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  4. Intercomparison of Terrain-Following Coordinate Transformation and Immersed Boundary Methods for Large-Eddy Simulation of Wind Fields over Complex Terrain
 
conference poster not in proceedings

Intercomparison of Terrain-Following Coordinate Transformation and Immersed Boundary Methods for Large-Eddy Simulation of Wind Fields over Complex Terrain

Fang, Jiannong  
•
Porté-Agel, Fernando  
2016
22nd Symposium on Boundary Layers and Turbulence

We here perform an intercomparison of TFCT and IBM for large-eddy simulation of a turbulent wind field over a three-dimensional hill, for which wind-tunnel measurements are available for validation. The experimental dataset contains both vertical and horizontal profiles of mean velocities and variances, which allows an in-depth comparison of the numerical models. For the TFCT, a new algorithm for solving the pressure Poisson equation in the transformed coordinate system is proposed and first validated for a laminar flow over periodic two-dimensional hills by comparing with available benchmark solutions. Since the slopes of the three-dimensional hill are not steep, TFCT, which is free from implementation errors for the wall model, is preferable to IBM. The effects of sub-grid scale models and different schemes used to implement wall boundary conditions for IBM are studied. Discrepancies between the results obtained by TFCT and IBM are observed near the surface. The source of errors and possible ways to improve the IBM implementation are discussed.

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Type
conference poster not in proceedings
Author(s)
Fang, Jiannong  
Porté-Agel, Fernando  
Date Issued

2016

Written at

EPFL

EPFL units
WIRE  
Event nameEvent placeEvent date
22nd Symposium on Boundary Layers and Turbulence

Salt Lake City, Utah

June 20-24, 2016

Available on Infoscience
August 9, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/128466
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