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Validation of a CFD model of wind turbine wakes with terrain effects

机译:验证具有地形影响的风力涡轮机尾流的CFD模型

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摘要

Wind turbine wakes and the neutral atmospheric wind flow over complex terrain are investigated in this paper using the Computational Fluid Dynamics software Fluent. An actuator disc model based on the Blade Element Theory is implemented for the simulation of the rotor effects. Assuming a 3-D, steady-state flow, the Reynolds-averaged Navier-Stokes equations are solved, along with the Reynolds Stress Model to account for the anisotropy of atmospheric turbulence. The approach is initially validated with widely documented wake measurements over flat terrain. Additionally, the model of a neutral atmospheric flow over a real hill is validated with full-scale observations. Ultimately, a coastal complex terrain wind farm is examined and results are validated with SCADA measurements and compared with simulations using the wind modelling software WAsP.
机译:本文使用计算流体动力学软件Fluent对复杂地形上的风力涡轮机尾流和中性大气风流进行了研究。实现了基于叶片元素理论的执行器盘模型来模拟转子效果。假设为3-D稳态流,则求解雷诺平均Navier-Stokes方程以及雷诺应力模型以解决大气湍流的各向异性。该方法最初通过在平坦地形上广泛记录的尾波测量进行验证。此外,通过全面观测可以验证实际山丘上的中性大气流模型。最终,对沿海复杂地形风电场进行了检查,并通过SCADA测量验证了结果,并与使用风力建模软件WAsP的模拟进行了比较。

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