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Electrical Conductivity-Based Estimation of Unfrozen Water Content in Saturated Saline Frozen Sand

机译:饱和盐水冻结砂中未冷却水含量的基于电导率的估计

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The salinity of the pore solution is closely associated with the unfrozen water content and can be reflected by variation in electrical conductivity in frozen soils. However, the influence of salinity was not considered in the existing models for estimation of unfrozen water content based on electrical conductivity measurement, and a model considering the effect of salt content was therefore developed to estimate the change of unfrozen water content of saline sands with variation of salt content (0%, 0.2%, and 1%). The unfrozen water content and the electrical resistivity were measured by nuclear magnetic resonance (NRM) and using resistance test equipment under a temperature ranging from 25°C to ?15°C, respectively. The results indicated that the model using a cementation exponent expressed by a piecewise function with respect to temperature can produce a reasonable estimation on the content of unfrozen water. There was an essential difference between nonsaline and saline frozen sands in the increase of electrical resistivity due to the different reduction rates of unfrozen water content. The variation of electrical resistivity in nonsaline sand was mainly caused by the decrease of free water when temperature was higher than the freezing point and adsorbed water when temperature was lower than the freezing point, whereas the reduction of free water in two stages was the main reason for the variation of electrical resistivity in saline sand. The results and data obtained provided a basis for further developing a novel approach to measure the unfrozen water content in the field.
机译:孔隙溶液的盐度紧密地与未冻水含量相关联,并且可以通过在冻土电导率变化来反映。然而,盐度的影响在基于电导率测定的未冻水含量估计现有的模型没有考虑,因此考虑的盐含量的影响的模型的开发是为了估算与变异盐水砂的未冻水含量的变化的盐含量(0%,0.2%和1%)。的未冻水含量和电阻率,通过核磁共振(NRM),并使用电阻测试设备范围从25℃至〜15℃的温度下分别测量。结果表明,使用由分段函数相对于温度表示的胶结指数模型可以产生上的未冻水含量在合理的估计。有在电阻率的增加nonsaline和盐水冷冻沙滩之间的本质区别由于未冻水含量不同的削减率。在nonsaline砂电阻率的变化主要是由于游离水的减少当温度高于凝固点高,吸附的水时温度低于凝固点低,而自由水在两个阶段中的减少的主要原因对于电阻率的在盐水中砂的变化。结果和数据获得提供用于进一步开发以测量在该领域的未冻水含量的新方法提供了基础。

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