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A Unified Approach to Numerical Modeling of Fully and Partially Saturated Porous Materials by Considering Air Dissolved in Water

机译:考虑水中溶解空气的统一的部分或全部饱和多孔材料数值模拟方法

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This paper presents a unified mathematical approach to model the hydro-thermo-mechanical behavior of saturated and partially saturated porous media by considering the effects of air dissolved in liquid water. The model equations are discretized by means of the Finite Element method. A correspondingly updated code is used to analyze two examples; the first one is the well known Liakopoulos test, i.e. the drainage of liquid water from a lm column of sand, which is used to validate numerically the model here developed. As second example, a biaxial compression test of undrained dense sands where cavitation takes place at strain localization is simulated. It is shown that considering the dissolved air has a small influence on the overall results of numerical simulations, while the histories of the fluid variables (gas and capillary pressure and water saturation) differ from other approaches neglecting the air dissolved. This may be important if appropriate constitutive models for partially saturated materials are used. A major advantage of the proposed procedure is that it allows for a unified modeling of partially and fully saturated zones in porous media without application of any 'unphysical' numerical technique.
机译:本文提出了一种统一的数学方法,通过考虑溶解在液态水中的空气的影响来对饱和和部分饱和的多孔介质的水热力学行为进行建模。借助有限元法将模型方程离散化。相应更新的代码用于分析两个示例。第一个是众所周知的Liakopoulos试验,即从流明的lm沙柱中排出液态水,该试验用于数值验证此处开发的模型。作为第二个示例,模拟了不排水的致密砂土的双轴压缩试验,该试验在应变局部化时发生了气蚀现象。结果表明,考虑溶解空气对数值模拟的总体结果影响很小,而流体变量的历史(气体和毛细管压力以及水饱和度)与其他忽略溶解空气的方法不同。如果对部分饱和的材料使用适当的本构模型,这可能很重要。所提出程序的主要优点是,它允许对多孔介质中部分饱和区和完全饱和区进行统一建模,而无需应用任何“非物理”数值技术。

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