Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall
Reservoir drawdown and rainfall have important influence on bank landslides, but existing research on these two factors is too idealistic. A new reservoir drawdown model was proposed for the rapid drawdown stage based on the consideration of reduction, navigation and power generation. A rainfall mod...
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doaj-1674a89e317a4be3b3a5878c9c77b7f92021-07-07T11:33:19ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012760100310.1051/e3sconf/202127601003e3sconf_wchbe2021_01003Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfallLiu Yi0Zhao Binbin1Liu Bin2Kong Xiaoang3Yang Zhi4China Electric Power Research Institute Co., Ltd.China Electric Power Research Institute Co., Ltd.China Electric Power Research Institute Co., Ltd.China Electric Power Research Institute Co., Ltd.China Electric Power Research Institute Co., Ltd.Reservoir drawdown and rainfall have important influence on bank landslides, but existing research on these two factors is too idealistic. A new reservoir drawdown model was proposed for the rapid drawdown stage based on the consideration of reduction, navigation and power generation. A rainfall model was proposed considering actural rainfall and rainfall time based on fifty years of daily rainfall data. At last, taking Baishuihe landslide as an example, the landslide stability was analyzed under the combined influenced of rainfall and reservoir drawdown. Results show that the Baishuihe landslide is mainly influenced by reservoir drawdown. The terminal reservoir drawdown model can reduce the effect of continuous decline of reservoir on landslide and the stability decreases about 0.7%~1.2% compared with normal scenario. The reservoir drawdown model proposed in this paper is of significance to the reservoir operation in the Three Gorges Reservoir.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/52/e3sconf_wchbe2021_01003.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Liu Yi Zhao Binbin Liu Bin Kong Xiaoang Yang Zhi |
spellingShingle |
Liu Yi Zhao Binbin Liu Bin Kong Xiaoang Yang Zhi Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall E3S Web of Conferences |
author_facet |
Liu Yi Zhao Binbin Liu Bin Kong Xiaoang Yang Zhi |
author_sort |
Liu Yi |
title |
Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall |
title_short |
Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall |
title_full |
Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall |
title_fullStr |
Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall |
title_full_unstemmed |
Stability analysis of Baishuihe landslide under the combined effect of reservoir and rainfall |
title_sort |
stability analysis of baishuihe landslide under the combined effect of reservoir and rainfall |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2021-01-01 |
description |
Reservoir drawdown and rainfall have important influence on bank landslides, but existing research on these two factors is too idealistic. A new reservoir drawdown model was proposed for the rapid drawdown stage based on the consideration of reduction, navigation and power generation. A rainfall model was proposed considering actural rainfall and rainfall time based on fifty years of daily rainfall data. At last, taking Baishuihe landslide as an example, the landslide stability was analyzed under the combined influenced of rainfall and reservoir drawdown. Results show that the Baishuihe landslide is mainly influenced by reservoir drawdown. The terminal reservoir drawdown model can reduce the effect of continuous decline of reservoir on landslide and the stability decreases about 0.7%~1.2% compared with normal scenario. The reservoir drawdown model proposed in this paper is of significance to the reservoir operation in the Three Gorges Reservoir. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/52/e3sconf_wchbe2021_01003.pdf |
work_keys_str_mv |
AT liuyi stabilityanalysisofbaishuihelandslideunderthecombinedeffectofreservoirandrainfall AT zhaobinbin stabilityanalysisofbaishuihelandslideunderthecombinedeffectofreservoirandrainfall AT liubin stabilityanalysisofbaishuihelandslideunderthecombinedeffectofreservoirandrainfall AT kongxiaoang stabilityanalysisofbaishuihelandslideunderthecombinedeffectofreservoirandrainfall AT yangzhi stabilityanalysisofbaishuihelandslideunderthecombinedeffectofreservoirandrainfall |
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1721316120616501248 |