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Investigating the Role of Soil Fabric in Unsaturated Soils

机译:调查土壤结构在非饱和土壤中的作用

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The principle of effective stress states that the strength and volume change behaviors of soil are governed by intergranular forces expressed in terms of a continuum quantity called effective stress. Past research on effective stress formulations has identified a tensorial quantity that characterizes the liquid phase of unsaturated granular geomaterials. This quantity was named fabric tensor of the liquid phase and was shown to be anisotropic and to have an intrinsic association with the evolution of the effective stress tensor. It was also shown that its variation is random and can be depicted with microstructural image analysis. In this study, two past micromechanical effective stress formulations are discussed in comparison with Bishop's effective stress. The extended Mohr-Coulomb and effective stress approaches are used in interpreting shear strength parameters and effective stress parameter for partially saturated granular soils. Correlations are identified for some material variables. The nonlinearity observed in the angle of friction associated with the matric suction was discussed in relation to the fabric tensor of the liquid phase.
机译:有效应力的原理指出,土壤的强度和体积变化行为是由晶间力控制的,该力以称为有效应力的连续量表示。过去对有效应力公式的研究已经确定了张量,该张量表征了不饱和粒状土工材料的液相。这个量被称为液相的织物张量,并且被证明是各向异性的,并且与有效应力张量的演化有着内在的联系。还显示出其变化是随机的,并且可以用微结构图像分析来描绘。在这项研究中,与Bishop的有效应力相比,讨论了两种过去的微机械有效应力公式。扩展的Mohr-Coulomb方法和有效应力方法用于解释部分饱和的粒状土的抗剪强度参数和有效应力参数。确定了一些物质变量的相关性。讨论了与基质吸力相关的在摩擦角上观察到的非线性,与液相的织物张量有关。

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