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Numerical Modeling and Analysis of Suffusion Patterns for Granular Soils

机译:粒状土壤中渗流规律的数值模拟与分析

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Migration of fine particles through constrictions between coarser fabrics by seepage force is the process termed suffusion. A coarser soil structure resulted from fines loss will lead to change in hydraulic and mechanical properties such as increased permeability, decreased strength and stability which can cause significant settlement or failure of the levees, embankments and dams. This paper presents a coupled Computational Fluid Dynamics and Discrete Element Method (CFD-DEM) approach to model the suffusion process. The concept of transition layer is defined and used to explain the suffusion process and patterns. The effects of particle size distribution, seepage velocity, fines content and initial void ratio on the transition layer in suffusion are investigated.
机译:细颗粒通过渗透力在较粗的织物之间的收缩处迁移的过程称为渗入。细粒流失导致的土壤结构较粗糙,将导致水力和机械性能发生变化,例如渗透性增加,强度和稳定性降低,这可能导致堤坝,路堤和大坝大量沉降或破坏。本文提出了一种耦合计算流体动力学和离散元方法(CFD-DEM)的方法来模拟注水过程。定义了过渡层的概念,并用于解释填充过程和模式。研究了颗粒分布,渗流速度,细粉含量和初始空隙率对注浆过渡层的影响。

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