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Two-way coupled Eulerian-Eulerian simulations of drifting snow with viscous treatment of the snow phase (CROSBI ID 242380)

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Boutanios, Ziad ; Jasak, Hrvoje Two-way coupled Eulerian-Eulerian simulations of drifting snow with viscous treatment of the snow phase // Journal of wind engineering and industrial aerodynamics, 169 (2017), 67-76. doi: 10.1016/j.jweia.2017.07.006

Podaci o odgovornosti

Boutanios, Ziad ; Jasak, Hrvoje

engleski

Two-way coupled Eulerian-Eulerian simulations of drifting snow with viscous treatment of the snow phase

A novel two-way coupled Eulerian-Eulerian CFD formulation is presented, to simulate drifting snow based on a new viscous model of the snow phase. This approach allows explicit resolution of the saltation layer without resorting to empiricism, unlike other Eulerian-Eulerian approaches based on mixture formu- lations and one-way coupling. Initial validations carried out against detailed snowflux, airflow, and turbulence measurements in a controlled drifting snow wind tunnel experiment show the present approach is capable of accurately pre- dicting snowflux, airflow profiles, as well as snow transport under developing and nearly developed flow conditions, when polydispersity is taken into account.

drifting snow, Eulerian multiphase, viscosity, Gamma distribution, wind tunnel, suspension layer, saltation layer, snow flux

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Podaci o izdanju

169

2017.

67-76

objavljeno

0167-6105

10.1016/j.jweia.2017.07.006

Povezanost rada

Strojarstvo

Poveznice
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