Numerical Modeling on Fluid-Solid Coupled Erosion in Sandy Gravel Soils Containing a Suspended Cut-Off Wall

IF 0.8 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL
S. Wang, Y. Tang, Q. Zhong, Y. Wang
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引用次数: 0

Abstract

A cut-off wall is the simplest and most effective preventive measure to mitigate the internal erosion of a dike foundation. However, flow directions around a cut-off wall vary and dike foundations are composed of various soil particles. Thus, to investigate the effects of flow direction and soil composition on internal erosion in a cut-off wall structure, we used a coupled distinct element method with the Darcy fluid model. We discovered that the hydraulic gradient is the main factor affecting internal erosion with larger hydraulic gradients producing faster increases in eroded mass. Moreover, the erosion mechanism along the cut-off wall was related to the flow direction and the fine particle content. Downstream of the cut-off wall, the upward flow made the soil matrix loosen gradually, which assisted soil particle erosion. Upstream of the cut-off wall, soil with higher fine particle content was compressed gradually under the action of the downward flow; however, the downward flow assisted the migration of soil particles with lower fine particle content.

含悬浮切壁的砂砾土中流固耦合侵蚀的数值模拟
截流墙是减轻堤基内部侵蚀最简单有效的预防措施。然而,截流墙周围的流向各不相同,而且堤基由不同的土壤颗粒组成。因此,为了研究流向和土壤成分对截流墙结构内部侵蚀的影响,我们采用了与达西流体模型耦合的独特元素法。我们发现,水力梯度是影响内侵蚀的主要因素,水力梯度越大,侵蚀量增加越快。此外,沿截流壁的侵蚀机制与流向和细颗粒含量有关。在截流墙下游,上升的水流使土壤基质逐渐疏松,从而促进了土壤颗粒的侵蚀。在截流墙上游,细颗粒含量较高的土壤在向下的水流作用下逐渐被压缩,但向下的水流却有助于细颗粒含量较低的土壤颗粒的迁移。
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来源期刊
CiteScore
1.50
自引率
12.50%
发文量
65
审稿时长
6 months
期刊介绍: Soil Mechanics and Foundation Engineering provides the Western engineer with a look at Russian advances in heavy construction techniques. Detailed contributions by experienced civil engineers offer insights into current difficulties in the field, applicable innovative solutions, and recently developed guidelines for soil analysis and foundation design.
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