Design Method and Application of Stope Structure Parameters in Deep Metal Mines Based on an Improved Stability Graph

Author:

Zhao Xingdong,Zhou XinORCID

Abstract

Deep mining has become an inevitable trend of mining development. Previously conducted studies have established that reasonable stope structure parameters are the premise to ensure the safe and efficient production of deep mines. In order to ensure the safety of deep mining, in this paper, we systematically review the existing stope structure parameter design methods, and then put forward a deep stope structure design method based on the stability of mining rock mass. Based on rock mass quality classification, this method uses a critical span graph and an improved stability graph, and fully considers the influence of joint occurrence and mining stress on the stability of surrounding rock, to design the stope structural parameters. Taking into consideration the deterioration of the quality of deep rock mass, we collect mining data at home and abroad, improve the stability graph, and make it suitable for the design of stope structural parameters with different mining methods. The design process of stope structural parameters is expounded through field engineering cases, and it has specific guiding significance for the design of stope structural parameters in deep metal mines.

Funder

National Natural Science Foundation-Shandong Jointed Fundation of China

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

Reference27 articles.

1. Research and development of rock mechanics in deep ground engineering;Xie;Chin. J. Rock Mech. Eng.,2015

2. Review and exploration on the exploitation of deep solid resources;Li;Chin. J. Nonferrous Met.,2017

3. Research status and progress of prevention and control of mining disasters in deep metal mines;Zhao;J. Cent. South Univ.,2021

4. Qiu, H.-Y., Huang, M.-Q., and Weng, Y.-J. (2022). Stability Evaluation and Structural Parameters Optimization of Stope Based on Area Bearing Theory. Minerals, 12.

5. Optimization of stope structural parameters based on mathews stability graph probability model;Zhang;Adv. Civ. Eng.,2018

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