Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China
In order to explore the effective support method for deep broken roadway, based on the in situ stress test results, the analytical and numerical solutions of the stress and the range of plastic failure zone (PFZ) in a circular roadway subjected to non-uniform loads were obtained using analytical and...
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doaj-55284179935a4590af7d05c31fee78c62021-09-05T20:50:51ZengDe GruyterOpen Geosciences2391-54472020-07-0112140642410.1515/geo-2020-0154geo-2020-0154Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, ChinaHuang Yaoguang0Zhao Aining1Zhang Tianjun2Guo Weibin3College of Sciences, Center for Post-Doctoral Studies in Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, Shaanxi, ChinaCollege of Sciences, Center for Post-Doctoral Studies in Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, Shaanxi, ChinaCollege of Sciences, Center for Post-Doctoral Studies in Safety Science and Engineering, Xi’an University of Science and Technology, Xi’an 710054, Shaanxi, ChinaCollege of Energy Engineering, Key Laboratory of Western Mine Exploitation and Hazard Prevention with Ministry of Education, Xi’an University of Science and Technology, Xi’an 710054, Shaanxi, ChinaIn order to explore the effective support method for deep broken roadway, based on the in situ stress test results, the analytical and numerical solutions of the stress and the range of plastic failure zone (PFZ) in a circular roadway subjected to non-uniform loads were obtained using analytical and finite difference numerical methods based on the elastoplastic theory, respectively. Their comparison results show that the analytical and numerical methods are correct and reasonable. Furthermore, the high geostress causes the stress and range of PFZ in roadway roof and floor to increase sharply while those in roadway ribs decrease. Moreover, the greater the difference of horizontal geostress in different horizontal directions is, the larger the range of PFZ in roadway roof and floor is. The shape of PFZ in roadway varies with the ratio of horizontal lateral pressure coefficient in x-direction and y-direction. Finally, according to the distribution characteristics of PFZ and range of PFZ under the non-uniformly high geostress, this paper has proposed a combined support scheme, and refined and optimized supporting parameters. The field monitoring results prove that the roadway deformation and fracture have been effectively controlled. The research results of this paper can provide theoretical foundation as well as technical reference for the stability control of deep broken roadway under non-uniformly high geostress.https://doi.org/10.1515/geo-2020-0154elastic–plastic analysisplastic failurenon-uniformly high geostressfault arearoadway support |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Huang Yaoguang Zhao Aining Zhang Tianjun Guo Weibin |
spellingShingle |
Huang Yaoguang Zhao Aining Zhang Tianjun Guo Weibin Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China Open Geosciences elastic–plastic analysis plastic failure non-uniformly high geostress fault area roadway support |
author_facet |
Huang Yaoguang Zhao Aining Zhang Tianjun Guo Weibin |
author_sort |
Huang Yaoguang |
title |
Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China |
title_short |
Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China |
title_full |
Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China |
title_fullStr |
Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China |
title_full_unstemmed |
Plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: A case study from Yuandian Coal Mine in Northern Anhui Province, China |
title_sort |
plastic failure zone characteristics and stability control technology of roadway in the fault area under non-uniformly high geostress: a case study from yuandian coal mine in northern anhui province, china |
publisher |
De Gruyter |
series |
Open Geosciences |
issn |
2391-5447 |
publishDate |
2020-07-01 |
description |
In order to explore the effective support method for deep broken roadway, based on the in situ stress test results, the analytical and numerical solutions of the stress and the range of plastic failure zone (PFZ) in a circular roadway subjected to non-uniform loads were obtained using analytical and finite difference numerical methods based on the elastoplastic theory, respectively. Their comparison results show that the analytical and numerical methods are correct and reasonable. Furthermore, the high geostress causes the stress and range of PFZ in roadway roof and floor to increase sharply while those in roadway ribs decrease. Moreover, the greater the difference of horizontal geostress in different horizontal directions is, the larger the range of PFZ in roadway roof and floor is. The shape of PFZ in roadway varies with the ratio of horizontal lateral pressure coefficient in x-direction and y-direction. Finally, according to the distribution characteristics of PFZ and range of PFZ under the non-uniformly high geostress, this paper has proposed a combined support scheme, and refined and optimized supporting parameters. The field monitoring results prove that the roadway deformation and fracture have been effectively controlled. The research results of this paper can provide theoretical foundation as well as technical reference for the stability control of deep broken roadway under non-uniformly high geostress. |
topic |
elastic–plastic analysis plastic failure non-uniformly high geostress fault area roadway support |
url |
https://doi.org/10.1515/geo-2020-0154 |
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