Coal pillar destabilization prediction and mining method in residual mining areas under remining disturbances

Author:

Wen Guang1ORCID,Gong Peilin1,Zhu Yanhui1,Yi Kang1,Li Peng2,Kang Hui1ORCID,Tian Ye3

Affiliation:

1. College of Mining Technology Taiyuan University of Technology Taiyuan Shanxi Province China

2. Department of Mining Engineering Shanxi Institute of Energy Jinzhong Shanxi Province China

3. State Key Laboratory of Coal Resources and Safe Mining, School of Mining Engineering China University of Mining and Technology Xuzhou Jiangsu Province China

Abstract

AbstractTo address the problem of pillar instability in residual mining areas under repeated mining disturbances, the prediction of pillar instability time and mining technology is studied by using numerical simulations, theoretical examinations, and practical experimentation techniques utilizing the remaining facade of the Shenghua Coal Industry 3103. On the basis of the findings, employing a fully mechanized mining technique exerts greater pressure on the coal pillar, increasing the likelihood of plastic failure. However, adopting the segmental filling mining approach can effectively disperse this pressure, consequently mitigating potential damage to the coal pillar. Initially, the coal pillar undergoes a progressive yielding or collapsing process at its periphery, leading to instability once the area of the projectile core of the coal pillar decreases beyond a specific threshold. The dimensions of both the affected roadway and the coal pillar play a pivotal role in determining the coal pillar's load‐bearing capacity. A prediction model for pillar instability is established. If the area of the projectile core is less than 34% during remining, the mining method should be changed or pillar reinforcement should be implemented. The accurate prediction and adaptation of the model's mining approach ensure the secure extraction of coal pillars within the remaining mining region, with successful validation of the model's performance.

Publisher

Wiley

Subject

General Energy,Safety, Risk, Reliability and Quality

Reference49 articles.

1. Current technological innovation and development direction of the 14th Five‐Year Plan period in China Coal Industry;Liu F;J China Coal Soc,2021

2. High-Quality Development of China's Coal Industry

3. Realization and engineering application of hydraulic support optimization in residual coal remining

4. Roof stability for repeated mining workface passing through abandoned parallel gateway;Liu C;J China Coal Soc,2015

5. Research on coal safety range and green low‐carbon technology path under the dual‐carbon back ground;Liu F;J China Coal Soc,2022

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