人民长江2024,Vol.55Issue(3) :199-204,225.DOI:10.16232/j.cnki.1001-4179.2024.03.027

非均等固结条件下饱和软黏土体应变特性试验研究

Experimental investigation on volumetric strain of saturated soft clay under anisotropic consolidation

马锐 赵丁凤 王建宁
人民长江2024,Vol.55Issue(3) :199-204,225.DOI:10.16232/j.cnki.1001-4179.2024.03.027

非均等固结条件下饱和软黏土体应变特性试验研究

Experimental investigation on volumetric strain of saturated soft clay under anisotropic consolidation

马锐 1赵丁凤 2王建宁3
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作者信息

  • 1. 中船勘察设计研究院有限公司,上海 200063
  • 2. 中交上海航道勘察设计研究院有限公司,上海 200120
  • 3. 中国机械工业集团有限公司,北京 100080;清华大学 土木工程系,北京 100084
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摘要

研究土料的动力特性对土石坝抗震设计具有指导作用.以卢旺达某水电站心墙黏土为工程依托,开展了一系列复杂初始固结条件下循环排水三轴试验,研究了固结比Kc、有效围压σ'c和循环加载剪应变幅值γa对土体累积体应变εvd的影响.研究结果表明:小应变幅值循环加载条件下,εvd与γa线性相关,相同固结条件下εvd/γa发展均具有良好的一致性;σ'c与Kc对体应变的影响与土体结构性相关,σ'c与Kc越大,相同振次下体应变越小.另外,试验结果表明,Martin等提出的体变增量模型能较好地描述本试验中软黏土的体变发展.

Abstract

The study on dynamic characteristics of earth material has guiding meanings to seismic design of earth rock dams.In this study,aiming at clay core wall of an abroad hydropower station,a series of cyclic drainage triaxial tests on the soft clay under anisotropic consolidation was conducted.The effects of consolidation ratio Kc,effective confining pressure σc'and cyclic shear strain amplitude γa on soil volumetric deformation εvd were investigated.The results show that the εvd is linearly related to γa under cy-clic loading with small magnitude strain,and the development of εvd/γa under the same consolidation conditions are in good agree-ment.The influences from Kc,and σc'on the εvd is associated with the soil microstructure.The larger the σc'and Kc are,the smaller the εvd will be under the same vibration number.The test result demonstrates that the incremental volume variation model proposed by Martin adequately describes the volumetric deformation of the soft clay in this test.

关键词

土石坝/软黏土/固结比/有效围压/剪应变幅值/体应变

Key words

earth rockfill dam/soft clay/consolidation ratio/effective confining pressure/shear strain amplitude/volumetric strain

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基金项目

国机集团青年科技基金项目(QNJJ-PY-2022-02)

中国博士后科学基金项目(2022M720456)

出版年

2024
人民长江
水利部长江水利委员会

人民长江

CSTPCD北大核心
影响因子:0.451
ISSN:1001-4179
参考文献量21
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