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Numerical and experimental investigation of wind loadings on vertical axis wind turbine blade deflection

机译:垂直轴风力发电机叶片偏转时风荷载的数值和实验研究

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This work focuses on experimental and numerical investigation of the deflection on VAWT blade surface against the high measured wind speeds that were simulated in FLUENT to obtain the corresponding static forces. The effect of forces, blade setting angle and thickness to chord ratio along with their combined effects on deflection were assessed experimentally and numerically. Three airfoils of gradually increasing thickness to chord ratio, NACA 0015, 0021 and 4412, were selected along with three levels of forces and tested at 5A degrees, 10A degrees and 15A degrees of blade setting angle. A 3(3) factorial experimental design was used to perform experiments and Analysis of variance (ANOVA) confirmed that individual effects of force and thickness to chord ratio were the most significant factors while blade setting angle had lesser significance on deflected values. However, interactive effects of these parameters were significant. Minimum deflections were observed in the range of 0.25-0.28 mm on NACA 0021 at 3 kg force in combination with all blade setting angles. Maximum observed value of defection was 1 mm, which occurred at 9 kg force at 5A degrees, 10A degrees and 15A degrees of blade setting angle on NACA 0015 and 4412 airfoil shapes. The results ensure that the blade structure remains stable at 9 kg which corresponds to 20 m/s wind speed without affecting the performance. The deflections obtained from Finite element method were compared with experimental results and found in good agreement with each other.
机译:这项工作的重点是针对VAWT叶片表面挠度与FLUENT中模拟的高测得风速进行实验和数值研究,以获得相应的静力。通过实验和数值评估了力,叶片安装角度和厚度与弦比的综合影响,以及它们对偏转的影响。选择了三种厚度与弦比逐渐增加的翼型,NACA 0015、0021和4412,以及三种力水平,并在叶片设定角5A度,10A度和15A度下进行了测试。使用3(3)阶乘实验设计进行实验,方差分析(ANOVA)证实力和厚度与弦比的个体影响是最显着的因素,而叶片设定角对偏转值的影响较小。但是,这些参数的交互作用很明显。在NACA 0021上,在3 kg力下结合所有叶片设定角度,观察到的最小挠度为0.25-0.28 mm。最大观察到的变形值是1 mm,这是在9kg力下在NACA 0015和4412机翼形状的5A度,10A度和15A度的叶片设定角处发生的。结果确保叶片结构在9 kg(相当于20 m / s的风速)下保持稳定,而不会影响性能。将有限元方法获得的挠度与实验结果进行了比较,发现它们之间具有很好的一致性。

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