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首页> 外文期刊>Journal of Contaminant Hydrology >Fractional calculus applied to the analysis of spectral electrical conductivity of clay-water system
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Fractional calculus applied to the analysis of spectral electrical conductivity of clay-water system

机译:分数阶微积分法在粘土-水系统光谱电导率分析中的应用

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The analysis of the low-frequency conductivity spectra of the clay-water mixtures is presented. The frequency dependence of the conductivity is shown to follow the power-law with the exponent n=0.67 before reaching the frequency-independent part. When scaled with the value of the frequency-independent part of the spectrum the conductivity spectra for samples at different water content values are shown to fit to a single master curve. It is argued that the observed conductivity dispersion is a consequence of the anomalously diffusing ions in the clay-water system. The fractional Langevin equation is then used to describe the stochastic dynamics of the single ion. The results indicate that the experimentally observed dielectric properties originate in anomalous ion transport in clay-water system characterized with time-dependent diffusion coefficient.
机译:给出了粘土-水混合物的低频电导谱的分析。导电率的频率相关性在到达与频率无关的部分之前,遵循幂律,指数n = 0.67。当使用频谱中与频率无关的部分的值进行换算时,显示出不同含水量的样品的电导率谱适合单个主曲线。有人认为,观察到的电导率分散是由于粘土-水系统中离子异常扩散的结果。然后使用分数Langevin方程描述单个离子的随机动力学。结果表明,实验观察到的介电性质源于粘土-水系统中离子迁移异常,其特征在于时间依赖性扩散系数。

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