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Improving the Predictive Capability of Popular SWCCs by Incorporating Maximum Possible Suction

机译:通过结合最大可能的吸力来提高流行的SWCC的预测能力

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Soil-water characteristic curve (SWCC) that represents the relationship between the soil moisture and matric suction is one of the important constitutive models required for numerical modeling of unsaturated soils. An effective SWCC model should be capable of calculating the moisture-suction variation for the entire range of degree of saturation. Applicability of popular SWCC models such as Brooks and Corey, van Genuchten, and Fredlund and Xing is limited, especially in low (< 20%) degree of saturation range. In this study, all these models are modified by incorporating maximum suction as one of the model parameters, so that these models can be effectively used over the entire range of degree of saturation. The Fredlund et al (1994) permeability function is also modified based on the modification to the Fredlund and Xing SWCC model. The applicability of the improved models is investigated by calibrating the SWCC of various types of soil and presented in this paper. Based on this study it can be concluded that the modified models are flexible enough to fit the experimental data for the entire range of degree of saturation.
机译:代表土壤水分与基质吸力之间关系的土壤水特征曲线(SWCC)是非饱和土壤数值模拟所需的重要本构模型之一。一个有效的SWCC模型应该能够计算出整个饱和度范围内的吸水量变化。流行的SWCC模型(例如Brooks和Corey,van Genuchten,Fredlund和Xing)的适用性受到限制,尤其是在饱和度范围低(<20%)时。在这项研究中,所有这些模型都通过将最大吸力作为模型参数之一进行了修改,因此这些模型可以在整个饱和度范围内有效使用。 Fredlund等人(1994年)的渗透率函数也基于对Fredlund和Xing SWCC模型的修改而进行了修改。通过校准各种土壤的SWCC来研究改进模型的适用性,并在本文中进行了介绍。根据这项研究,可以得出结论,修改后的模型具有足够的灵活性以适合整个饱和度范围的实验数据。

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