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首页> 外文期刊>Journal of Physics: Conference Series >Aerodynamic modelling of wind turbine blade loads during extreme deflection events
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Aerodynamic modelling of wind turbine blade loads during extreme deflection events

机译:极端偏转事件期间风力涡轮机叶片载荷的空气动力学建模

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摘要

Long, flexible wind turbine blades experience significant deflections during operation. Historically, the blade element momentum model in Bladed assumed that the blade is split into a set of radial aerodynamic sections which are aligned perpendicular to the pitch axis, and that any rotation of the sections due to deflection, pre-bend or pre-sweep in the blade can be ignored. For modern-day flexible rotor blades, under extreme loading conditions, this assumption no longer holds. Including this rotation when calculating inflow velocities and angle of attack, and when resolving the resultant forces at the element, causes a significant change in axial force (Fz) along the pitch axis, and therefore the blade out of plane bending moment (My). This in turn drives a change in overturning moments on the hub (which is driven by differences in bending moments between blades). An example 160m rotor shows an increase of 68% in hub overturning moment during an extreme gust event when aerofoil rotation due to deflection is included. This is verified through comparison to the alternative free vortex wake rotor model in Bladed. DNV GL Bladed includes the rotation of aerofoils by default at version 4.8.
机译:长时间,柔性风力涡轮机刀片在操作期间体验显着的偏转。从历史上看,叶片中的叶片元件动量模型假设叶片分成一组径向空气动力部分,该径向空气动力部分垂直于俯仰轴对齐,并且由于偏转,预弯曲或预扫描而导致的部分的任何旋转刀片可以忽略。对于现代柔性转子叶片,在极端装载条件下,这种假设不再拥有。包括在计算流入速度和攻角时的这种旋转,并且在元件处的所得力时,导致距俯仰轴线的轴向力(FZ)的显着变化,因此刀片从平面弯曲时刻(我的)。这反过来又驱动了轮毂上推翻的瞬间(由刀片之间的弯曲时刻的差异驱动)的变化。示例160M转子在包括偏转由于偏转引起的空气旋转时,在极端阵风事件期间增加了68%的升高时刻。通过与Bladed中的替代自由涡旋唤醒转子模型进行比较来验证这一点。 DNV GL Bladed包括默认在4.8版的旋转旋转。

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