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Soil freezing process and different expressions for the soil-freezing characteristic curve

机译:土壤冻结过程及冻融特性曲线的不同表达式

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摘要

The soil-freezing characteristic curve (SFCC), which represents the relationship between unfrozen water content and subfreezing temperature (or suction at ice-water interface) in a freezing soil, can be used for understanding the transportation of heat, water, and solute in frozen soils. In this paper, the soil freezing process and the similarity between the SFCC of saturated frozen soil and soil-water characteristic curve (SWCC) of unfrozen unsaturated soil are reviewed. Based on similar characteristics between SWCC and SFCC, a conceptual SFCC is drawn for illustrating the main features of soil freezing and thawing processes. Various SFCC expressions from the literature are summarized. Four widely used expressions (i.e.,power relationship, exponential relationship, van Genuchten 1980 equation and Fredlund and Xing 1994 equation) are evaluated using published experimental data on four different soils (i.e., sandy loam, silt, clay, and saline silt). Results show that the exponential relationship and van Genuchten (1980) equation are more suitable for sandy soils. The simple power relationship can be used to reasonably best-fit the SFCC for soils with different particle sizes; however, it exhibits limitations when fitting the saline silt data. The Fredlund and Xing (1994) equation is suitable for fitting the SFCCs for all soils studied in this paper.
机译:土壤冰冻特性曲线(SFCC)表示冻结土壤中未冻结的水分含量与亚冰点温度(或冰水界面处的吸力)之间的关系,可用于了解土壤中的热量,水和溶质的运移。冻土。本文综述了土壤冻结过程以及饱和冻结土壤的SFCC与未冻结非饱和土壤的土壤水特征曲线(SWCC)之间的相似性。基于SWCC和SFCC之间的相似特征,绘制了概念性SFCC,用于说明土壤冻结和解冻过程的主要特征。总结了文献中的各种SFCC表达。使用已发表的关于四种不同土壤(沙质壤土,粉砂,粘土和盐分粉砂土)的实验数据,评估了四个广泛使用的表达式(即幂关系,指数关系,van Genuchten 1980方程以及Fredlund和Xing 1994方程)。结果表明,指数关系和van Genuchten(1980)方程更适合于沙质土壤。简单的幂关系可以用来合理地使SFCC最适合不同粒径的土壤。但是,在拟合盐分泥沙数据时会表现出局限性。 Fredlund和Xing(1994)方程适用于本文研究的所有土壤的SFCC。

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