首页> 外文会议>All-Russian Conference with International Participation on Modern Problems of Continuum Mechanics and Explosion Physics >Influence of bed material entrainment and non-Newtonian rheology on turbulent geophysical flows dynamics. Numerical study
【24h】

Influence of bed material entrainment and non-Newtonian rheology on turbulent geophysical flows dynamics. Numerical study

机译:床材料夹带和非牛顿流变学对湍流地球物理流动的影响。数值研究

获取原文

摘要

This paper deals with the mathematical and numerical modeling of the propagation stage of geophysical gravity-driven flows, such as snow avalanches, mudflows, and rapid landslides. New mathematical models are presented which are based on full, not-depth-averaged equations of mechanics of continuous media. The models account for three important issues: non-Newtonian rheology of the moving material, entrainment of the bed material by the flow, and turbulence. The main objective is to investigate the effect of these three factors on the flow dynamics and on the value of the entrainment rate. To exclude the influence of many other factors, e.g., the complicated slope topography, only the motion down a long uniform slope with a constant inclination angle is studied numerically. Moreover, the entire flow from the front to the rear area was not modeled, but only its middle part where the flow is approximately uniform in length. One of the qualitative results is that in motion along homogeneous slope the mass entrainment increases the flow velocity and depth while the entrainment rate at large time tends to become constant which depends on the physical properties of the flow and the underlying material but not on the current values of the flow velocity and depth.
机译:本文涉及地球物理重力驱动流动的传播阶段的数学和数值模型,例如雪崩,泥石流和快速滑坡。提出了基于连续介质的机械机械的完全不深度平均方程的新数学模型。该模型占三个重要问题:移动材料的非牛顿流变学,通过流动夹带床材料,以及湍流。主要目的是调查这三种因素对流动动力学和夹带率的价值的影响。为了排除许多其他因素的影响,例如复杂的斜率形貌,在数值上仅研究具有恒定倾斜角的长长均匀斜率的运动。此外,从前方到后部区域的整个流量没有建模,但是只有其中间部分,其中流量大致均匀。定性结果之一是沿均匀斜率的运动,质量夹带增加了流速和深度,同时大的夹带速率趋于变得恒定,这取决于流动的物理性质和下面的材料,而是不在电流上的恒定流速和深度的值。

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