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Wind turbine rotor modelling using response surface methodology

机译:风力涡轮机转子使用响应面方法建模

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The power generated by wind turbine rotors is difficult to model due to their nonlinear dependency on mechanical characteristics, wind velocity, and loading condition. This paper demonstrates how statistical Design of Experiment (DoE) methodology can be employed to model and characterize the behavior of a wind turbine rotor. Central Composite Design (CCD) is used to obtain the parametric metamodel of the power coefficient of a sample rotor in the neighborhood of its maximum value. As a result, the model describes and predicts the power coefficient values in a response surface as a function of pitch angle and tip speed ratio. The methodology is extended to a greater number of factors/variables to model the mechanical power extracted by the rotor and to demonstrate the advantages of CCD in modeling this type of system.
机译:由于其非线性依赖性,风力涡轮机转子产生的功率难以模型对机械特性,风速和装载条件。本文展示了实验(DOE)方法的统计设计如何模拟和表征风力涡轮机转子的行为。中央复合设计(CCD)用于在其最大值附近获得样品转子的功率系数的参数化元模型。结果,模型描述并预测响应表面中的功率系数值作为俯仰角和尖端速比的函数。该方法延伸到更大的因素/变量来模拟转子提取的机械功率,并展示CCD在模拟这种类型的系统方面的优势。

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