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基于库水位升降作用的库岸边坡土体劣化机制研究

陈星 刑喜旺 王瑞红 危灿 彭瑞 卢波

长沙理工大学学报(自然科学版)2025,Vol.22Issue(5):89-102,14.
长沙理工大学学报(自然科学版)2025,Vol.22Issue(5):89-102,14.DOI:10.19951/j.cnki.1672-9331.20250425001

基于库水位升降作用的库岸边坡土体劣化机制研究

Study on soil degradation mechanism of reservoir bank slope based on effect of reservoir water level rise and fall

陈星 1刑喜旺 1王瑞红 2危灿 2彭瑞 2卢波3

作者信息

  • 1. 中国长江三峡集团有限公司 流域枢纽运行管理中心,湖北 宜昌,443113
  • 2. 三峡大学 三峡库区地质灾害教育部重点实验室,湖北 宜昌,443000
  • 3. 长江科学院,湖北 武汉,430061
  • 折叠

摘要

Abstract

[Purposes]This paper aims to reveal the deterioration mechanism of the mechanical properties and microstructure of the soil on the bank slope of the Three Gorges Reservoir Area under the periodic variation of the reservoir water level and to provide a theoretical basis for the prevention and control of disasters on the bank slope of the reservoir.[Methods]The soil at different elevations(145 m,155 m,165 m,175 m,and 180 m)along the bank slope of the reservoir was selected for macroscopic mechanical tests and microscopic mineral analysis,and the deterioration areas of the subsidence zone were divided.By taking the soil in the area with the most severe deterioration as the research object,a"dry-saturated"dry-wet alternating periodic test of different times(1,2,3,5,and 8 times)was designed to simulate the dry-wet alternating environment of water level rise and fall in the reservoir.Finally,a macro-fine-micro multi-scale combined analysis method was adopted.[Findings]The soil deterioration in the landslide subsidence zone shows significant elevation differentiation.The fractal dimension increases by 3.6%,and the cohesion decreases by 16.7%in the range of[145,155)m,which is an enhanced deterioration area.In the range of[155,175]m,the fractal dimension decreases by 5.7%,and the cohesion increases by 50%,which belongs to the area of weakened deterioration.There is no deterioration above 175 m.Under the action of dry-wet cycles,the shear strength of the soil at an elevation of 155 m decays by 28.18%within the first five cycles,and the degree of soil erosion is 4.88%.Subsequently,it tends to be stable.Scanning electron microscopy(SEM)and nuclear magnetic resonance(NMR)tests indicate that moisture intrusion leads to an increase in the content of fine particles and an increase in the proportion of large pores.[Conclusions]The deterioration of the soil in the subsidence zone is affected by the variation of the reservoir water level.In the early stage of water storage,the scouring action causes the three-stage damage evolution of"fracture initiation,penetration,and disintegration"within the soil,promoting the transformation of the soil from dense to loose and multi-fractured.In the later stage of water storage,the soil at different elevations has different degrees of contact with the reservoir water,resulting in different degrees of water chemical reactions within the soil.The dissolution of minerals in the soil framework and the fragmentation and cementation of adherents,as well as the synergistic effect of mesoscopic pore network reconstruction and particle erosion fragmentation,are the essential causes of soil deterioration.

关键词

消落带土体/库水位升降/水土流失/细观结构/土体劣化

Key words

soil in subsidence zone/rise and fall of reservoir water level/soil erosion/mesoscopic structure/soil degradation

分类

建筑与水利

引用本文复制引用

陈星,刑喜旺,王瑞红,危灿,彭瑞,卢波..基于库水位升降作用的库岸边坡土体劣化机制研究[J].长沙理工大学学报(自然科学版),2025,22(5):89-102,14.

基金项目

国家自然科学基金面上项目(51979151) (51979151)

湖北省自然科学基金杰青项目(2021CFA090) (2021CFA090)

三峡枢纽近坝库岸滑坡涌浪风险识别及管控措施研究项目(0799291) Project(51979151)supported by National Natural Science Foundation of China (0799291)

Project(2021CFA090)supported by Hubei Provincial Natural Science Foundation (2021CFA090)

Project(0799291)supported by China Three Gorges Corporation (0799291)

长沙理工大学学报(自然科学版)

1672-9331

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