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A modelling framework was assembled by integrating a landscape dynamic model, a soil erosion model and synthetic precipitation datasets generated through a Monte Carlo simulation.
But the erosion model was developed independent of G.I.S. technology and was not compatible with it.
The snow accumulation and erosion model is presented and discussed.
Additionally, a grid study was performed with coupling an erosion model with CFD simulations.
Afterwards, a grid study was carried out by coupling an erosion model with CFD simulations.
In addition, the discrete phase model (DPM) model is selected for the discrete phase model, and the Ahlert erosion model is selected for the erosion model.
The grid study was first performed by simulating the hydrocyclone in ANSYS-CFX without coupling the erosion model.
RUSLE is one of the most widely used soil erosion model worldwide.
The grid study was initially carried out by simulating the hydrocyclone in ANSYS-CFX without coupling the erosion model.
The key parameters in the erosion model were those that affected hydraulic and splash erosion rates.
The method was based on a validated erosion model and response surface methodology.
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