Publication | Open Access
CFD Studies on Wind Turbines in Complex Terrain under Atmospheric Inflow Conditions
40
Citations
10
References
2014
Year
Floating Wind TurbineMeteorologyAeroacousticsAtmospheric Inflow ConditionsEngineeringAtmospheric TurbulenceWind Power GenerationAerospace EngineeringWind TurbinesEddy SimulationCivil EngineeringDetached Eddy SimulationComputational Fluid DynamicsAerodynamicsModeling And SimulationCfd StudiesWind EngineeringWind Energy Technology
This article presents various detached eddy simulation (DES) results of a commercial wind turbine under multiple inflow conditions in complex and flat terrain. Challenges regarding the meshing process of wind turbines in complex terrain are described and an approach to overcome those is presented. The main focus of the evaluation is blade load and power response to inflow turbulence and terrain effects, e.g. the change of the inclination angle or the speed-up due to a hill. To separate the different influences, the complexity of the simulation setup is increased stepwise. Starting with a baseline simulation in flat terrain and uniform inflow over adding atmospheric turbulence to a complex terrain simulation of a fully meshed rotating 3D wind turbine under atmospheric inflow.
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