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Study of wind turbine wake modeling based on a modified actuator disk model and extended k-ε turbulence model

机译:基于改进执行器盘模型和扩展k-ε湍流模型的风力机尾流模型研究

摘要

This paper presented an improved computational fluid dynamics (CFD) model for simulating a horizontal-axis wind turbine wake. The model used the actuator disk model to simplify the wind turbine effect on the aerodynamic field by adding an extra momentum source and an improved term to correct the underestimation issue of the wind speed deficit when applying the STD k-ε model. In addition, the model also introduced a radial distribution function to assess the non-uniform load on the actuator disk and a coefficient C4ε of the turbulent source. To validate the model, the wind turbines of Nibe `B' and Dawin 180/23 were checked by different wake models with multiple entrance velocities. Results show that the improved wake model has better prediction accuracy with experimental data and can be used for wind turbine wake calculation.
机译:本文提出了一种用于模拟水平轴风力涡轮机尾流的改进的计算流体动力学(CFD)模型。该模型使用致动器盘模型通过添加额外的动量源和改进的项来纠正应用STDk-ε模型时风速不足的低估问题,从而简化了风力涡轮机对空气动力场的影响。此外,该模型还引入了径向分布函数,以评估致动器盘上的不均匀载荷以及湍流源的系数C4ε。为了验证该模型,对Nibe'B'和Dawin 180/23的风力涡轮机采用了具有多个入口速度的不同尾流模型进行了检查。结果表明,改进后的尾流模型利用实验数据具有较好的预测精度,可用于风机尾流的计算。

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