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Numerical simulations of a large offshore wind turbine exposed to turbulent inflow conditions

机译:大型海洋风力发电机暴露于湍流条件下的数值模拟

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This work is intended to investigate the aerodynamic responses of a large generic 10-MW offshore wind turbine under turbulent inflow conditions. The nonlinear lifting line free vortex wake simulations approach is employed for this purpose, computed using the QBlade code. In these studies, the effects of a three-dimensional correction model for the airfoil polars were studied in advance. For this purpose, the blade element momentum computations employing the corrected polars are performed and compared to computational fluid dynamics simulations, and a good agreement is obtained between both employed approaches. Background turbulence is then imposed in the QLLT simulations with the turbulence intensities ranging from low to high turbulence levels (3%–15%). Furthermore, the impact of wind shear from different locations (offshore and onshore) is investigated in this work.
机译:这项工作旨在研究湍流流入条件下大型10兆瓦通用海上风力发电机的空气动力响应。为此,采用了非线性提升线自由涡流唤醒仿真方法,该方法使用QBlade代码进行计算。在这些研究中,预先研究了机翼极性的三维校正模型的效果。为此,执行使用校正后的极点的叶片要素动量计算,并将其与计算流体动力学模拟进行比较,并且在两种采用的方法之间均取得了良好的一致性。然后在QLLT模拟中强加背景湍流,其湍流强度范围从低到高(3%–15%)。此外,这项工作还研究了来自不同位置(海上和陆上)的风切变的影响。

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