Surrounding Rock Movement of Steeply Dipping Coal Seam Using Backfill Mining

Author:

Lv Wenyu12ORCID,Guo Kai1ORCID,Yu Jianhao3ORCID,Du Xufeng1ORCID,Feng Kun4ORCID

Affiliation:

1. School of Energy Engineering, Xi’an University of Science and Technology, Xi’an 710054, China

2. Henan Key Laboratory for Green and Efficient Mining & Comprehensive Utilization of Mineral Resources, Henan Polytechnic University, Jiaozuo 454000, China

3. Institute of Mining Technology, China Coal Mining Research Institute Co., Ltd., Beijing 100013, China

4. Shandong Mining Machinery Huaneng Equipment Manufacturing Co., Ltd., Weifang 261000, China

Abstract

The movement of the overlying strata in steeply dipping coal seams is complex, and the deformation of roof rock beam is obvious. In general, the backfill mining method can improve the stability of the surrounding rock effectively. In this study, the 645 working face of the tested mine is used as a prototype to establish the mechanical model of the inclined roof beam using the sloping flexible shield support backfilling method in a steeply dipping coal seam, and the deflection equation is derived to obtain the roof damage structure and the maximum deflection position of the roof beam. Finally, numerical simulation and physical similarity simulation experiments are carried out to study the stability of the surrounding rock structure under backfilling mining in steeply dipping coal seams. The results show the following: (1) With the support of the gangue filling body, the inclined roof beam has smaller roof subsidence, and the maximum deflection position moves to the upper part of working face. (2) With the increase of the stope height, the stress and displacement field of the surrounding rock using the backfilling method show an asymmetrical distribution, the movement, deformation, and failure increase slowly, and the increase of the strain is relatively stable. Compared with the caving method, the range and degree of the surrounding rock disturbed by the mining stress are lower. The results of numerical simulation and physical similarity simulation experiment are generally consistent with the theoretically derived results. Overall, this study can provide theoretical basis for the safe and efficient production of steeply dipping coal seams.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering

Reference25 articles.

1. Progress practice and scientific issues in steeply dipping coal seams fully-mechanized mining;Y. P. Wu;Journal of China Coal Society,2020

2. Stability analysis of support around the longwall top-coal caving mining in steeply thick coal seam;J. C. Wang;Journal of China Coal Society,2017

3. Mechanism of rock burst in steep and extremely thick coal seam using horizontal section top-coal caving;J. He;Journal of China Coal Society,2020

4. Mining plan simulation and rock migration analysis in steep seam mining;G. Han;Journal of Mining & Safety Engineering,2016

5. Hydraulic support instability mechanism and its control in a fully-mechanized steep coal seam working face with large mining height

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