Breaking size-segregation waves and mobility feedback in dense granular avalanches

被引:0
|
作者
K. van der Vaart
A. R. Thornton
C. G. Johnson
T. Weinhart
L. Jing
P. Gajjar
J. M. N. T. Gray
C. Ancey
机构
[1] Stanford University,Civil and Environmental Engineering
[2] University of Twente,Multiscale Mechanics, ET/MESA+
[3] The University of Hong Kong,Department of Civil Engineering
[4] University of Manchester,Henry Moseley X
[5] University of Manchester,Ray Imaging Facility, School of Materials
[6] École Polytechnique Fédérale de Lausanne,School of Mathematics and Manchester centre for Nonlinear Dynamics
来源
Granular Matter | 2018年 / 20卷
关键词
Avalanches; Size-segregation; Mobility feedback; Basal slip; Moving-bed channel;
D O I
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中图分类号
学科分类号
摘要
Through experiments and discrete particle method (DPM) simulations we present evidence for the existence of a recirculating structure, that exists near the front of dense granular avalanches, and is known as a breaking size-segregation (BSS) wave. This is achieved through the study of three-dimensional bidisperse granular flows in a moving-bed channel. Particle-size segregation gives rise to the formation of a large-particle-rich front and a small-particle-rich tail with a BSS wave positioned between the tail and front. We experimentally resolve the structure of the BSS wave using refractive-index matched scanning and find that it is qualitatively similar to the structure observed in DPM simulations. Our analysis demonstrates a relation between the concentration of small particles in the flow and the amount of basal slip, in which the structure of the BSS wave plays a key role. This leads to a feedback between the mean bulk flow velocity and the process of particle-size segregation. Ultimately, these findings shed new light on the recirculation of large and small grains near avalanche fronts and the effects of this behaviour on the mobility of the bulk flow.
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