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Characterization of a Wind Generation System for Use in Offshore Wind Turbine Development

机译:用于海上风力涡轮机开发的风力发电系统的特性

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Environmental conditions created by winds blowing oblique to the direction of the waves are necessary to conduct some survivability tests of offshore wind turbines. However, some facilities lack the capability to generate quality waves at a wide range of angles. Thus, having a wind generation system that can be rotated makes generating winds that blow oblique to the waves possible during survivability tests. Rotating the wind generation system may disrupt the flow generated by the fans because of the effect of adjacent walls. Closed or semiclosed wind tunnels may eliminate the issue of wall effects, but these types of wind tunnels could be difficult to position within a wave basin. In this work, a prototype wind generation system that can be adapted for offshore wind turbine testing is investigated. The wind generation system presented in this work has a return that minimizes the effect that the walls could potentially have on the fans. This study characterizes the configuration of a wind generation system using measurements of the velocity field, detailing mean velocities, flow directionality, and turbulence intensities. Measurements were taken downstream to evaluate the expected area of turbine operation and the shear zone. The dataset has aided in the identification of conditions that could potentially prevent the production of the desired flows. Therefore, this work provides a useful dataset that could be used in the design of wind generation systems and in the evaluation of the benefits of recirculating wind generation systems for offshore wind turbine research.
机译:由风向波浪方向倾斜吹来产生的环境条件对于进行海上风力涡轮机的某些生存能力测试是必要的。但是,某些设施缺乏在大角度范围内产生高质量波的能力。因此,具有可旋转的风力发生系统使得在生存能力测试期间产生倾斜于海浪的风力成为可能。旋转风力产生系统可能会由于相邻壁的影响而中断风扇产生的气流。封闭或半封闭的风洞可以消除壁效应的问题,但是这些类型的风洞可能难以在波浪盆地内定位。在这项工作中,研究了适用于海上风机测试的原型风力发电系统。这项工作中提出的风力发电系统具有最大程度的回报,可以最大程度地减少墙壁可能对风扇产生的影响。这项研究通过测量速度场,详细描述平均速度,流向和湍流强度来表征风力发电系统的配置。在下游进行测量以评估涡轮机运行的预期面积和剪切区。该数据集有助于识别可能阻止所需流量产生的条件。因此,这项工作提供了一个有用的数据集,可用于风力发电系统的设计以及对海上风力涡轮机研究中再循环风力发电系统的益处进行评估。

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