TY - JOUR
T1 - A random pairing collision model (RPCM) for improving the DEM simulation of particle-bed collisions in aeolian sand transport
AU - Li, Zhiqiang
AU - Wang, Yuan
AU - Zhang, Yang
AU - Wang, Li
PY - 2014/1/2
Y1 - 2014/1/2
N2 - The impact of sand particles with bed is the key process in aeolian sand transport. In this article, the discrete element method (DEM) is embedded to the large-eddy simulation (LES) method for simulating the wind-blown sand two-phase flow. A numerical model is developed to stochastically describe collisions between sand particles and bed within the DEM approach. Statistical features of major simulated motion parameters are undertaken and compared with measured data to verify the model. The probability distribution of the kinetic energy restitution coefficient is normal, and the probability density functions of the impact and lift-off angles are consistent with reported results. The probability density functions of three-dimensional impact and lift-off velocities are addressed in further detail.
AB - The impact of sand particles with bed is the key process in aeolian sand transport. In this article, the discrete element method (DEM) is embedded to the large-eddy simulation (LES) method for simulating the wind-blown sand two-phase flow. A numerical model is developed to stochastically describe collisions between sand particles and bed within the DEM approach. Statistical features of major simulated motion parameters are undertaken and compared with measured data to verify the model. The probability distribution of the kinetic energy restitution coefficient is normal, and the probability density functions of the impact and lift-off angles are consistent with reported results. The probability density functions of three-dimensional impact and lift-off velocities are addressed in further detail.
KW - Aeolian sand transport
KW - discrete element method
KW - large-eddy simulation
KW - particle-bed collision
KW - statistical analysis
UR - https://www.scopus.com/pages/publications/84889680621
U2 - 10.1080/02726351.2013.829542
DO - 10.1080/02726351.2013.829542
M3 - 文章
AN - SCOPUS:84889680621
SN - 0272-6351
VL - 32
SP - 86
EP - 93
JO - Particulate Science and Technology
JF - Particulate Science and Technology
IS - 1
ER -