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Sensitivity Analysis of the Hydraulic Conductivity of Compacted Lateritic Soil and Bentonite Composite

机译:压实的外晶土壤和膨润土复合材料液压导电性的敏感性分析

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This study investigates the sensitivity of variables that affect hydraulic conductivity of compacted lateritic soil - bentonite mixtures for use as waste landfill liner. Reliability indices for mixtures containing up to 10% bentonite were computed from a predictive model incorporated into a FORTRAN-based first-order reliability program (FORM). The model relates hydraulic conductivity (k) to plasticity index (PI), initial saturation (S_i), clay content (C) and compaction effort (E), considering k as a lognormally distributed function. Lateritic soil - bentonite mixtures used in generating k data were compacted with standard Proctor (SP), West African Standard (WAS) or 'intermediate' and modified Proctor (MP) energies. The reliability indices obtained showed that performance level was high (4.16 to 5.71), establishing a decreasing trend as the coefficients of variation changed from 10% - 100% for lognormal k relationship as well as for PI, S_i and C over the range of compactive efforts used in the study. These results can guide designers in identifying and screening variables that yield acceptable k for soil - bentonite liner materials and the selection of compaction procedures that will provide the best condition for the construction of high integrity liner systems.
机译:本研究调查了影响压实的外形土壤液压导电性的变量的灵敏度 - 膨润土混合物用作废垃圾填埋衬垫。从包含在基于Fortran的一级可靠性计划(形式)中的预测模型计算含有高达10%膨润土的混合物的可靠性指数。该模型涉及水力传导率(k)至塑性指数(PI),初始饱和度(S_I),粘土含量(C)和压实功(E),考虑k作为一个对数正态分布函数。与标准的Proctor(SP),西非标准(IS)或“中间”和改进的Proctor(MP)能量进行了用于生成K数据的外链土壤 - 膨润土混合物。可靠性指标获得表明,性能水平高(4.16至5.71),建立了一个减少的趋势作为变异系数从10%变化 - 对数正态分布ķ关系以及用于PI,S_I和C上的压实范围100%研究中使用的努力。这些结果可以指导设计人员识别和筛选可接受的k用于土壤 - 膨润土衬里材料的变量以及将提供高度完整性衬里系统建设的最佳条件的压实程序的选择。

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