Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining

To improve the resources’ recovery ratio and the economic benefits of open-pit mines, the development of highwall mining is used to exploit residual coal. The design of rib pillar, formed by excavation and mining activities in intact coal seams, is crucial to the overall stability and safety of the...

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Main Authors: Rui Wang, Shuai Yan, Jianbiao Bai, Zhiguo Chang, Tianhao Zhao
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2019/6328702
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author Rui Wang
Shuai Yan
Jianbiao Bai
Zhiguo Chang
Tianhao Zhao
author_facet Rui Wang
Shuai Yan
Jianbiao Bai
Zhiguo Chang
Tianhao Zhao
author_sort Rui Wang
collection DOAJ
description To improve the resources’ recovery ratio and the economic benefits of open-pit mines, the development of highwall mining is used to exploit residual coal. The design of rib pillar, formed by excavation and mining activities in intact coal seams, is crucial to the overall stability and safety of the highwall mining operations. This paper focuses on the damage caused to rib pillars by the large deformation, occurring with the application of highwall mining in an open-pit in China. A mechanical model was established to investigate the damaged width of colinear rib pillars based on Hoek–Brown and Mohr–Coulomb failure criterion. The equations for calculating the damaged width of the rib pillar were obtained, respectively, by combining the Hoek–Brown failure criterion with the Mohr–Coulomb failure criterion. The failure mechanism for the width of the rib pillar and the factors affecting the colinear rib pillar were analyzed in detail. The results show that the application of the Hoek–Brown criterion has a unique advantage in analyzing the damaged width of the colinear rib pillars, in open-pit highwall mining. The instability mechanism and failure process of the rib pillars are described in combination with the limiting equilibrium method and the ratio of the elastic zone’s width to the width of the entire rib pillar.
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institution Kabale University
issn 1687-8086
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language English
publishDate 2019-01-01
publisher Wiley
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series Advances in Civil Engineering
spelling doaj-art-a078501946194d7ca30b8393b9e35f6e2025-02-03T01:31:40ZengWileyAdvances in Civil Engineering1687-80861687-80942019-01-01201910.1155/2019/63287026328702Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall MiningRui Wang0Shuai Yan1Jianbiao Bai2Zhiguo Chang3Tianhao Zhao4State Key Laboratory of Coal Resources & Safe Mining, China University of Mining & Technology, Xuzhou 221116, ChinaState Key Laboratory of Coal Resources & Safe Mining, China University of Mining & Technology, Xuzhou 221116, ChinaState Key Laboratory of Coal Resources & Safe Mining, China University of Mining & Technology, Xuzhou 221116, ChinaKey Laboratory of Deep Coal Resource Mining, School of Mines, China University of Mining & Technology, Xuzhou 221116, ChinaState Key Laboratory of Coal Resources & Safe Mining, China University of Mining & Technology, Xuzhou 221116, ChinaTo improve the resources’ recovery ratio and the economic benefits of open-pit mines, the development of highwall mining is used to exploit residual coal. The design of rib pillar, formed by excavation and mining activities in intact coal seams, is crucial to the overall stability and safety of the highwall mining operations. This paper focuses on the damage caused to rib pillars by the large deformation, occurring with the application of highwall mining in an open-pit in China. A mechanical model was established to investigate the damaged width of colinear rib pillars based on Hoek–Brown and Mohr–Coulomb failure criterion. The equations for calculating the damaged width of the rib pillar were obtained, respectively, by combining the Hoek–Brown failure criterion with the Mohr–Coulomb failure criterion. The failure mechanism for the width of the rib pillar and the factors affecting the colinear rib pillar were analyzed in detail. The results show that the application of the Hoek–Brown criterion has a unique advantage in analyzing the damaged width of the colinear rib pillars, in open-pit highwall mining. The instability mechanism and failure process of the rib pillars are described in combination with the limiting equilibrium method and the ratio of the elastic zone’s width to the width of the entire rib pillar.http://dx.doi.org/10.1155/2019/6328702
spellingShingle Rui Wang
Shuai Yan
Jianbiao Bai
Zhiguo Chang
Tianhao Zhao
Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
Advances in Civil Engineering
title Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
title_full Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
title_fullStr Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
title_full_unstemmed Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
title_short Theoretical Analysis of Damaged Width & Instability Mechanism of Rib Pillar in Open-Pit Highwall Mining
title_sort theoretical analysis of damaged width instability mechanism of rib pillar in open pit highwall mining
url http://dx.doi.org/10.1155/2019/6328702
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AT jianbiaobai theoreticalanalysisofdamagedwidthinstabilitymechanismofribpillarinopenpithighwallmining
AT zhiguochang theoreticalanalysisofdamagedwidthinstabilitymechanismofribpillarinopenpithighwallmining
AT tianhaozhao theoreticalanalysisofdamagedwidthinstabilitymechanismofribpillarinopenpithighwallmining