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Modeling the Dependency of Suction Stress Characteristic Curve on Void Ratio in Unsaturated Soils

机译:吸力特征曲线对非饱和土孔隙比的依赖关系建模

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Geotechnical problems associated with unsaturated soils are common in semi-arid climates, where the upper soil layers are naturally unsaturated. Once a soil becomes unsaturated, its mechanical properties become different from its saturated counterpart. The main part of effective stress in unsaturated soils resulting from the soil moisture can be defined by the Suction Stress Characteristic Curve (SSCC). Although, the suction stress characteristic curve is determined from shear strength tests, but recent works show that the SSCC can be connected to the Soil Water Characteristic Curve (SWCC). This paper presents a simple and novel approach to model the effect of void ratio changes on SSCC in unsaturated soils. The proposed approach can be easily utilized with existing Soil Water Characteristic Curve (SWCC) equations to model any changes in suction stress for unsaturated soils. The main advantage of the suggested method is in fact its dependency to just one parameter, simply calibrated by the conventional water retention tests. This characteristic is so applicable in hydro mechanical constitutive models of unsaturated soils. Finally, the efficiently predicting of the experimental results implicitly demonstrates the applicability of effective stress principle using the concept of Suction Stress Characteristic Curve (SSCC) for unsaturated soils.
机译:与不饱和土壤相关的岩土工程问题在半干旱气候中很常见,那里的上层土壤是自然不饱和的。一旦土壤变得不饱和,其机械性能就会与饱和土壤不同。由土壤水分引起的非饱和土壤有效应力的主要部分可以由吸应力特征曲线(SSCC)定义。尽管吸力应力特征曲线是通过抗剪强度测试确定的,但是最近的研究表明,SSCC可以与土壤水分特征曲线(SWCC)联系起来。本文提出了一种简单新颖的方法来模拟孔隙度变化对非饱和土壤中SSCC的影响。所提出的方法可以很容易地与现有的土壤水分特征曲线(SWCC)方程一起使用,以模拟非饱和土壤的吸力变化。所建议的方法的主要优点实际上是其仅依赖于一个参数,而该参数仅通过常规保水测试即可进行校准。该特性适用于非饱和土壤的水力本构模型。最后,对试验结果的有效预测隐含了有效应力原理的适用性,该思想采用吸应力特征曲线(SSCC)的概念在非饱和土中进行。

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