利用旋臂雨水侵蚀测试仪对风力涡轮机叶片上的水滴冲击压力进行数值研究

Fluids Pub Date : 2024-07-15 DOI:10.3390/fluids9070160
Nobuyuki Fujisawa, Hirokazu Kawabata
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引用次数: 0

摘要

风力涡轮机叶片的前缘侵蚀是使用旋臂雨侵蚀测试仪进行测试的,由于尺度效应,该测试仪的旋转速度远远高于全尺寸风力涡轮机的旋转速度。在这项研究中,我们通过求解纳维-斯托克斯方程并结合流体体积法对液滴冲击进行数值模拟,评估了液滴对风力涡轮机叶片湿表面的冲击压力。在进行数值模拟的同时,还利用纳维-斯托克斯方程的近似解法估算了旋转叶片上的液膜厚度,并考虑了离心力和科里奥利力。我们的研究表明,雨水侵蚀测试仪上的冲击压力超过了风力涡轮机叶片上的冲击压力,这是因为在离心力和科里奥利力的影响下,雨水侵蚀测试仪上的液膜比风力涡轮机叶片上的液膜薄。这表明在估算液滴对风轮叶片的冲击速度时,校正液膜厚度的影响非常重要。此外,我们还演示了估算液滴对风轮叶片冲击速度时的修正程序。
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Numerical Study on the Impact Pressure of Droplets on Wind Turbine Blades Using a Whirling Arm Rain Erosion Tester
The leading-edge erosion of a wind turbine blade was tested using a whirling arm rain erosion tester, whose rotation rate is considerably higher than that of a full-scale wind turbine owing to the scale effect. In this study, we assessed the impact pressure of droplets on a wet surface of wind turbine blades using numerical simulation of liquid droplet impact by solving the Navier–Stokes equations combined with the volume-of-fluid method. This was conducted in combination with an estimation of liquid film thickness on the rotating blade using an approximate solution of Navier–Stokes equations considering the centrifugal and Coriolis forces. Our study revealed that the impact pressure on the rain erosion tester exceeded that on the wind turbine blade, attributed to the thinner liquid film on the rain erosion tester than on the wind turbine blade caused by the influence of centrifugal and Coriolis forces. This indicates the importance of correcting the influence of liquid-film thickness in estimating the impact velocity of droplets on the wind turbine blade. Furthermore, we demonstrated the correction procedure when estimating the impact velocity of droplets on the wind turbine blade.
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