Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level

In order to study the influence mechanism and law of seepage-stress coupling and thefluctuation of reservoir level on slope stability of small and medium homogeneous earth-rock dams,according to the principle of unsaturated seepage and the simplified Bishop method of rigid bodylimit equilibrium theo...

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Main Authors: SU Zhengyang, ZHANG Zhitao, LI Hanzhang
Format: Article
Language:zho
Published: Editorial Office of Pearl River 2020-01-01
Series:Renmin Zhujiang
Subjects:
Online Access:http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.04.014
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author SU Zhengyang
ZHANG Zhitao
LI Hanzhang
author_facet SU Zhengyang
ZHANG Zhitao
LI Hanzhang
author_sort SU Zhengyang
collection DOAJ
description In order to study the influence mechanism and law of seepage-stress coupling and thefluctuation of reservoir level on slope stability of small and medium homogeneous earth-rock dams,according to the principle of unsaturated seepage and the simplified Bishop method of rigid bodylimit equilibrium theory, this paper carries out the finite element simulation of seepage andstability of upstream and downstream slopes of homogeneous earth-rock dam under the conditions ofseepage-stress coupling, and sudden rise and sudden drop of reservoir level. The results showthat: Based on the effect of seepage stress coupling, when the reservoir level rises sharply,the safety factor of the upstream dam slope firstly increases rapidly, then slowly, and finallyremains stable, while that of downstream dam slope firstly decreases, then slowly increases, andfinally tends to be stable; When the reservoir level drops sharply, the safety factor ofupstream dam slope firstly decreases rapidly, then slowly, and finally remains stable, while thatof the downstream dam slope firstly increases constantly, then slowly decreases, and finally tends to be stable; In the process of sudden rise and sudden drop of water level, the safety factorof upstream and downstream dam slopes is greater than the minimum safety factor stipulated by thecode, and their anti-sliding stability meets the requirements of the code. The research resultsprovide a reference for risk assessment of small and medium earth-rock dams and danger eliminationand reinforcement measures for reservoir dams in the later stage.
format Article
id doaj-art-f176d0b46b564ebca736edcc9cc9389b
institution Kabale University
issn 1001-9235
language zho
publishDate 2020-01-01
publisher Editorial Office of Pearl River
record_format Article
series Renmin Zhujiang
spelling doaj-art-f176d0b46b564ebca736edcc9cc9389b2025-01-15T02:31:46ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352020-01-014147652440Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir LevelSU ZhengyangZHANG ZhitaoLI HanzhangIn order to study the influence mechanism and law of seepage-stress coupling and thefluctuation of reservoir level on slope stability of small and medium homogeneous earth-rock dams,according to the principle of unsaturated seepage and the simplified Bishop method of rigid bodylimit equilibrium theory, this paper carries out the finite element simulation of seepage andstability of upstream and downstream slopes of homogeneous earth-rock dam under the conditions ofseepage-stress coupling, and sudden rise and sudden drop of reservoir level. The results showthat: Based on the effect of seepage stress coupling, when the reservoir level rises sharply,the safety factor of the upstream dam slope firstly increases rapidly, then slowly, and finallyremains stable, while that of downstream dam slope firstly decreases, then slowly increases, andfinally tends to be stable; When the reservoir level drops sharply, the safety factor ofupstream dam slope firstly decreases rapidly, then slowly, and finally remains stable, while thatof the downstream dam slope firstly increases constantly, then slowly decreases, and finally tends to be stable; In the process of sudden rise and sudden drop of water level, the safety factorof upstream and downstream dam slopes is greater than the minimum safety factor stipulated by thecode, and their anti-sliding stability meets the requirements of the code. The research resultsprovide a reference for risk assessment of small and medium earth-rock dams and danger eliminationand reinforcement measures for reservoir dams in the later stage.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.04.014earth-rock damwater level fluctuationsafety factorcoupling analysis
spellingShingle SU Zhengyang
ZHANG Zhitao
LI Hanzhang
Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
Renmin Zhujiang
earth-rock dam
water level fluctuation
safety factor
coupling analysis
title Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
title_full Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
title_fullStr Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
title_full_unstemmed Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
title_short Analysis of Slope Stability of Small and Medium Earth-rock Dams underSeepage-stress Coupling and Fluctuation of Reservoir Level
title_sort analysis of slope stability of small and medium earth rock dams underseepage stress coupling and fluctuation of reservoir level
topic earth-rock dam
water level fluctuation
safety factor
coupling analysis
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.04.014
work_keys_str_mv AT suzhengyang analysisofslopestabilityofsmallandmediumearthrockdamsunderseepagestresscouplingandfluctuationofreservoirlevel
AT zhangzhitao analysisofslopestabilityofsmallandmediumearthrockdamsunderseepagestresscouplingandfluctuationofreservoirlevel
AT lihanzhang analysisofslopestabilityofsmallandmediumearthrockdamsunderseepagestresscouplingandfluctuationofreservoirlevel