Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China

Coal mines in the western areas of China experience low mining rates and induce many geohazards when using the room and pillar mining method. In this research, we proposed a roadway backfill method during longwall mining to target these problems. We tested the mechanical properties of the backfill m...

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Main Authors: N. Zhou, M. Li, J. Zhang, R. Gao
Format: Article
Language:English
Published: Copernicus Publications 2016-11-01
Series:Natural Hazards and Earth System Sciences
Online Access:http://www.nat-hazards-earth-syst-sci.net/16/2473/2016/nhess-16-2473-2016.pdf
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spelling doaj-f44a3662ed2d42ff83f034188ff35ab32020-11-24T21:17:56ZengCopernicus PublicationsNatural Hazards and Earth System Sciences1561-86331684-99812016-11-0116122473248410.5194/nhess-16-2473-2016Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, ChinaN. Zhou0M. Li1J. Zhang2R. Gao3Key Laboratory of Deep Coal Resource Mining, School of Mines, Ministry of Education of China, China University of Mining and Technology, Xuzhou 221116, ChinaKey Laboratory of Deep Coal Resource Mining, School of Mines, Ministry of Education of China, China University of Mining and Technology, Xuzhou 221116, ChinaKey Laboratory of Deep Coal Resource Mining, School of Mines, Ministry of Education of China, China University of Mining and Technology, Xuzhou 221116, ChinaKey Laboratory of Deep Coal Resource Mining, School of Mines, Ministry of Education of China, China University of Mining and Technology, Xuzhou 221116, ChinaCoal mines in the western areas of China experience low mining rates and induce many geohazards when using the room and pillar mining method. In this research, we proposed a roadway backfill method during longwall mining to target these problems. We tested the mechanical properties of the backfill materials to determine a reasonable ratio of backfill materials for the driving roadway during longwall mining. We also introduced the roadway layout and the backfill mining technique required for this method. Based on the effects of the abutment stress from a single roadway driving task, we designed the distance between roadways and a driving and filling sequence for multiple-roadway driving. By doing so, we found the movement characteristics of the strata with quadratic stabilization for backfill mining during roadway driving. Based on this research, the driving and filling sequence of the 3101 working face in Changxing coal mine was optimized to avoid the superimposed influence of mining-induced stress. According to the analysis of the surface monitoring data, the accumulated maximum subsidence is 15 mm and the maximum horizontal deformation is 0.8 mm m<sup>−1</sup>, which indicated that the ground basically had no obvious deformation after the implementation of the roadway backfill method at 3101 working face.http://www.nat-hazards-earth-syst-sci.net/16/2473/2016/nhess-16-2473-2016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author N. Zhou
M. Li
J. Zhang
R. Gao
spellingShingle N. Zhou
M. Li
J. Zhang
R. Gao
Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
Natural Hazards and Earth System Sciences
author_facet N. Zhou
M. Li
J. Zhang
R. Gao
author_sort N. Zhou
title Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
title_short Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
title_full Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
title_fullStr Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
title_full_unstemmed Roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in Changxing coal mine, China
title_sort roadway backfill method to prevent geohazards induced by room and pillar mining: a case study in changxing coal mine, china
publisher Copernicus Publications
series Natural Hazards and Earth System Sciences
issn 1561-8633
1684-9981
publishDate 2016-11-01
description Coal mines in the western areas of China experience low mining rates and induce many geohazards when using the room and pillar mining method. In this research, we proposed a roadway backfill method during longwall mining to target these problems. We tested the mechanical properties of the backfill materials to determine a reasonable ratio of backfill materials for the driving roadway during longwall mining. We also introduced the roadway layout and the backfill mining technique required for this method. Based on the effects of the abutment stress from a single roadway driving task, we designed the distance between roadways and a driving and filling sequence for multiple-roadway driving. By doing so, we found the movement characteristics of the strata with quadratic stabilization for backfill mining during roadway driving. Based on this research, the driving and filling sequence of the 3101 working face in Changxing coal mine was optimized to avoid the superimposed influence of mining-induced stress. According to the analysis of the surface monitoring data, the accumulated maximum subsidence is 15 mm and the maximum horizontal deformation is 0.8 mm m<sup>−1</sup>, which indicated that the ground basically had no obvious deformation after the implementation of the roadway backfill method at 3101 working face.
url http://www.nat-hazards-earth-syst-sci.net/16/2473/2016/nhess-16-2473-2016.pdf
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