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High correlation models for small scale Magnus wind turbines

机译:小型Magnus风机的高相关模型

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Exit power of a small scale Magnus wind turbine is obtained by a non-iterative numerical method, through the application of the actuating disc concept and the BEM (Blade Element Momentum) theory. The method is implemented on a commercial software, with the goal of obtaining explicit models for the power coefficient. This, allows to obtain the power coefficient of the wind turbine for any particular combination of the dimensionless numbers governing the turbine functioning. Results are processed by the software Eureqa, applying the symbolic regression technique, which allows to obtain explicit high correlation models for the small scale Magnus wind turbine power coefficient. Results for one, two, three and four cylindrical blade configurations, show this aerogenerator is able to reach power coefficients close to 0.10 with two rotating cylinders, where high aspect ratios of the cylinder, low tip-speed ratios and rotation ratios in the order of 3, are favorable.
机译:小型马格努斯风力发电机的出口功率是通过使用驱动盘概念和BEM(叶片元素动量)理论通过非迭代数值方法获得的。该方法在商业软件上实现,目的是获得功率系数的明确模型。对于控制涡轮机功能的无量纲数的任何特定组合,这允许获得风力涡轮机的功率系数。结果由软件Eureqa使用符号回归技术进行处理,该技术可为小型Magnus风力发电机功率系数获得显式的高相关性模型。一个,两个,三个和四个圆柱叶片配置的结果表明,该风力发电机在两个旋转圆柱体的情况下能够达到接近0.10的功率系数,其中圆柱体的高长宽比,低叶尖速比和旋转比约为3,有利。

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