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Using the annular shear cell as a rheometer for rapidly sheared granular materials: a DEM study

机译:使用环形剪切池作为快速剪切颗粒材料的流变仪:DEM研究

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Discrete element simulations are performed to examine the kinematics of granular shear flows in an annular shear cell at high shearing rates. The interstitial fluid is absent and gravity is included. To investigate the feasibility of using annular shear cells as rheometers for rapidly sheared dense granular materials, this study focuses on the coupled effect of boundary conditions and the relative particle to shear cell size. Four different particle diameters and three different boundary types are used in the same annular shear cell. These cases correspond to physical experiments reported earlier by the authors. For many cases both shearing and non-shearing regions coexist. The transition from partially to fully shearing flow is shown to depend on the particle diameter, solids concentration, and the boundary conditions. The particles form layers at high solids concentration and with larger particles, as evidenced by the reduction of the flow diffusivity. The slip velocity at the bottom boundary is absent; at the top it varies. This variation is sensitive to the type of boundaries but insensitive to bulk solids concentration. This study shows the interconnectivity of the boundary, the particle to shear cell size, and the flow condition in an annular shear cell. Prior to using these cells as rheometers, a thorough understanding of this interconnectivity needs to be developed.
机译:进行离散元素模拟以检查高剪切速率下环形剪切单元中颗粒剪切流的运动学。缺少组织液,并且包括重力。为了研究使用环形剪切池作为快速剪切致密颗粒材料的流变仪的可行性,本研究着重于边界条件和相对颗粒与剪切池尺寸的耦合效应。在同一环形剪切单元中使用四种不同的粒径和三种不同的边界类型。这些情况与作者先前报道的物理实验相对应。在许多情况下,剪切区域和非剪切区域同时存在。从部分剪切流到完全剪切流的过渡取决于颗粒直径,固体浓度和边界条件。颗粒形成高固体浓度且具有较大颗粒的层,这由流动扩散率的降低证明。底部边界处没有滑移速度;在顶部,它有所不同。这种变化对边界的类型敏感,但对散装固体浓度不敏感。这项研究显示了边界,颗粒与剪切单元尺寸的相互联系以及环形剪切单元中的流动条件。在将这些单元用作流变仪之前,需要深入了解这种互连性。

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