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Modelling load and vibrations due to iced turbine operation

机译:建模由于冰涡轮运行引起的负载和振动

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Wind energy in icing and low-temperature climate has a huge growth potential, but rotor icing effects on turbine dynamics and lifetime are not well known and simulations with iced rotor are not required in current IEC 61400-1 turbine design standard. In this article, simulations with iced rotor are compared to measured mechanical loads. The dynamic behaviour of the wind turbine was simulated with FLEX5 aeroelastic code for Senvion MM92 2MW wind turbine. Simulations with typical iced airfoil lift and drag coefficients, aerodynamic and mass imbalances for iced rotor were performed and compared to measured iced turbine loads. Resulting iced turbine simulation parameters can be used in defining new design load cases for cold climate turbines. The most representative simulation parameter combination was achieved with a symmetric aerodynamic penalty applied on all blades and an asymmetric rotor mass imbalance of 166 kg ice load on two blades and 83 kg ice load on one blade.
机译:结冰和低温气候下的风能具有巨大的增长潜力,但是转子结冰对涡轮机动力和寿命的影响尚不为人所知,在现行的IEC 61400-1涡轮机设计标准中也不需要使用冰转子进行仿真。在本文中,将冰转子的仿真与测得的机械负载进行了比较。风力发电机组的动态行为通过Senvion MM92 2MW风力发电机组的FLEX5气动弹性代码进行了仿真。对典型的冰翼提升力和阻力系数,空气动力学和质量失衡进行了仿真,并将其与测得的涡轮负载进行了比较。所得的冰涡轮仿真参数可用于定义冷气候涡轮的新设计载荷工况。最有代表性的模拟参数组合是通过对所有叶片施加对称的空气动力学损失以及两个叶片上的166 kg冰负荷和一个叶片上的83 kg冰负荷的不对称转子质量失衡来实现的。

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