the principle of minimum energy. The “half-moon” shape was established. The criterion for determining the fracture of the energy dissipation structure under the influence of the pile height had been derived. The drilling layout revealed that the middle layer gas drainage borehole had the best effect. The drilling layout was optimized. The methane plot ratio of optimized gas drainage boreholes increased from 3.1 % to 9.56 %, and the total gas drainage volume increased from 56.88 m 3 /min to 174.14 m 3 /min. The average gas volume fraction of the return airway, the upper corner and the working face was all less than 1%. The results of the study provided guidance for the drilling.

Results in Engineering
Xi'an University of Science and Technology (CN), OsloMet – Oslo Metropolitan University (NO), Lanzhou University of Technology (CN), Xinjiang Institute of Engineering (CN)
Natural Science Foundation of Xinjiang Province, National Natural Science Foundation of China, China Postdoctoral Science Foundation, Education Department of Shaanxi Province, Foundation for Innovative Research Groups of the National Natural Science Foundation of China, Natural Science Basic Research Program of Shaanxi Province
Affordable and clean energy
Openalex Percentile: Top 11%
Geoscience and Mining Technology
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