Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad

The water and soil loss in the hydro-fluctuation belt of the Three Gorges Reservoir has serious adverse effects on the navigation of channel,the stability of reservoir bank and the ecological environment.In view of the problems arisen,this paper proposes a new ecological restoration technology,the T...

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Main Authors: TANG Dingdan, FU Xuhui, WANG Shuo, SONG Yuanyuan, YANG Ming
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.1001-9235.2020.08.012
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author TANG Dingdan
FU Xuhui
WANG Shuo
SONG Yuanyuan
YANG Ming
author_facet TANG Dingdan
FU Xuhui
WANG Shuo
SONG Yuanyuan
YANG Ming
author_sort TANG Dingdan
collection DOAJ
description The water and soil loss in the hydro-fluctuation belt of the Three Gorges Reservoir has serious adverse effects on the navigation of channel,the stability of reservoir bank and the ecological environment.In view of the problems arisen,this paper proposes a new ecological restoration technology,the Tela anchor pad ecological restoration technology.As an emerging method of slope protection,the Tela anchor pad technology lacks experimental data support in terms of resistance to water erosion before vegetation growth.Therefore,the scouring model test for the slope protection of Tela anchor pad was carried out indoors.The test results show that when the water flow velocity is less than 1.7 m/s,the erosion intensity of the Tela anchor pad is reduced by 91.5% on average compared with the bare slope.
format Article
id doaj-art-f94e29bda0c542898bd2ca967b37d8a8
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-f94e29bda0c542898bd2ca967b37d8a82025-01-15T02:31:10ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352020-01-014147651646Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor PadTANG DingdanFU XuhuiWANG ShuoSONG YuanyuanYANG MingThe water and soil loss in the hydro-fluctuation belt of the Three Gorges Reservoir has serious adverse effects on the navigation of channel,the stability of reservoir bank and the ecological environment.In view of the problems arisen,this paper proposes a new ecological restoration technology,the Tela anchor pad ecological restoration technology.As an emerging method of slope protection,the Tela anchor pad technology lacks experimental data support in terms of resistance to water erosion before vegetation growth.Therefore,the scouring model test for the slope protection of Tela anchor pad was carried out indoors.The test results show that when the water flow velocity is less than 1.7 m/s,the erosion intensity of the Tela anchor pad is reduced by 91.5% on average compared with the bare slope.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.08.012hydro-fluctuation belt of reservoirTela anchor paderosion intensity
spellingShingle TANG Dingdan
FU Xuhui
WANG Shuo
SONG Yuanyuan
YANG Ming
Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
Renmin Zhujiang
hydro-fluctuation belt of reservoir
Tela anchor pad
erosion intensity
title Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
title_full Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
title_fullStr Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
title_full_unstemmed Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
title_short Study on Water Erosion Intensity of Soil Slop in Reservoirs under Protection of Tela Anchor Pad
title_sort study on water erosion intensity of soil slop in reservoirs under protection of tela anchor pad
topic hydro-fluctuation belt of reservoir
Tela anchor pad
erosion intensity
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.08.012
work_keys_str_mv AT tangdingdan studyonwatererosionintensityofsoilslopinreservoirsunderprotectionoftelaanchorpad
AT fuxuhui studyonwatererosionintensityofsoilslopinreservoirsunderprotectionoftelaanchorpad
AT wangshuo studyonwatererosionintensityofsoilslopinreservoirsunderprotectionoftelaanchorpad
AT songyuanyuan studyonwatererosionintensityofsoilslopinreservoirsunderprotectionoftelaanchorpad
AT yangming studyonwatererosionintensityofsoilslopinreservoirsunderprotectionoftelaanchorpad