- 1、有哪些信誉好的足球投注网站(book118)网站文档一经付费(服务费),不意味着购买了该文档的版权,仅供个人/单位学习、研究之用,不得用于商业用途,未经授权,严禁复制、发行、汇编、翻译或者网络传播等,侵权必究。。
- 2、本站所有内容均由合作方或网友上传,本站不对文档的完整性、权威性及其观点立场正确性做任何保证或承诺!文档内容仅供研究参考,付费前请自行鉴别。如您付费,意味着您自己接受本站规则且自行承担风险,本站不退款、不进行额外附加服务;查看《如何避免下载的几个坑》。如果您已付费下载过本站文档,您可以点击 这里二次下载。
- 3、如文档侵犯商业秘密、侵犯著作权、侵犯人身权等,请点击“版权申诉”(推荐),也可以打举报电话:400-050-0827(电话支持时间:9:00-18:30)。
查看更多
丁智等:不同固结度冻融软土动载下孔压模型试验研究文章编号:由
文章编号: DOI:(由编辑部填写) 不同固结度冻融软土载下孔压模型 丁 智1,1,,1 (1.浙江大学城市学院,土木工程系,浙江 杭州,310015;, 长,) 摘要:以冻结温度和融土初始固结度为影响因素,通过室内动三轴试验对地铁循环荷载作用下冻融软土的孔压发展规律进行研究。结合试验数据,建立了考虑冻结温度和融土初始固结度的影响因素的冻融土动孔压累积试验模型。研究表明冻融作用改变土体内部颗粒联结形式和孔隙结构,导致在循环荷载作用下冻融土动孔压累积速率加快;冻结温度越低,冻融土孔压发展速率越,且在振动后期的稳定孔压值越;融土初始固结度对孔压发展有影响,初始固结度越高,孔压发展越缓慢,且稳定值越;低温冻结和低初始固结度的耦合作用加剧了冻融土孔压的累积,使其结构呈现进一步软化。 关键词:循环荷载;冻融循环;冻结温度;固结度;孔压模型 中图分类号: 文献标识码: Experimental Study on the Dynamic Pore Pressure Model of Frozen-thawed Soft Clay for Different Degree of Consolidation Under Dynamic L oading DING Zhi1,WEI Xin-jiang1,ZHANG Meng-ya2, KONG Bo-wen1 (1.Department of Civil Engineering, Zhejiang University City College, Hangzhou 310015, China ; 2.China Power Engineering Consulting Group Northeast Electric Power Design Institute Co., Ltd,Changchun 130021,China) In this paper, the dynamic properties of frozen-thawed soil under metro loading were studied by dynamic triaxial test, and then obtained the development law of dynamic pore pressure. According experimental data, this paper established a model of dynamic pore pressure which considers the freezing temperature and the initial consolidation. The study shows that: the freeze-thaw circulation could change the internal particle connection and pore structure of soil. Because of that, the dynamic pore water pressure accumulation rate of the frozen-thawed soil became faster under cyclic loading. And the lower the freezing temperature, the faster the pore pressure develops and the higher the stable pore pressure after vibrated. The impact of initial consolidation of thawing soil on the pore pressure development should be considered at the same time. The higher the initial consolidation, the slower the development of pore water pressure and the lower the stable pore pressure. The coupling effect of low temperature and low initial consolidation degree exacerbated the accumulation of pore pressure of frozen-thawed so
文档评论(0)