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Estimating soil freezing characteristic curve based on pore-size distribution

机译:基于孔径分布估算土壤冻结特性曲线

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A clear fundamental understanding of the soil freezing characteristic curve is crucial for studying soil freezing behavior. In this paper, based on the assumption that the shape of the soil freezing characteristic curve is mainly dependent upon the pore-size distribution of the soil, a mathematic model for estimating the soil freezing characteristic curve is proposed. The formula has the form of an integrated frequency distribution curve, which is verified by previous researches (seven representative soil samples and six representative mineral compositions, a number of special mineral particles and soils, and unsaturated soils). By nonlinear curve fitting, the correlation coefficients are generally larger than 0.95. The proposed model is more convenient than the original empirical formulas in numerical modeling, and it can overcome the shortcoming that the original empirical formulas are not derivative at the temperatures near the freezing point. In addition, the proposed model directly expresses the relationship between residual unfrozen water content and temperature under extremely low temperature conditions. Of course, the new model and results in this study may provide a reference for the research on basic physical properties of freezing soils, and the related numerical modeling in cold regions engineering. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对土壤冷冻特性曲线的明显基本理解对于研究土壤冻结行为至关重要。本文基于土壤冷冻特性曲线的形状主要取决于土壤的孔径分布,提出了一种用于估算土壤冷冻特性曲线的数学模型。该公式具有综合频率分布曲线的形式,通过以前的研究(七种代表性的土壤样品和六种代表性矿物组合物,许多特殊的矿物颗粒和土壤和不饱和土壤)验证。通过非线性曲线拟合,相关系数通常大于0.95。所提出的模型比数值模拟中的原始经验公式更方便,可以克服原始经验公式在冰冻点附近的温度下没有导数的缺点。此外,所提出的模型直接表达在极低温度条件下残留的未分化水含量和温度之间的关系。当然,本研究的新模型和结果可以为冷冻土壤的基本物理性质以及寒冷地区工程中的相关数值建模提供研究。 (c)2017 Elsevier Ltd.保留所有权利。

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