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Revisiting the thermodynamics of hardening plasticity for unsaturated soils

机译:回顾非饱和土硬化可塑性的热力学

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A thermodynamically consistent extension of the constitutive equations of saturated soils to unsaturated conditions is often worked out through the use of a unique 'effective' interstitial pressure, accounting equivalently for the pressures of the saturating fluids acting separately on the internal solid walls of the pore network. The natural candidate for this effective interstitial pressure is the space averaged interstitial pressure. In contrast experimental observations have revealed that, at least, a pair of stress state variables was needed for a suitable framework to describe stress-strain-strength behaviour of unsaturated soils. The thermodynamics analysis presented here shows that the most general approach to the behaviour of unsaturated soils actually requires three stress state variables: the suction, which is required to describe the invasion of the soil by the liquid water phase through the retention curve; two effective stresses, which are required to describe the soil deformation at water saturation held constant. However a simple assumption related to the plastic flow rule leads to the final need of only a Bishop-like effective stress to formulate the stress-strain constitutive equation describing the soil deformation, while the retention properties still involve the suction and possibly the deformation. Commonly accepted models for unsaturated soils, that is the Barcelona Basic Model and any approach based on the use of an effective averaged interstitial pressure, appear as special extreme cases of the thermodynamic formulation proposed here.
机译:通常通过使用独特的“有效”间隙压力对饱和土的本构方程进行热力学一致的扩展,等效地考虑了分别作用于孔隙网络内部固体壁上的饱和流体的压力。该有效间隙压力的自然候选者是空间平均间隙压力。相比之下,实验观察表明,至少需要一对应力状态变量才能描述非饱和土壤的应力-应变-强度行为。这里介绍的热力学分析表明,最不饱和土壤行为的最通用方法实际上需要三个应力状态变量:吸力,通过保留曲线描述液态水相对土壤的入侵;吸力;两个有效应力是描述土壤在饱和状态下的变形所必需的。然而,与塑性流动规则有关的简单假设导致最终只需要像Bishop一样的有效应力来制定描述土壤变形的应力-应变本构方程,而保持特性仍然涉及吸力和变形。普遍接受的非饱和土壤模型,即巴塞罗那基本模型和任何基于使用有效平均间隙压力的方法,都出现在此处提出的热力学公式的特殊极端情况下。

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