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Power, structural and noise performance tests on different wind turbine rotor blade designs

机译:在不同的风力涡轮机转子叶片设计上进行功率,结构和噪声性能测试

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摘要

Most blades available for commercial-grade wind turbines incorporate a straight, span-wise profile and airfoil-shaped cross-sections. These blades are found to be very efficient at low and medium wind speeds compared with the potential energy that can be extracted. This paper explores the possibility of increasing the efficiency of the blades by modifying the blade design to incorporate a swept edge. The design intends to maintain efficiency at low to medium wind speeds by selecting the appropriate orientation and size of the airfoil cross-sections based on an oncoming wind speed and given constant rotation rate. The torque generated from a blade with straight-edge geometry is compared with that generated from a blade with a swept edge as predicted by CFD simulations. To validate the simulations, the experimental curve of the NTK500/41 turbine using LM19.1 blades is reproduced using the same computational conditions. In addition, structural deformations, stress distributions and structural vibration modes are compared between these two different turbine blade surfaces.
机译:可用于商业级风力涡轮机的大多数叶片都具有笔直的,翼展方向的轮廓和翼型截面。与可以提取的势能相比,发现这些叶片在中低风速时非常有效。本文探讨了通过修改刀片设计以合并后掠边缘来提高刀片效率的可能性。该设计旨在通过根据即将来临的风速和给定的恒定转速选择合适的机翼横截面方向和尺寸来在中低风速时保持效率。如CFD模拟所预测的,将具有直边几何形状的刀片产生的扭矩与具有后掠边缘的刀片产生的扭矩进行比较。为了验证仿真,使用相同的计算条件复制了使用LM19.1叶片的NTK500 / 41涡轮的实验曲线。另外,在这两个不同的涡轮叶片表面之间比较了结构变形,应力分布和结构振动模式。

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