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A probabilistic approach for the assessment of the influence of the dielectric constant of pore fluids on the liquid limit of smectite and kaolinite

机译:一种评估孔隙流体介电常数对绿土和高岭土液位的影响的概率方法

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摘要

Liquid limit (L,L) is defined as a limiting water content separating the viscous liquid state and plastic state of soil consistency. LL of clays, being a basic physico-chemical property, plays a role in environmental geotechnical engineering practice. Since it is well-known that kaolinite and smectite behave quite differently from each other from the geotechnical point of view, ninety-one data regarding smectite (Na and Ca) and kaolinite mixed with organic pore fluids having different dielectric constant (epsilon) values have been carefully analyzed. Data confirm that for a decreasing epsilon value of the pore fluid a decrease in LL is observed for the smectitic clays, with different magnitude depending on the main ion, whereas for kaolinitic clays this decreasing epsilon causes an increase in attractive forces causing flocculation and increase in LL values. A probabilistic approach has been performed to assess the robustness of the regression functions. For smectitic and kaolinitic clays the mathematical dependency of LL with epsilon is validated by the probabilistic analysis.
机译:液体极限(L,L)被定义为将粘性液体状态和土壤稠度的塑性状态分开的极限水含量。粘土的LL是一种基本的物理化学性质,在环境岩土工程实践中发挥着作用。众所周知,从岩土学的角度来看,高岭石和蒙脱石的性能差异很大,因此有91个关于蒙脱石(Na和Ca)和高岭石与介电常数(ε)值不同的有机孔隙流体混合的数据经过仔细分析。数据证实,对于孔隙流体的ε值降低,近晶粘土观察到的LL减小,幅度随主离子的不同而不同,而对于高岭土,这种下降的ε引起引力的增加,导致絮凝并增加。 LL值。已经执行了一种概率方法来评估回归函数的鲁棒性。对于近土和高岭土,通过概率分析验证了LL与ε的数学依赖性。

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