Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China

The purpose of this work was to explore the influence law of vibration load on rock mass structure and slope stability. Based on the type and transmission way of vibration stress wave, the main stress in the horizontal and vertical directions was analyzed and the superposition effect of the stress w...

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Main Authors: Liu, Han, Ji-sen, S., Hanif, Noor Rosly, Wen-jia, X., Xin, L., Hong-wen, J., Li, M.
Format: Article
Published: Central South University 2015
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Online Access:http://eprints.um.edu.my/16469/
https://doi.org/10.1007/s11771-015-3033-5
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spelling my.um.eprints.164692020-02-20T03:45:23Z http://eprints.um.edu.my/16469/ Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China Liu, Han Ji-sen, S. Hanif, Noor Rosly Wen-jia, X. Xin, L. Hong-wen, J. Li, M. TA Engineering (General). Civil engineering (General) The purpose of this work was to explore the influence law of vibration load on rock mass structure and slope stability. Based on the type and transmission way of vibration stress wave, the main stress in the horizontal and vertical directions was analyzed and the superposition effect of the stress wave was revealed. After the mechanical analysis of the sliding mass, the calculation formulas of the anti-sliding force and the sliding force were derived and the damage mechanism of blasting vibration to the structural plane was defined. In addition, according to the structure and lithologic parameter of the slope as well as the vibration monitoring data, the west slope stability of Xiaolongtan open pit mine was analyzed. The results show that the time-dependent stability factor is proportional to the vibration speed and the peak values appear at the same time. Vibration load promotes the breakage of the structural plane leading to the drop of the west slope stability factor by 0.23%. Under the multipoint simultaneous blasting, the fluctuating laws of the stability factors are consistent. The more the start-up points are, the higher the weakening degree to the slope stability is. Under the multipoint allochronic blasting, the stability factor depends on the synthetic waveform structure of all vibration waves. The greater the blasting time difference is, the lower the weakening degree to the slope stability is. Selecting the reasonable quantity of start-up points and time difference could fully reduce the adverse influence of vibration load to slope stability. Central South University 2015 Article PeerReviewed Liu, Han and Ji-sen, S. and Hanif, Noor Rosly and Wen-jia, X. and Xin, L. and Hong-wen, J. and Li, M. (2015) Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China. Journal of Central South University , 22 (12). pp. 4819-4827. ISSN 2095-2899 https://doi.org/10.1007/s11771-015-3033-5 doi:10.1007/s11771-015-3033-5
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Liu, Han
Ji-sen, S.
Hanif, Noor Rosly
Wen-jia, X.
Xin, L.
Hong-wen, J.
Li, M.
Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
description The purpose of this work was to explore the influence law of vibration load on rock mass structure and slope stability. Based on the type and transmission way of vibration stress wave, the main stress in the horizontal and vertical directions was analyzed and the superposition effect of the stress wave was revealed. After the mechanical analysis of the sliding mass, the calculation formulas of the anti-sliding force and the sliding force were derived and the damage mechanism of blasting vibration to the structural plane was defined. In addition, according to the structure and lithologic parameter of the slope as well as the vibration monitoring data, the west slope stability of Xiaolongtan open pit mine was analyzed. The results show that the time-dependent stability factor is proportional to the vibration speed and the peak values appear at the same time. Vibration load promotes the breakage of the structural plane leading to the drop of the west slope stability factor by 0.23%. Under the multipoint simultaneous blasting, the fluctuating laws of the stability factors are consistent. The more the start-up points are, the higher the weakening degree to the slope stability is. Under the multipoint allochronic blasting, the stability factor depends on the synthetic waveform structure of all vibration waves. The greater the blasting time difference is, the lower the weakening degree to the slope stability is. Selecting the reasonable quantity of start-up points and time difference could fully reduce the adverse influence of vibration load to slope stability.
format Article
author Liu, Han
Ji-sen, S.
Hanif, Noor Rosly
Wen-jia, X.
Xin, L.
Hong-wen, J.
Li, M.
author_facet Liu, Han
Ji-sen, S.
Hanif, Noor Rosly
Wen-jia, X.
Xin, L.
Hong-wen, J.
Li, M.
author_sort Liu, Han
title Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
title_short Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
title_full Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
title_fullStr Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
title_full_unstemmed Influence law of multipoint vibration load on slope stability in Xiaolongtan open pit mine in Yunnan, China
title_sort influence law of multipoint vibration load on slope stability in xiaolongtan open pit mine in yunnan, china
publisher Central South University
publishDate 2015
url http://eprints.um.edu.my/16469/
https://doi.org/10.1007/s11771-015-3033-5
_version_ 1662755143961018368
score 13.214268