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Impact of wall roughness and turbulence level on the performance of a horizontal axis wind turbine with the U-RANS solver THETA

机译:使用U-RANS求解器THETA的壁面粗糙度和湍流度对水平轴风力发电机性能的影响

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摘要

The presented work investigates the impact of different sheared velocity profiles in the atmospheric boundary layer on the characteristics of a wind turbine by modifying the wall roughness coefficients in the logarithmic velocity profile. Moreover, the rotor and wake characteristics in dependence of the turbulence boundary conditions are investigated. In variant I, the turbulence boundary conditions are defined in accordance to the logarithmic velocity profile with different wall roughness lengths. In variant II, the turbulent kinetic energy and turbulent viscosity remain independent of the velocity profile and represent the free-stream turbulence level. With an increase of the shear in the velocity profile, the amplitudes in the 3/rev characteristics of rotor thrust and rotor torque, induction factors, and effective angles of attack are increased. In variant I, the overall levels of thrust coefficient are hardly affected by the velocity profiles resulting from different wall roughness length values. The power coefficient is reduced about 1%. Conversely, compared with variant II, a difference of 2% in the power coefficient has been detected. Moreover, the wake recovery process strongly depends on the turbulence boundary condition. Simulations are carried out on an industrial 900-kW wind turbine with the incompressible U-RANS solver THETA.
机译:通过修改对数速度剖面中的壁面粗糙度系数,本文研究了大气边界层中不同的剪切速度剖面对风力发电机特性的影响。此外,研究了取决于湍流边界条件的转子和尾流特性。在变型I中,湍流边界条件是根据具有不同壁粗糙度长度的对数速度分布来定义的。在变体II中,湍动能和湍流粘度保持与速度分布无关,代表自由流湍流水平。随着速度曲线中剪切力的增加,转子推力和转子转矩的3 / rev特性幅度,感应系数和有效攻角都增加了。在变型I中,推力系数的总水平几乎不受壁厚长度值不同所产生的速度分布的影响。功率系数降低约1%。相反,与变型II相比,功率系数相差2%。此外,尾流恢复过程在很大程度上取决于湍流边界条件。使用不可压缩的U-RANS求解器THETA在工业900 kW风力涡轮机上进行仿真。

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