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Internal Erosion of earth structures as a coupled hydromechanical process

机译:地球结构的内部侵蚀作为耦合的流体机械过程

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The present paper describes a model of internal erosion of earth structures based on rigorous thermodynamic principles and the theory of porous media. The focus is concerned with the initial stage of internal erosion, prior to the formation of macroscopic channels, when the continuum approach is applicable. The soil skeleton saturated by a pore fluid is treated as the superposition of 3 continua in interaction; the pore fluid itself consists of a mixture of water and eroded particles. The erosion kinetics is based on the shear stress developed at the solid-fluid interface. The applicability of the model is illustrated by a finite element simulation. The simulations show how the phenomenon of piping preferentially arises in regions where hydraulic gradients are critical. Effects of mechanical degradations due to internal erosion are demonstrated.
机译:本文介绍了基于严格的热力学原理和多孔介质理论的地球结构的内部侵蚀模型。当连续性方法适用时,重点涉及内部侵蚀的初始阶段,在宏观渠道之前。通过孔隙流体饱和的土壤骨架被视为3连续互动的叠加;孔流体本身由水和侵蚀颗粒的混合物组成。侵蚀动力学基于固体流体界面在剪切应力基础上。通过有限元模拟来说明模型的适用性。模拟表明管道的现象是如何在液压梯度至关重要的区域中出现的。证明了由于内部侵蚀引起的机械降解的影响。

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