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Vertical drainage capacity of new electrical drainage board on improvement of super soft clayey ground 被引量:1
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作者 沈扬 励彦德 +2 位作者 黄文君 徐海东 胡品飞 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4027-4034,共8页
As an advanced polymer composites electro-kinetic geosynthetics, the electro-osmotic vertical drainage(EVD) board could drain water quickly and accelerate consolidation process. However, the drainage rate was mainly i... As an advanced polymer composites electro-kinetic geosynthetics, the electro-osmotic vertical drainage(EVD) board could drain water quickly and accelerate consolidation process. However, the drainage rate was mainly impacted by the vertical drainage capability. Therefore, vertical drainage capability at the top of EVD board was theoretically analyzed. Basic requirements for drainage at the top of the board were summed up, as well as the formula of anode pore pressure when losing the vertical drainage capability. Meanwhile, a contrast test on the top and bottom drainage capacities was conducted. In use of the advanced EVD board, the voltage potential and pore pressure of anode were measured. Moreover, the derived formulas were verified. The result shows that the decrease of electric force gradient had an observable impact on the drainage capability. There was nearly no difference between the energy consumption for the two drainage methods. Although a little less water was discharged, the top drainage method had more advantages, such as high initial drainage velocity, few soil cracks, low anode water content and high soil strength. All of these show that the super soft soil ground could be consolidated quickly in use of the advanced EVD board through the top drainage. The top drainage method could efficiently improve the drainage effect, decrease the energy consumption and speed up the project proceeding. 展开更多
关键词 electro-osmotic vertical drainage(EVD) board vertical drainage capacity potential gradient pore pressure around anode
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EKG用于排水加固细粒尾矿的试验研究 被引量:1
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作者 易富 余忠银 杜常博 《实验力学》 CSCD 北大核心 2020年第4期712-718,共7页
针对尾矿干式堆存后期尾矿坝受到外来水及内部孔隙水侵害的问题,采用电动土工合成材料(EKG)对非饱和细粒尾矿砂进行室内脱水试验,研究EKG对非饱和尾矿砂含水率、沉降量和抗剪强度的影响以及电化学作用。研究表明:随着阴极电渗水不断排出... 针对尾矿干式堆存后期尾矿坝受到外来水及内部孔隙水侵害的问题,采用电动土工合成材料(EKG)对非饱和细粒尾矿砂进行室内脱水试验,研究EKG对非饱和尾矿砂含水率、沉降量和抗剪强度的影响以及电化学作用。研究表明:随着阴极电渗水不断排出,基质吸力增大,产生颗粒表面黏聚力,导致有效应力增加,从而土体强度增大;电流呈现出先短暂增加,随后按照负指数的规律衰减;电势在土体电阻增大的作用下发生降低,且在阳极附近电势降特征显著;末期电渗作用受界面电阻抑制,排水速率缓慢。EKG室内脱水试验后的尾矿砂含水率降低,抗剪强度提高,表现出较好的加固效果。 展开更多
关键词 电土工合成材料 细粒尾矿 脱水试验 含水率 抗剪强度
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