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Research on Aeroelasticity of Horizontal Axis Wind Turbines by a Fluid-Structure Coupling Numerical Method

机译:流体结构耦合数值方法水平轴风风力涡轮机的空气弹性研究

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Using sliding-mesh to deal with relative mesh movement and guarantee the continuity of physical variables, a coupling model of wind rotor and its surrounding air is established applying Shear Stress Transport (SST) model to the Reynolds equation in fluid zone and the Newmark method to solve the oscillation equations in solid zone in this paper. The effects of fluid-structure interaction are considered by means of kinematic and dynamic conditions applied to the fluid-structure interfaces. According to a typical wind rotor, the three-dimensional numerical model including surrounding airs has been established. Then, flutters of wind rotor blade and surrounding flow field distribution have been analyzed based on the fluid-structure coupling model. The results show that it is feasible to analyze the wind turbine flutters based on the model which couples NS solvers to structural codes to perform full elastic computations of wind turbine rotors.
机译:使用滑动网格处理相对网格运动并保证物理变量的连续性,将风转子及其周围空气的耦合模型建立在流体区域中的雷诺方程和新标记方法中将剪切应力传输(SST)模型建立到雷诺方程本文解决了固体区域中的振荡方程。通过施加到流体结构界面的运动和动态条件考虑流体结构相互作用的影响。根据典型的风转子,已经建立了包括周围空气的三维数值模型。然后,已经基于流体结构耦合模型分析了风转子叶片和周围流场分布的浮动。结果表明,基于将NS求解器耦合到结构码的模型来分析风力涡轮机浮动,这是可行的,以实现风力涡轮机转子的全弹性计算。

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