Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station

The time-dependent behavior of the left bank abutment slope at Jinping I hydropower station has a major influence on the normal operation and long-term safety of the hydropower station. To solve this problem, a geomechanical model containing various faults and weak structural planes is established,...

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Main Authors: Long Zhang, Qiang Yang, Yaoru Liu
Format: Article
Language:English
Published: Elsevier 2016-06-01
Series:Journal of Rock Mechanics and Geotechnical Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674775516300063
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spelling doaj-72e77e89126d48eab66659721ab6d0a82020-11-24T22:17:05ZengElsevierJournal of Rock Mechanics and Geotechnical Engineering1674-77552016-06-018339840410.1016/j.jrmge.2015.08.010Long-term stability analysis of the left bank abutment slope at Jinping I hydropower stationLong Zhang0Qiang Yang1Yaoru Liu2Beijing Urban Construction Design & Development Group Co., Ltd., Beijing, ChinaState Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing, ChinaState Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing, ChinaThe time-dependent behavior of the left bank abutment slope at Jinping I hydropower station has a major influence on the normal operation and long-term safety of the hydropower station. To solve this problem, a geomechanical model containing various faults and weak structural planes is established, and numerical simulation is conducted under normal water load condition using FLAC3D, incorporating creep model proposed based on thermodynamics with internal state variables theory. The creep deformations of the left bank abutment slope are obtained, and the changes of principal stresses and deformations of the dam body are analyzed. The long-term stability of the left bank abutment slope is evaluated according to the integral curves of energy dissipation rate in domain and its derivative with respect to time, and the non-equilibrium evolution rules and the characteristic time can also be determined using these curves. Numerical results show that the left bank abutment slope tends to be stable in a global sense, and the stress concentration is released. It is also indicated that more attention should be paid to some weak regions within the slope in the long-term deformation process.http://www.sciencedirect.com/science/article/pii/S1674775516300063Creep modelLong-term stabilityJinping I hydropower stationAbutment slope
collection DOAJ
language English
format Article
sources DOAJ
author Long Zhang
Qiang Yang
Yaoru Liu
spellingShingle Long Zhang
Qiang Yang
Yaoru Liu
Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
Journal of Rock Mechanics and Geotechnical Engineering
Creep model
Long-term stability
Jinping I hydropower station
Abutment slope
author_facet Long Zhang
Qiang Yang
Yaoru Liu
author_sort Long Zhang
title Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
title_short Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
title_full Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
title_fullStr Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
title_full_unstemmed Long-term stability analysis of the left bank abutment slope at Jinping I hydropower station
title_sort long-term stability analysis of the left bank abutment slope at jinping i hydropower station
publisher Elsevier
series Journal of Rock Mechanics and Geotechnical Engineering
issn 1674-7755
publishDate 2016-06-01
description The time-dependent behavior of the left bank abutment slope at Jinping I hydropower station has a major influence on the normal operation and long-term safety of the hydropower station. To solve this problem, a geomechanical model containing various faults and weak structural planes is established, and numerical simulation is conducted under normal water load condition using FLAC3D, incorporating creep model proposed based on thermodynamics with internal state variables theory. The creep deformations of the left bank abutment slope are obtained, and the changes of principal stresses and deformations of the dam body are analyzed. The long-term stability of the left bank abutment slope is evaluated according to the integral curves of energy dissipation rate in domain and its derivative with respect to time, and the non-equilibrium evolution rules and the characteristic time can also be determined using these curves. Numerical results show that the left bank abutment slope tends to be stable in a global sense, and the stress concentration is released. It is also indicated that more attention should be paid to some weak regions within the slope in the long-term deformation process.
topic Creep model
Long-term stability
Jinping I hydropower station
Abutment slope
url http://www.sciencedirect.com/science/article/pii/S1674775516300063
work_keys_str_mv AT longzhang longtermstabilityanalysisoftheleftbankabutmentslopeatjinpingihydropowerstation
AT qiangyang longtermstabilityanalysisoftheleftbankabutmentslopeatjinpingihydropowerstation
AT yaoruliu longtermstabilityanalysisoftheleftbankabutmentslopeatjinpingihydropowerstation
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