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New Approach for Estimating Hydraulic Properties of Soils in Cold Regions

机译:寒冷地区土壤水力特性估算新方法

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One of the arduous tasks in cold regional studies is estimating soil hydraulic properties such as soil freezing characteristics and hydraulic conductivity, which are important when studying transport process in frozen soils. Costly data collection methods and existing isothermal models are limitations in understanding soil water dynamics in frozen soils. Pedotransfer functions have become a hot topic in the earth and environmental related sciences to predict soil physical and chemical properties easily, routinely, or cheaply for a specific non-frozen geographical region. Based on similarity between wetting and freezing processes in soil, we presented a new approach to derive soil freezing characteristics from soil water characteristics of non-frozen soils using existing pedotransfer functions. We considered a conventional soil water characteristic model and existing pedotransfer functions for determining the relationships; unfrozen water content vs. subzero temperature, and hydraulic conductivity vs. subzero temperature using Clapeyron equation. The proposed approach successfully predicted unfrozen water content and hydraulic conductivity for different soils when compared with those reported in the literature. Furthermore, effect of soil bulk density (porosity) on unfrozen water content and hydraulic conductivity at different subzero temperatures was discussed for range of soils.
机译:寒冷区域研究中的艰苦任务之一是估算土壤液压性能,如土壤冻结特性和液压导电性,这是在冻土中研究运输过程的重要性。昂贵的数据收集方法和现有的等温模型是了解冻土中土壤水动态的限制。 PEDOT转移功能已成为地球和环境相关科学的热门话题,以容易,常规,或便宜地预测土壤物理和化学性质,或便宜地对特定的非冻结地理区域进行便宜。基于土壤中润湿和冷冻过程之间的相似性,我们介绍了一种新方法来使用现有的网兜功能来源于非冻土土壤水分特性的土壤冻结特征。我们考虑了传统的土壤水分特征模型和现有的网兜传输功能,用于确定关系;使用苜蓿方程的未冷冻含水量与分零温度和液压导电性与分零温度。与文献中报道的那些相比,所提出的方法成功地预测了不同土壤的含水量和水力导电性。此外,对土壤范围讨论了土壤堆积密度(孔隙率)对不同亚零温度下的含水含量和水力传导率的影响。

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