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Laboratory Model Test on Improving the Properties of Soft Clay by Electrokinetics

机译:通过电动动力学改善软粘土性能的实验室模型测试

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This experimental study was carried out in two test series to investigate the feasibility of decreasing the water content and increasing the shear strength and axial load capacity of laboratory-prepared soft clay by electrokinetic treatment. The focus of the investigations is the influence of pore fluid chemistry (fresh or highly saline water) on the gained improvement and on the energy consumption. The results showed that electrokinetics was effective in improving the properties of the soft clay with fresh and saline water. The degree of improvement, however, was superior in tests with freshwaters along with a lower energy consumption. The minimum water content and the maximum shear strength after the treatment were reported near the anode (28% ± 3.6 and 99.3 kPa ± 15.4 compared to 49.7% ± 3.1 and 12.1 kPa ± 1.7 in the control). The maximum axial load capacity of the foundation model after the treatment was 416 N compared to 28 N in the control. The energy consumption varied between 69.1 and 1994.6 Whr.
机译:这项实验研究分为两个测试系列进行,以探讨通过电动处理降低实验室制备的软粘土的含水量以及提高其抗剪强度和轴向载荷能力的可行性。研究的重点是孔隙流体化学性质(新鲜或高盐度的水)对所获得的改进和能耗的影响。结果表明,电动势可以有效地改善淡水和盐水对软粘土的性能。但是,改进程度在淡水测试中表现出色,并且能耗更低。据报道处理后的最小水含量和最大剪切强度在阳极附近(28%±3.6和99.3 kPa±15.4,而对照中为49.7%±3.1和12.1 kPa±1.7)。处理后的基础模型的最大轴向承载能力为416 N,而对照组为28N。能耗在69.1和1994.6 Whr之间变化。

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