首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >CALCULATION OF THE UNSTEADY AIRLOADS ON WIND TURBINE BLADES UNDER YAWED FLOW
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CALCULATION OF THE UNSTEADY AIRLOADS ON WIND TURBINE BLADES UNDER YAWED FLOW

机译:偏航下风轮机叶片非定常空气载荷的计算

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摘要

A dynamic stall model is coupled with the blade element momentum theory to calculate the cyclic variation of the aerodynamic characteristics of the wind turbine in yawed flow. In the dynamic stall model, unsteady effects under attached flow conditions are simulated by the superposition of indicial aerodynamic responses. The movement of the unsteady flow separation point is related to the static separation based on the Kirchhoff flow model via a deficiency function, in which the unsteady boundary layer response and the leading edge pressure response are taken into consideration. The induced vortex force and the associated pitching moment are represented empirically in a timedependent manner during dynamic stall. The required input of the inflow velocity and incidence to the dynamic stall model is calculated using the improved blade element momentum theory. The calculated results are compared well with the NREL UAE Phase VI experimental data. For completeness, possible factors causing the difference between calculated and experimental results are analyzed and discussed in detail in this paper.
机译:将动态失速模型与叶片元件动量理论相结合,以计算偏航流中风力涡轮机空气动力特性的周期性变化。在动态失速模型中,通过附加的独立空气动力学响应来模拟附加流动条件下的非稳态效应。非稳态流动分离点的移动与基于Kirchhoff流动模型的静态分离有关的缺陷函数相关,该函数考虑了非稳态边界层响应和前沿压力响应。在动态失速期间,以时间依赖的方式经验地表示感应的涡旋力和相关的俯仰力矩。使用改进的叶片元件动量理论计算流入失速模型所需的流入速度和入射角。计算结果与NREL UAE VI期实验数据进行了很好的比较。为了完整起见,本文对引起计算结果与实验结果差异的可能因素进行了分析和详细讨论。

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