Comprehensive evaluation method of stope stability and its application in deep metal mine

Author:

Qi Zhaojun,Liu Huanxin,An Zhihai,Yin YantianORCID,Liu Zhen,Zhu Mingde,Wang Yunsen,Zhou HongORCID

Abstract

The problem of high stress conditions is a critical challenge for mining activity in deep metal mines, and the difficulty and economic cost of maintaining stope stability also increases. In order to ensure stope stability in the mining process, it is necessary to evaluate stope stability for a more stable stope structure. However, there are many kinds of methods for rock stability assessment, and most of them are based on empirical and analytical methods, which lead to uncertain results. In this paper, a comprehensive evaluation method including factors of stope stability, self-stabilization time, maximum safety span, and support measure is determined, which is more likely to provide a comprehensive result. Finally, it was verified by the field application in Jiaojia Gold Mine. Results show that it can accurately evaluate the stope stability from different aspects compared with the traditional single evaluation method, and it leads to a more comprehensive and reliable result.

Funder

National Key R&D Program of China

Fundamental Research Funds for the Central Universities

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference23 articles.

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2. Optimizing mining stope structural parameters using a FAHP;X Wang;Journal of China University of Mining & Technology,2010

3. Mathews K, Hoek E, Wyllie D, Steward S. Prediction of Stable Excavations for Mining at Depths below 1000 M in Hard Rock. CANMET report DSS Serial No. OSQ80–00081, DSS File No. 17SQ. 23440-0-9020. 1981.

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