Prediction of the hydraulic conductivity function for unsaturated soils over the entire suction range

Yan Li, Xiaokun Hou, Tong-lu Li, Sai Vanapalli, Ping Li
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Abstract

The hydraulic conductivity function (HCF) refers to in this paper is the variation of hydraulic conductivity over the entire suction range from 0 to 106 kPa. Most of the available HCF models in the literature are derived based on capillary theory and have limitations in the explanation of HCF in the high suction range. Recently, several models have been proposed for accounting for the thin film flow dominated by the adsorbed water in the high suction range. However, these models require measured HCF data for describing the thin film flow, which is time-consuming. In this study, a mathematically continuous and simple model is proposed for predicting the HCF. The model has physically meaningful parameters for predicting the HCF. In this model, the residual suction estimated from the soil-water characteristic curve (SWCC) is used to distinguish the capillary and adsorption-dominated regions, and a correction operator that considers the thin film flow is introduced. The performance of the model was validated using the measured and published experimental data for various soils. In addition, the proposed model is successfully applied in a numerical investigation of the hydraulic behavior of a capillary barrier system, highlighting the role of the thin film flow.
预测整个吸力范围内非饱和土壤的导水函数
本文所指的水力传导函数(HCF)是指水力传导性在 0 至 106 kPa 整个吸力范围内的变化。文献中现有的 HCF 模型大多基于毛细管理论推导,在解释高吸力范围内的 HCF 时存在局限性。最近,有人提出了几个模型,用于解释高吸力范围内由吸附水主导的薄膜流动。然而,这些模型需要测量 HCF 数据来描述薄膜流动,这非常耗时。本研究提出了一个数学上连续且简单的 HCF 预测模型。该模型具有对预测 HCF 有物理意义的参数。在该模型中,利用土壤水特征曲线(SWCC)估算的剩余吸力来区分毛细管区和吸附主导区,并引入了考虑薄膜流的修正算子。利用各种土壤的实测数据和已公布的实验数据对模型的性能进行了验证。此外,该模型还成功应用于毛细管屏障系统水力行为的数值研究,突出了薄膜流的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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