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A Magnus Wind Turbine Power Model Based on Direct Solutions Using the Blade Element Momentum Theory and Symbolic Regression

机译:基于叶片元动量理论和符号回归的直接解法的马格努斯风力发电机功率模型

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摘要

A model of the power coefficient of a mid-scale Magnus wind turbine using numerical solutions of the Blade Element Momentum Theory and symbolic regression is presented. A direct method is proposed for solving the nonlinear system of equations which govern the phenomena under study.The influence of the tip speed ratio and the number, aspect ratio, and the angular speed of the cylinder son the turbine performanceisobtained. Results show that the máximum power coefficientisontheorderof 0.2, whichis obtained witht wolowa spectratio cylinders, adimension lesscy linder speed ratio of 2, and a turbine tip-speed ratio between 2 and 3. The predicted power coefficient at low tip-speed ratio suggests that a Magnus turbine may be adequate in the urban environment.
机译:利用叶片单元动量理论的数值解和符号回归,提出了一种中型马格努斯风力发电机的功率系数模型。提出了一种直接的方法来求解控制研究现象的非线性方程组。叶尖速比和汽缸数,纵横比和角速度的影响影响了涡轮机的性能。结果表明,最大功率系数为0.2的阶,该系数是在不带沃洛瓦光谱缸,尺寸损耗缸速比为2且涡轮叶尖速比为2与3的情况下获得的。在低叶尖速比下的预测功率系数表明马格努斯涡轮在城市环境中可能足够。

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