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Study of the Particle Shape Influence on Soil Erodibility Using Coupled CFD-DEM Modeling

机译:使用耦合CFD-DEM模拟研究粒子形状对土壤易用的影响

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Researches show erodibility of sand is mainly determined by the grain size, or the mass median diameter. The influence of particle shape on sand erodibility has been neglected for simplification. Here using a coupled CFD-DEM method, the influence of sand particle shape on soil erodibility has been analyzed. The model was built prototyping from the Erosion Function Apparatus (EFA) developed by Briaud, where soil sample inside a Shelby tube is extruded into a rectangular flow channel with an extrusion height of 1 mm, and subjected to the erosion of flowing water. Critical shear stress and erosion rate of the soil sample can be obtained through the EFA test. In the simulating cases, spherical particles and non-spherical particles with aspect ratios of 1.10, 1.20 and 1.30 have been tested and compared. The results show grain angularity plays an important role in the formation of erosion resistance. For spherical particles, due to the lack of rolling resistance, no critical velocity has been observed. For non-spherical particles, with the increase of aspect ratio, the critical velocity increases indicating a higher erosion resistance. Erosion rate increases linearly with flow velocity, which is consistent with experimental studies.
机译:研究表明沙子的易蚀,主要由晶粒尺寸或质量中值直径决定。为了简化,颗粒形状对砂蚀的影响已经忽略了。这里使用耦合CFD-DEM方法,分析了砂颗粒形状对土壤腐蚀的影响。该模型由BRIAUD开发的侵蚀功能设备(EFA)构建原型,其中搁置管内的土壤样品被挤出成螺母,挤出高度为1毫米,并经受流动的水的腐蚀。可以通过EFA测试获得土壤样品的临界剪切应力和侵蚀速率。在模拟案例中,已经过测试并比较了具有1.10,1.20和1.30的横向比的球形颗粒和非球形颗粒。结果表明晶粒角度在形成抗腐蚀性中起着重要作用。对于球形颗粒,由于缺乏滚动阻力,没有观察到临界速度。对于非球形颗粒,随着纵横比的增加,临界速度增加表明耐腐蚀性较高。侵蚀速率随着流速而线性增加,这与实验研究一致。

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