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Aeroservoelastic design definition of a 20MW common research wind turbine model

机译:20MW通用研究型风力发电机模型的航空弹性设计定义

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Wind turbine upscaling is motivated by the fact that larger machines can achieve lower levelized cost of energy. However, there are several fundamental issues with the design of such turbines, and there is little public data available for large wind turbine studies. To address this need, we develop a 20 MW common research wind turbine design that is available to the public. Multidisciplinary design optimization is used to define the aeroservoelastic design of the rotor and tower subject to the following constraints: blade-tower clearance, structural stresses, modal frequencies, tip-speed and fatigue damage at several sections of the tower and blade. For the blade, the design variables include blade length, twist and chord distribution, structural thicknesses distribution and rotor speed at the rated. The tower design variables are the height, and the diameter distribution in the vertical direction. For the other components, mass models are employed to capture their dynamic interactions. The associated cost of these components is obtained by using cost models. The design objective is to minimize the levelized cost of energy. The results of this research show the feasibility of a 20 MW wind turbine and provide a model with the corresponding data for wind energy researchers to use in the investigation of different aspects of wind turbine design and upscaling. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:大型设备可以降低能源成本,这促使了风机的升级。然而,这种涡轮机的设计存在几个基本问​​题,并且很少有公开数据可用于大型风力涡轮机研究。为了满足这一需求,我们开发了一种20 MW通用研究型风力发电机设计,供公众使用。多学科设计优化用于定义受以下约束的转子和塔架的航空弹性设计:叶片-塔间隙,结构应力,模态频率,塔架和叶片几个部分的叶尖速度和疲劳损伤。对于叶片,设计变量包括叶片长度,扭曲和弦分布,结构厚度分布以及额定转速下的转子速度。塔的设计变量是高度和垂直方向的直径分布。对于其他组件,采用质量模型来捕获其动态交互。这些组件的关联成本是通过使用成本模型获得的。设计目标是使能源的平均成本最小化。这项研究的结果表明了20兆瓦风力涡轮机的可行性,并为模型提供了具有相应数据的模型,供风能研究人员用于研究风力涡轮机设计和升级的各个方面。版权所有(c)2016 John Wiley&Sons,Ltd.

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