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首页> 外文期刊>Journal of Physics: Conference Series >Load Reduction in Wind Turbines with Bend-Twist Coupled Blades without Power Loss at Underrated Wind Speeds
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Load Reduction in Wind Turbines with Bend-Twist Coupled Blades without Power Loss at Underrated Wind Speeds

机译:在低速风速下使用弯扭耦合叶片降低风力发电机的负荷而无功率损失

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Usage of composite materials in wind turbine blades is a passive mechanism to alleviate fatigue loads besides the reduction in the mass of the wind turbine system. Off-axis plies in bend-twist coupled (BTC) blades account for the passive fatigue load reduction by reducing the effective angle of attack of blade sections. Reduction in fatigue loads is generally represented by damage equivalent load ratios. In the present study, multibody aeroelastic analyses are performed for wind turbine systems for the underrated, rated and the overrated turbulent wind speeds. It is shown that load reduction can be achieved for the whole range of wind speeds with the usage of bend-twist coupled blades at the cost of power loss at underrated wind speeds which is unacceptable. Thus, the main concern of the present study is first to make performance study of wind turbines with bend-twist coupled blades at underrated wind speeds and then to overcome the power loss while still achieving reduction in damage equivalent loads by the proper modification of the pre-twist variation of the bend-twist coupled blades together with the generator torque curve across whole range of wind speeds. This study has been performed utilizing the same pitch control settings in region 2 to examine the mere effect of pretwist modification on the power performance of the wind turbine and on the damage equivalent loads.
机译:在风力涡轮机叶片中使用复合材料是一种减轻疲劳负荷的被动机制,它不仅可以降低风力涡轮机系统的质量。弯扭耦合(BTC)叶片中的离轴帘布层通过减小叶片部分的有效攻角来降低被动疲劳载荷。疲劳载荷的降低通常用等效损伤比来表示。在本研究中,对风轮机系统进行了多体气动弹性分析,以评估风速被低估,额定和高估的情况。结果表明,通过使用弯曲扭力耦合叶片,可以在整个风速范围内实现负载降低,而在低速风速下的功率损耗代价是不可接受的。因此,本研究的主要关注点是首先对低速风速下带有弯扭耦合叶片的风力涡轮机进行性能研究,然后克服功率损失,同时通过适当修改预在整个风速范围内,弯曲扭曲耦合叶片的扭曲变化以及发电机转矩曲线。这项研究是利用区域2中相同的俯仰控制设置进行的,以检查预捻修改对风力发电机的动力性能和等效损伤负荷的影响。

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