Effect of computational grid on accurate prediction of a wind turbine rotor using delayed detached-eddy simulations

被引:0
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作者
Galih Bangga
Pascal Weihing
Thorsten Lutz
Ewald Krämer
机构
[1] University of Stuttgart,Institute of Aerodynamics and Gas Dynamics
关键词
Aerodynamics; CFD; DES; Grid topology; Turbulence modeling; Wind turbine;
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摘要
The present study focuses on the impact of grid for accurate prediction of the MEXICO rotor under stalled conditions. Two different blade mesh topologies, O and C-H meshes, and two different grid resolutions are tested for several time step sizes. The simulations are carried out using Delayed detached-eddy simulation (DDES) with two eddy viscosity RANS turbulence models, namely Spalart-Allmaras (SA) and Menter Shear stress transport (SST) k-ω. A high order spatial discretization, WENO (Weighted essentially nonoscillatory) scheme, is used in these computations. The results are validated against measurement data with regards to the sectional loads and the chordwise pressure distributions. The C-H mesh topology is observed to give the best results employing the SST k-ω turbulence model, but the computational cost is more expensive as the grid contains a wake block that increases the number of cells.
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页码:2359 / 2364
页数:5
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