首页> 外文期刊>International journal of multiscale computational engineering >A HYDROMECHANICAL FINITE ELEMENT FORMULATION FOR LOCALIZED INTERNAL EROSION IN POROUS MEDIA, WITH APPLICATION TO BACKWARD PIPING IN COFFERDAMS
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A HYDROMECHANICAL FINITE ELEMENT FORMULATION FOR LOCALIZED INTERNAL EROSION IN POROUS MEDIA, WITH APPLICATION TO BACKWARD PIPING IN COFFERDAMS

机译:多孔介质局部内部侵蚀的流体力学有限元配方,应用于围堰后管道

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摘要

We have recently proposed a finite element formulation able to simulate the localization of propagating internal erosion in rigid porous media. In the present paper, such method is extended to deformable porous solids, in order to also model the interaction between backward erosion piping and soil movements. We present the equations governing the exchange and transport of solid and fluid mass in a saturated poro-elastoplastic solid embedding a propagating erosion conduit conveying a multiphase flow. The full set of coupled finite element equations is then obtained from the weak formulations of mechanical equilibrium and fluidmass balance. The performance of the proposed formulation is assessed through an analysis of the soil response to the progressive dewatering of a cofferdam. The hydromechanical coupling and the ability in capturing both the onset and propagation of piping are crucial for an interpretation of the limit states typically observed in these structures.
机译:我们最近提出了一种有限元制剂,能够模拟刚性多孔介质中繁殖内部侵蚀的定位。在本文中,这种方法延伸到可变形的多孔固体,以模拟后向侵蚀管道和土壤运动之间的相互作用。我们介绍了在饱和龙骨 - 弹塑性固体中嵌入传播多相流动的饱和泊振塑料固体中固体和液体物质的交换和运输的等式。然后从机械平衡和流体平衡的弱配方中获得全套耦合有限元方程。通过对围堰渐进脱水的土壤反应分析来评估所提出的制剂的性能。流体机械耦合和捕获管道发作和传播的能力对于在这些结构中通常观察到的限制状态的解释至关重要。

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