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Measurement of unfrozen water content and relative permittivity of frozen unsaturated soil using NMR and TDR

机译:利用NMR和TDR测量冻结不饱和土的未冻水含量和相对介电常数。

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The soil-freezing characteristic, the relationship between unfrozen water content and temperature, is relevant for any mass transfer processes in frozen porous media. To determine the soil-freezing characteristic, we simultaneously measured liquid water content and relative permittivity of various unsaturated soils at above-zero and subzero temperatures by using pulsed nuclear magnetic resonance (NMR) and time-domain reflectometry (TDR). The dielectric permittivity of frozen soil decreased with a decrease in temperature, which was accompanied by a decrease in liquid (unfrozen) water content. Frozen soils with different total water content had the same amount of unfrozen water at below - 1 ℃; however, the permittivity of frozen soil depended on the total water content. A dielectric mixing model without considering reduced dielectric permittivity due to surface forces and ice formation could only describe the data for sandy soils. We expanded the mixing model by including reduced dielectric permittivity due to surface forces and ice formation. The estimations of liquid water content using the expanded mixing model were in agreement with the values measured by NMR at any soil type, total water content, ice content, and temperature.
机译:土壤冻结特性,即未冻结水含量和温度之间的关系,与冻结多孔介质中的任何传质过程有关。为了确定土壤的冻结特性,我们使用脉冲核磁共振(NMR)和时域反射仪(TDR)同时测量了零以上和零以下温度下各种不饱和土壤的液态水含量和相对介电常数。冷冻土壤的介电常数随温度的降低而降低,随之而来的是液态(未冻结)水含量的降低。低于-1℃时,具有不同总水分含量的冷冻土壤的未冷冻水量相同;但是,冻土的介电常数取决于总水分含量。如果不考虑由于表面力和冰的形成而导致介电常数降低的介电混合模型,则只能描述沙质土壤的数据。我们通过包括由于表面力和冰的形成而降低的介电常数来扩展混合模型。使用扩展混合模型估算的液态水含量与通过NMR在任何土壤类型,总含水量,冰含量和温度下测得的值一致。

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