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Granular flows on erodible and non erodible inclines

机译:易蚀和不可蚀斜坡上的颗粒流

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Granular flows occur in nature on hard surfaces but more frequently on erodible layers of different origin, thickness and properties. Experimental test results are available for testing analytical and numerical solutions, validating them and the definition of the material properties. A series of numerical simulations was performed via FEM analyses considering the granular material to behave as an elasto-plastic Mohr-Coulomb solid. The obtained results were compared with experimental observations of spreading over horizontal and inclined chutes, on both rigid and erodible layers. It turns out that the numerical model is able to capture the influence of the test geometry in case of both rigid and erodible surfaces, but it fails to replicate the excessive runout observed in the presence of layers close to the critical slope angle. It is suggested that this difference could be originated by the meta-stable conditions in which erodible layers are deposited in the experiments considered from the literature. For granular flows moving over a rigid surface both runout and peak front velocity increase with the column aspect ratio, whereas runout increases more rapidly for chute slope larger than , in agreement with published experimental results. Much more complex is the understanding of granular flows over erodible layers. The simulations replicate the generation of waves due to the erosion of the erodible layer, as well the sequential formation of multiple shear bands inside the collapsing column causing the rapid release of multiple subvolumes.
机译:颗粒流自然发生在硬质表面上,但更常见于具有不同起源,厚度和特性的易蚀层上。实验测试结果可用于测试分析和数值解决方案,对其进行验证以及确定材料特性。考虑到粒状材料表现为弹塑性莫尔-库仑固体,通过有限元分析进行了一系列数值模拟。将获得的结果与在刚性和易蚀层上在水平和倾斜滑道上分布的实验观察结果进行比较。事实证明,在刚性和易蚀表面的情况下,数值模型都能够捕获测试几何形状的影响,但无法复制存在接近临界坡度角的层时观察到的过度跳动。有人认为,这种差异可能是由亚稳态条件引起的,在亚稳态条件下,在从文献中考虑的实验中沉积了易蚀层。对于在刚性表面上移动的粒状流,跳动和峰值前速度都随柱长宽比的增加而增加,而斜率大于的斜道的跳动增加得更快,这与已发表的实验结果一致。对可蚀层上的粒状流的理解要复杂得多。该模拟复制了由于易蚀层的侵蚀而产生的波,以及在塌陷柱内部顺序形成多个剪切带,从而导致多个子体积的快速释放。

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