Jenkins James T, Berzi Diego
Cornell University, Ithaca, New York 14853, USA.
Politecnico di Milano, 20133 Milano, Italy.
Phys Rev E. 2016 Nov;94(5-1):052904. doi: 10.1103/PhysRevE.94.052904. Epub 2016 Nov 8.
We derive expressions for the rates of erosion and deposition at the interface between a dense, dry, inclined granular flow and an erodible bed. In obtaining these, we assume that the interface between the flowing grains and the bed moves with the speed of a pressure wave in the flow, for deposition, or with the speed of a disturbance through the contacting particles in the bed, for erosion. We employ the expressions for the rates of erosion and deposition to show that after an abrupt change in the angle of inclination of the bed the characteristic time for the motion of the interface is much shorter than the characteristic time of the flow. This eliminates the need for introducing models of erosion and deposition rate in the mass balance; and the instantaneous value of the particle flux is the same function of the instantaneous value of the flow depth as in a steady, uniform flow.
我们推导了稠密、干燥、倾斜颗粒流与可侵蚀床面之间界面处的侵蚀率和沉积率表达式。在推导过程中,我们假设流动颗粒与床面之间的界面,对于沉积情况,以压力波在流中的速度移动;对于侵蚀情况,以扰动穿过床面中接触颗粒的速度移动。我们利用侵蚀率和沉积率表达式表明,在床面倾斜角突然变化后,界面运动的特征时间远短于流动的特征时间。这就无需在质量平衡中引入侵蚀和沉积率模型;并且颗粒通量的瞬时值与稳定均匀流中一样,是流动深度瞬时值的相同函数。