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An Evolutionary Environment for Wind Turbine Blade Design

机译:风力涡轮机叶片设计的进化环境

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The aerodynamic design of wind turbine blades is carried out by means of evolutionary techniques within an automatic design environment based on evolution. A simple, fast, and robust aerodynamic simulator is embedded in the design environment to predict the performance of any turbine produced as intermediate individual of the evolutionary process. The aerodynamic simulator is based on blade element theory in which a panel method is combined with an integral boundary layer code to calculate blade airfoils' characteristics. In order to reduce computations some simplifications were contemplated and the results corrected by means of the application of neural network based approximations. Results of the simulations obtained using this technique, of the application of the automatic design procedure and of the operation of the wind turbines thus obtained are presented.
机译:风力涡轮机叶片的空气动力学设计通过基于进化的自动设计环境内的进化技术进行。一种简单,快速,坚固的空气动力模拟器嵌入设计环境中,以预测所产生的涡轮机的性能作为进化过程的中间个体。空气动力学模拟器基于叶片元件理论,其中面板方法与整体边界层代码组合以计算刀片翼型的特性。为了减少计算,考虑一些简化,并通过应用基于神经网络的近似来校正的结果。呈现了使用该技术获得的模拟的结果,其应用自动设计程序和由此获得的风力涡轮机的操作。

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