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Predicting bimodal soil-water characteristic curves and permeability functions using physically based parameters

机译:使用基于物理的参数预测双峰土壤水特征曲线和渗透率函数

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Experimental evidence shows that a gap-graded soil or a widely-graded granular material may have a bimodal soil-water characteristic curve (SWCC) and a bimodal permeability function. A bimodal SWCC or a bimodal permeability function originates from a dual-porosity structure. To date, the prediction of bimodal SWCCs for gap-graded soils is still a difficult task. In this paper, a bimodal SWCC model is proposed to describe the drying process of granular soils considering a dual-porosity structure. The new SWCC model shows powerful capability in fitting the SWCCs for soils varying from gravel to silt. Regression analysis is conducted to establish empirical relations between the model parameters and the indexes of soil grain-size distribution (GSD). Based on these relations, the new model predicts well both the bimodal SWCCs for gap-graded soils and the unimodal SWCCs for well-graded soils and uniform soils. A bimodal permeability function is also proposed and linked to the new SWCC model. In the absence of experimental SWCCs and permeability functions, the new model can be used to obtain preliminary SWCCs and permeability functions for granular soils. It should be mentioned that the prediction of the SWCC from the GSD is still empirical and does not address the cyclic wetting/drying process. Measurement of the SWCC should be performed wherever an accurate SWCC is required.
机译:实验证据表明,间隙分级的土壤或广泛分级的颗粒材料可能具有双峰土壤水特征曲线(SWCC)和双峰渗透性函数。双峰SWCC或双峰渗透率函数源自双孔隙结构。迄今为止,对间隙分级土壤的双峰SWCC的预测仍然是一项艰巨的任务。本文提出了一种双峰SWCC模型来描述考虑双孔隙结构的粒状土壤的干燥过程。新的SWCC模型显示出强大的能力,可以将SWCC适应从砾石到粉砂的各种土壤。进行回归分析以建立模型参数与土壤粒度分布指数(GSD)之间的经验关系。基于这些关系,新模型可以很好地预测间隙分级土壤的双峰SWCC和分级土壤和均匀土的单峰SWCC。还提出了双峰渗透率函数,并将其与新的SWCC模型关联。在没有实验性SWCC和渗透率函数的情况下,新模型可用于获得粒状土壤的初步SWCC和渗透率函数。应该提到的是,从GSD得出的SWCC的预测仍是经验性的,并未涉及循环润湿/干燥过程。 SWCC的测量应在需要精确SWCC的任何地方进行。

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