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A water retention model for compacted clays subjected to salinization and desalinization processes

机译:一种用于盐渍化和脱盐过程的压实粘土的水保持模型

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Environmental actions are known to induce relevant effects on the fabric of compacted active clays, which are successfully described by adopting a double porosity framework. In particular, the role of aggregate deformation has been recognized as fundamental to interpret the water retention behavior and the transport properties. These aspects are particularly relevant in the context of clay liners, being the material cast in place in unsaturated conditions and subjected to wetting process by pore fluids characterized by a chemical composition that is different from the one of compaction. Experimental data evidence that the water retention properties of active clays evolve as a function of pore water chemistry, since for a given matric suction the mass of stored water changes with water salinity. In this paper, a double porosity water retention model is proposed, capable of reproducing the variation of matric suction with water content accounting for the salinity of pore fluid. The role of salinity changes is accounted for by a suitable evolution law for aggregate deformation, which in turn affects the inter-aggregate porosity and thus the storage properties of the material.
机译:已知环境行动诱导对压实的活性粘土的织物的相关影响,这通过采用双孔隙框架成功地描述。特别是,聚集变形的作用已被认为是解释水保留行为和运输特性的基本。这些方面在粘土衬垫的背景下特别相关,作为在不饱和条件下施放的材料,并通过孔隙流体对其具有不同的化学组成的孔流体来进行润湿过程。实验数据证据表明,活性粘土的水保留性能随着孔隙水化学的函数而发展,因为对于给定的Matric吸入储存水的质量随水盐度而变化。本文提出了一种双孔隙率水保持模型,能够在孔隙含量占含水量的含水量占含水量的含水量。盐度变化的作用是通过合适的演化法来占总变形的综合变形,这反过来影响聚集孔隙率,从而影响材料的储存性能。

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