首页> 外文期刊>Applied Sciences >A Free Interface Model for Static/Flowing Dynamics in Thin-Layer Flows of Granular Materials with Yield: Simple Shear Simulations and Comparison with Experiments
【24h】

A Free Interface Model for Static/Flowing Dynamics in Thin-Layer Flows of Granular Materials with Yield: Simple Shear Simulations and Comparison with Experiments

机译:具有产量:简单剪切模拟和实验的简单剪切模拟和实验比较的晶粒薄层流动中的静态/流动动力学的自由界面模型

获取原文
           

摘要

Flows of dense granular materials comprise regions where the material is flowing, and regions where it is static. Describing the dynamics of the interface between these two regions is a key issue to understanding the erosion and deposition processes in natural environments. A free interface simplified model for non-averaged thin-layer flows of granular materials has been previously proposed by the authors. It is a coordinate-decoupled (separated variables) version of a model derived by asymptotic expansion from an incompressible viscoplastic model with Drucker-Prager yield stress. The free interface model describes the evolution of the velocity profile as well as the position of the transition between static and flowing material. It is formulated using the coordinate Z in the direction normal to the topography and contains a source term that represents the opposite of the net force acting on the flow, including gravity, pressure gradient, and internal friction. In this paper we introduce two numerical methods to deal with the particular formulation of this model with a free interface. They are used to evaluate the respective role of yield and viscosity for the case of a constant source term, which corresponds to simple shear viscoplastic flows. Both the analytical solution of the inviscid model and the numerical solution of the viscous model (with a constant viscosity or the variable viscosity of the μ ( I ) rheology) are compared with experimental data. Although the model does not describe variations in the flow direction, it reproduces the essential features of granular flow experiments over an inclined static layer of grains, including the stopping time and the erosion of the initial static bed, which is shown to be closely related to the viscosity for the simple shear case.
机译:致密粒状物流的流量包括材料流动的区域,以及其静态的区域。描述这两个区域之间接口的动态是了解自然环境中的侵蚀和沉积过程的关键问题。作者先前提出了一种用于粒状材料的非平均薄层流动的自由界面简化模型。它是一种由来自不可压缩的粘性模型的渐近扩展来自具有Drucker-Prager屈服应力的弯曲膨胀的模型的坐标 - 解耦(分离的变量)版本。自由界面模型描述了速度曲线的演变以及静态和流动材料之间的过渡位置。它在正常的方向上使用坐标z配制,并且包含表示作用在流动上的净力的源术语,包括重力,压力梯度和内部摩擦。在本文中,我们介绍了两个数字方法来处理此模型的特定配方,使用自由界面。它们用于评估恒定源期恒定术语的产率和粘度的各自作用,这对应于简单的剪切粘性粘性流。与实验数据进行比较了活性模型的分析溶液和粘性模型的数值溶液(具有恒定粘度或μ(I)流变学的可变粘度)。尽管模型未描述流动方向的变化,但是它在倾斜的静态层上再现粒状流动实验的基本特征,包括初始静态床的止动时间和腐蚀,这被证明与...密切相关简单剪切壳的粘度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号