首页> 外文会议>International congress on environmental geotechnics >EXPERIMENTAL STUDY ON THE SELF-SEALING CAPABILITY OF SOIL-BENTONITE MIXTURE CUTOFF WALLS
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EXPERIMENTAL STUDY ON THE SELF-SEALING CAPABILITY OF SOIL-BENTONITE MIXTURE CUTOFF WALLS

机译:土基膨润土混合料防渗墙自密封性能的试验研究。

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Soil-bentonite mixture is a material used as containment barrier for contaminated soils due to its low hydraulic conductivity values, high deformability, and few surplus-soil discharges. In this study, laboratory-scale hydraulic conductivity tests were conducted with a flexible-wall permeameter, with emphasis on the self-sealing capability of soil-bentonite mixtures with hydraulic defects. In order to simulate cutoff walls with defects such as slip surface, specimens with a crack or hole were subjected to permeation. We found as a result that hydraulic conductivity values decreased with time due to the self-sealing capability of soil-bentonite mixture, regardless of the original hydraulic conductivity value of undamaged specimens. Since, after 4-day permeation, significant differences in the average hydraulic conductivity were not observed between samples with and without hydraulic defects, it was concluded that soil-bentonite mixtures can maintain a hydraulic barrier performance. It can be assumed that the self-recovery in hydraulic conductivity can be attributed to both the re-swelling of bentonite to permeant, and to the shrinkage of crack surface and holes due to the softness of soil-bentonite. Thus, the hydraulic conductivity of soil-bentonite cutoff walls can decrease with time even when hydraulic defects accidentally appear in the cutoff walls.
机译:土壤-膨润土混合物由于其低的水力传导率值,高的可变形性和很少的过剩土壤排泄物而被用作污染土壤的隔离屏障的材料。在这项研究中,实验室规模的水力传导率测试是使用挠性壁渗透仪进行的,重点是具有水力缺陷的土-膨润土混合物的自密封性能。为了模拟具有诸如滑动表面的缺陷的防渗墙,对具有裂缝或孔的样品进行渗透。结果我们发现,由于土-膨润土混合物的自密封性能,水力传导率值会随着时间的推移而降低,而与原始样品的水力传导率值无关。由于经过4天的渗透,没有水力缺陷和没有水力缺陷的样品之间均未观察到平均水力传导率的显着差异,因此得出结论,土-膨润土混合物可以保持水力屏障性能。可以认为,水力传导率的自我恢复既可以归因于膨润土的再溶胀到渗透物,又归因于膨润土由于土壤膨润土的柔软性而收缩。因此,即使在防渗墙中偶然出现水力缺陷,土壤-膨润土防渗墙的水力传导率也会随着时间而降低。

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