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Microscopic Aspects of Internal Erosion Processes in Gap-Graded Soils

机译:间隙分级土壤中侵蚀过程的显微镜方面

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Internal erosion processes in soils play an important role on the instability analyses of hillslopes and embankment dams. Field observations support the assumption that the internal fine particles may migrate among the channels formed by coarser particles under the high hydraulic gradient condition, where the enrichment of fine particles has great potential on the increase of local pore-water pressure due to their low permeability. Although a number of traditional seepage experiments in laboratory have provided data showing the effect of soil properties on the macroscopic permeability, however, much remains unknown particularly for microscopic erosion processes. Therefore, in the current study, a series of one-dimensional soil seepage tests were firstly conducted by controlling the coarse to fine particle size ratio, and then the X-ray tomography tests were carried out at beamline BL13Wl at the Shanghai Synchrotron Radiation Facility (SSRF) to obtain the particle distributions and three-dimensional pore structures. By coupling discrete element method (DEM) with Darcy's law, the internal particle erosion processes were back-analyzed. The results reveal that the preferential erosion can occur in the top and bottom regions of the soil specimen, and the migrated fine particles can be supplied when the pore size is large enough along the seepage path.
机译:土壤中的内部侵蚀过程对山坡和堤坝水坝的不稳定分析起着重要作用。现场观察支持假设内部细颗粒可以在高液压梯度条件下由较粗颗粒形成的通道中迁移,其中细颗粒的富集由于其低渗透性而导致局部孔隙压力的增加。尽管实验室中的许多传统渗流实验已经提供了显示土壤性质对宏观渗透性的影响的数据,但是对于显微腐蚀过程特别是尤其是未知的。因此,在目前的研究中,首先通过控制粗略粒度比来进行一系列一维土壤渗流试验,然后在上海同步辐射设施的BeamLine BL13WL下进行X射线断层扫描试验( SSRF)以获得粒子分布和三维孔结构。通过将离散元素法(DEM)与Darcy的定律耦合,重洗了内部粒子侵蚀过程。结果表明,在土壤样本的顶部和底部区域中可以发生优先腐蚀,并且当孔径沿渗流路径足够大时,可以提供迁移的细颗粒。

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