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Pressure and shear stress caused by raindrop impact at the soil surface: Scaling laws depending on the water depth
被引:36
作者:
Bako, Amina Nouhou
[1
,2
]
Darboux, Frederic
[1
,5
]
James, Francois
[2
]
Josserand, Christophe
[3
,4
]
Lucas, Carine
[2
]
机构:
[1] INRA, UR0272, UR Sci Sol, Ctr Rech Val Loire, F-45075 Orleans, France
[2] Univ Orleans, FR CNRS 2964, Federat Denis Poisson, MAPMO,UMR CNRS 7349, F-45067 Orleans, France
[3] Sorbonne Univ, CNRS, F-75005 Paris, France
[4] Univ Paris 06, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
[5] INRA, Lab Sols & Environm, UMR 1120, F-54518 Vandoeuvre Les Nancy, France
关键词:
raindrop;
Navier-Stokes equations;
pressure;
shear stress;
DROP IMPACT;
SEDIMENT TRANSPORT;
ADAPTIVE SOLVER;
AIR;
EROSION;
FRAGMENTATION;
DETACHMENT;
SIZE;
FLOW;
D O I:
10.1002/esp.3894
中图分类号:
P9 [自然地理学];
学科分类号:
0705 ;
070501 ;
摘要:
Raindrop impact is an important process in soil erosion. Through its pressure and shear stress, raindrop impact causes a significant detachment of the soil material, making this material available for transport by sheet flow. Thanks to the accurate Navier-Stokes equations solver Gerris, we simulate the impact of a single raindrop of diameter D, at terminal velocity, on water layers of different thickness h: D/10, D/5, D/3, D/2, D, 2D, in order to study pressures and shear stresses involved in raindrop erosion. These complex numerical simulations help in understanding precisely the dynamics of the raindrop impact, quantifying in particular the pressure and the shear stress fields. A detailed analysis of these fields is performed and self-similar structures are identified for the pressure and the shear stress on the soil surface. The evolution of these self-similar structures are investigated as the aspect ratio h/D varies. We find that the pressure and the shear stress have a specific dependence on the ratio between the drop diameter and the water layer thickness, and that the scaling laws recently proposed in fluid mechanics are also applicable to raindrops, paving the road to obtain effective models of soil erosion by raindrops. In particular, we obtain a scaling law formula for the dependence of the maximum shear stress on the soil on the water depth, a quantity that is crucial for quantifying erosion materials. Copyright (C) 2016 John Wiley & Sons, Ltd.
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页码:1199 / 1210
页数:12
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