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Laboratory tests of electro-osmotic consolidation combined with vacuum preloading on kaolinite using electrokinetic geosynthetics

机译:电动土工合成材料在高岭石上进行电渗固结和真空预加载的实验室测试

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摘要

Laboratory tests were conducted on kaolinite to investigate the effectiveness of electro-osmotic consolidation combined with vacuum preloading using electrokinetic geosynthetics (EKG). The results showed that the combined method could remove more water and induce larger surface ground settlements compared with the traditional vacuum preloading or electro-osmotic consolidation. Vacuum preloading was quite effective during the first 4 h, though the electro-osmotic consolidation took a main role in dewatering process after 9 h. The combined method could also hinder the development of cracks, induce higher negative pore water pressure and hence increase the efficiency of electro-osmotic consolidation. The results showed that deep electro-osmotic consolidation technique combined with vacuum preloading could result in significant water removal efficiency along with shorter electrode length. Furthermore, both electro-osmotic consolidation and the combined method could consolidate the soil efficiently with low energy consumption.
机译:在高岭石上进行了实验室测试,以研究电渗透固结结合使用电动土工合成材料(EKG)进行真空预加载的有效性。结果表明,与传统的真空预压或电渗固结法相比,组合法可以去除更多的水并引起更大的地面沉降。真空预压在开始的4小时内非常有效,尽管电渗合并在9小时后的脱水过程中起了主要作用。组合方法还可能阻碍裂纹的发展,引起较高的负孔隙水压,从而提高电渗固结的效率。结果表明,深层电渗固结技术与真空预加载相结合可以显着提高除水效率,同时缩短电极长度。此外,电渗固结和组合方法都可以以低能耗有效地固结土壤。

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