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A Stress-controlled Erosion Apparatus for Studying Internal Erosion in Soils

机译:用于研究土壤内部侵蚀的应力控制侵蚀装置

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Suffusion in soil involves selective erosion of fine particles within the matrix of coarse soil particles under seepage flow. Such loss of fine particles affects the hydraulic and mechanical behavior of the soil. In this study, a stress-controlled erosion apparatus was developed to investigate the initiation and development of suffusion under complex stress states and to study the effect of suffusion on soil stress-strain behavior. The apparatus allows independent control of hydraulic gradient and stress state. The hydraulic gradient is controlled using a water-head control method. The eroded soil and the outflow rate are measured using a soil collection system and a water collection system, respectively. The measurements can be used to study the erosion rate and variations in soil permeability during the erosion process. A series of erosion tests was conducted on a gap-graded soil under the same confining stress but different deviatoric stresses. The results show that the maximum erosion rate, the variations in soil permeability, and the total deformation of the soil specimen increase with the increase of deviatoric stress. After the loss of a significant amount of fine particles in the soil, the stress-strain behavior of the test soil changes from dilative behavior to contractive behavior.
机译:土壤中的渗透涉及在渗流作用下,粗粒颗粒基质内细颗粒的选择性侵蚀。细颗粒的这种损失影响土壤的水力和机械性能。在这项研究中,开发了一种应力控制的侵蚀设备,以研究复杂应力状态下注水的发生和发展,并研究注水对土壤应力-应变行为的影响。该设备允许独立控制水力梯度和应力状态。使用水头控制方法控制水力梯度。分别使用土壤收集系统和水收集系统测量侵蚀土壤和流出速率。这些测量可用于研究侵蚀过程中的侵蚀速率和土壤渗透率的变化。在相同的限制应力但不同的偏应力下,对间隙分级的土壤进行了一系列侵蚀测试。结果表明,随着偏应力的增加,最大侵蚀速率,土壤渗透率的变化和土壤试样的总变形增加。在土壤中大量细小颗粒损失后,试验土壤的应力应变行为从膨胀行为变为收缩行为。

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