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海堤闭气土方加速固结应用技术研究 被引量:3
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作者 胡明华 俞炯奇 《浙江水利科技》 2008年第3期19-21,共3页
围垦工程中的海堤是直接建造在海涂上的土石坝,一般在外海侧抛填石方挡潮,在内坡侧填筑闭气土方防渗,闭气土方直接取自海堤附近的浅层淤泥质黏土,由于这种海涂泥含水率高,土性极差,使得土方填筑形成的内侧土坡较平缓,工程量很大,严重影... 围垦工程中的海堤是直接建造在海涂上的土石坝,一般在外海侧抛填石方挡潮,在内坡侧填筑闭气土方防渗,闭气土方直接取自海堤附近的浅层淤泥质黏土,由于这种海涂泥含水率高,土性极差,使得土方填筑形成的内侧土坡较平缓,工程量很大,严重影响着围垦工程施工进度。结合浙东沿海围垦工程实际,通过3a多的现场连续测试和大量的室内试验,提出了加速海涂淤泥质黏土固结的措施和方法。 展开更多
关键词 海堤 闭气土方 加速固结
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High-Speed Ring Shear Tests to Study the Motion and Acceleration Processes of the Yingong Landslide 被引量:9
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作者 HU Ming-jian Pan Hua-li +1 位作者 Zhu Chang-qi Wang Fa-wu 《Journal of Mountain Science》 SCIE CSCD 2015年第6期1534-1541,共8页
In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong R... In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong River in Bomi, Tibet on April 9, 2000 as the background. According to the motion characteristics of high-speed and long distance motion landside, the mechanism is studied under different conditions such as shear speed, consolidated drained and consolidated undrained status. Results show that high speed shearing process hinders and delays the dissipation of pore pressure, and drives pore water migrating to shear zone slowly. Both of water content and fine particle content at shear zone are obviously higher than those in other layers; and soil liquefaction occurs at shear zone in the saturated consolidated undrained ring shear tests. The effective internal friction angle of the consolidated undrained soil is much lower than that of the consolidated drained soil under ring shearing. The results also indicate that the shearing speed affecting the strength of soil to some extent. The higher the ring shearing speed is, the lower the strength of soil is. This investigation provides a preliminary interpretation of the mechanism of the motion and acceleration process of the Yigong landslide, occurred in Tibet in 2000. 展开更多
关键词 Yigong landslide Ring shear tests Shear zone Liquefaction Strength
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