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Hydraulic Conductivity Determination of Compacted Sand-Bentonite Mixture Using Filter Press

机译:用压滤机测定压实的砂土和膨润土混合物的水导率

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This paper presents a method to adapt a measurement in order to enhance its exploitation time and provide a suitable comparison with standard permeability tests. The filter press apparatus used for the fluid loss test (FLT) was selected to elaborate a hydraulic performance method, which is used for compacted sand-bentonite mixtures. An analytical method was developed for hydraulic conductivity determination. Material and test parameters (hydraulic pressure P_0, hydraulic gradient i, hydraulic conductivity k_0, and a coefficient) were highlighted. Series of experiments were performed with a filter press and rigid wall permeameter (RWP). The hydraulic study was performed on samples composed of soil with 2 %, 3.5 %, and 5 % of an activated Ca-bentonite permeated with a weakly 1×10~(-3) M NaCl. An improved FLT (IFLT) leads to a differentiation of the effect of clay concentration on hydraulic conductivity, but it is not suitable enough to estimate the hydraulic conductivity value as the RWP. Direct test comparisons between RWP and IFLT show hydraulic conductivity values of the same order of magnitude. Sample compaction is known to reduce the void ratio variation. However, thickness variation may occur during testing due to a combination of swelling and consolidation effects caused by the hydraulic head. Then, the mechanical behaviour of the compacted sample was investigated with an oedometer. The IFLT method could provide rapid hydraulic performance indication compared to standard permeability tests. Further investigations would be needed to properly take into account the mechanical effect of the pressure.
机译:本文提出了一种适应测量的方法,以延长其开发时间,并提供与标准渗透率测试的适当比较。选择用于流体损失测试(FLT)的压滤机来详细阐述水力性能方法,该方法用于压实的砂-膨润土混合物。开发了一种用于确定水力传导率的分析方法。突出显示了材料和测试参数(液压P_0,水力梯度i,水力传导率k_0和系数)。使用压滤机和刚性壁渗透仪(RWP)进行了一系列实验。对包含2%,3.5%和5%的活性Ca膨润土的土壤样品进行了水力研究,该样品浸有弱1×10〜(-3)M NaCl。改进的FLT(IFLT)可以区分粘土浓度对水力传导率的影响,但不足以将水力传导率值估算为RWP。 RWP和IFLT之间的直接测试比较显示出相同数量级的水力传导率值。已知样品压实可减少空隙率变化。但是,由于液压头引起的溶胀和固结效应的结合,在测试过程中可能会出现厚度变化。然后,用里程表研究压实样品的机械性能。与标准渗透率测试相比,IFLT方法可以提供快速的水力性能指标。需要进一步研究以适当考虑压力的机械作用。

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