Title of article
Eulerian–Lagrangian simulation of aeolian sand transport
Author/Authors
Kang، نويسنده , , Liqiang and Guo، نويسنده , , Liejin، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
10
From page
111
To page
120
Abstract
A numerical investigation of aeolian sand transport is performed with an Eulerian–Lagrangian model. In this model, the gas phase is described by the volume-averaged Navier-Stokes equations of two-phase flow. The particle motion is obtained by solving Newtonʹs second law of motion taking into account the inter-particle collisions, where a soft sphere model is used to describe inter-particle collisions. The dynamic process of aeolian sand transport is simulated. The simulation results show that the variation of mean horizontal velocity of the particles with height can be expressed by a logarithmical function or a power function at h > 0.02 m, and the power function can be described below 0.02 m. The sand mass flux decreases exponentially with height for h > 0.02 m, but there is a deviation from the exponential decay due to the creep grains in the near-bed region. It is also shown that the inter-particle collisions play an important role in sand saltation. Therefore the present numerical model is capable of being applied to the study of windblown sand movement.
Keywords
Aeolian sand transport , Two-phase flow , Soft sphere , Eulerian–Lagrangian simulation
Journal title
Powder Technology
Serial Year
2006
Journal title
Powder Technology
Record number
1696183
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