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MODELING HYSTERESIS OF THE SOIL-WATER CHARACTERISTIC CURVE

机译:土水特征曲线的滞后建模

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Soil suction is an essential parameter for describing the mechanical behavior of unsaturated soils. For analytical purposes, its value is usually inferred from the soil-water characteristic curve. However, the expressions developed up till now to describe this curve, do not properly account for the physical facts involved in the hysteresis phenomenon. It is generally accepted that hysteresis arises because pores of different sizes are interconnected generating the "ink-bottle" effect. In this paper, a twofold model that simulates the porous structure of soils is used and the mathematical expressions describing the hysteresis of the soil-water characteristic curves are obtained. This model considers that the voids in the soil mass are composed of two kinds of elements: the sites (cavities) and the bonds (throats), each kind showing its proper size distribution. Based on these premises and making use of the probability theory, the equations corresponding to the main hysteresis loop during wetting or drying are established and it is shown that the extent of the hysteretic behavior depends on the parameters describing the size distributions. In addition, the equations describing the specific internal (scanning) paths for cyclic wetting and drying are obtained. Finally, these results are compared with experimental results that include the main hysteresis loop, some scanning curves and the pore size distribution.
机译:土壤吸力是描述非饱和土壤力学行为的重要参数。为了分析的目的,通常从土壤水特征曲线推断出它的值。但是,迄今为止开发的用于描述该曲线的表达式不能适当地解释滞后现象所涉及的物理事实。人们普遍认为,由于不同尺寸的孔相互连接而产生“墨水瓶”效应,因此会产生滞后现象。本文采用模拟土壤多孔结构的双重模型,得到描述土壤-水特征曲线滞后的数学表达式。该模型认为土壤中的空洞由两种元素组成:位置(空洞)和结合(喉咙),每种都显示出适当的大小分布。基于这些前提并利用概率论,建立了与润湿或干燥过程中的主要磁滞回线相对应的方程,并表明磁滞行为的程度取决于描述尺寸分布的参数。另外,获得了描述循环湿润和干燥的特定内部(扫描)路径的方程式。最后,将这些结果与包括主磁滞回线,一些扫描曲线和孔径分布在内的实验结果进行比较。

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