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Pore Network Investigation on Hysteresis Phenomena and Influence of Stress State on the SWRC

机译:磁滞现象的孔隙网络研究及应力状态对SWRC的影响

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The soil-water retention curve (SWRC) is the relationship between the suction values and water content of the soil. This curve has one or more branches depending on the suction imposition paths, and represents one of the most important properties of unsaturated soils. In this paper, by using a percolation approach and introducing a trial-and-error process, a randomly distributed pore network model is first calibrated using experimental data corresponding to the main drying branch of the SWRC. The influence of the stress state on the pore-size distribution of the network is further studied. The calibrated network model is used to predict the main wetting and scanning branches of the SWRC. Piston-type and cooperative fillings are used as the two wetting mechanisms. The proposed method facilitates modeling pore networks with large numbers of pores covering a wide range of suction values (full saturation through the residual degree of saturation). The results indicate that with an increase in the applied stress, micropores and macropores are affected. However, it is the change in the macropores that strongly influences the SWRC. Also, it is possible to predict the wetting and scanning branches of the SWRC with reasonable accuracy once the model is calibrated when using the main drying curve. (C) 2014 American Society of Civil Engineers.
机译:土壤水分保持曲线(SWRC)是吸力值与土壤含水量之间的关系。该曲线根据吸力施加路径具有一个或多个分支,代表了非饱和土壤最重要的特性之一。在本文中,通过使用渗滤方法并引入试错法,首先使用与SWRC主要干燥分支相对应的实验数据来校准随机分布的孔隙网络模型。进一步研究了应力状态对网络孔径分布的影响。校准后的网络模型用于预测SWRC的主要润湿和扫描分支。活塞式和协同式填充被用作两种润湿机制。所提出的方法有助于对具有覆盖广泛的吸力值范围(通过剩余饱和度完全饱和)的大量孔隙的孔隙网络进行建模。结果表明,随着施加应力的增加,微孔和大孔受到影响。但是,大孔的变化对SWRC有很大影响。同样,一旦使用主干燥曲线对模型进行了校准,就有可能以合理的准确性预测SWRC的润湿和扫描分支。 (C)2014年美国土木工程师学会。

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