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Experimental study on gyroscopic effect of rotating rotor and wind heading angle on floating wind turbine responses

机译:旋转转子的陀螺效应和风向角对浮动风力发电机响应的实验研究。

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摘要

Limited fossil resources, daily increasing rate of demand for energy and the environmental pollution fact, have made people revert to renewable sources of energy as a solution. One type of renewable energy is offshore wind energy which has high potential without any sound and visual noises. Recently a lot of researchers have carried out on the issue of offshore wind turbine. Because of incapability of most of software programs to simulate gyroscopic effect of rotating rotors, in this articles a significant effort has been made to fabricate and test an offshore wind turbine under different rotor rotation velocities and different heading angle of wind so as to obtain the effects of these parameters on structure responses. Study on the response of a wind turbine under environmental loads has had a notable importance due to the fact that structure behavior can strongly affect procedure of modeling and optimizing wind turbine structures. On the other hand, frequency-domain structural response of a wind turbine can also make engineers be informed about of appropriate mooring system for a special environmental condition. Consequently, it has been observed that increasing the rotor rotation velocity leads the peak of spectrums shift to a higher frequency due to the gyroscopic effect appeared as a damping term; and changing heading angle of wind may lead to a change in heave and pitch amplitudes in the time domain response, and heave, sway and surge motion in frequency response.
机译:化石资源有限,能源需求每天都在增加以及环境污染这一事实,已使人们转向使用可再生能源作为解决方案。一种可再生能源是海上风能,它具有很高的潜力,没有任何声音和视觉噪音。最近,许多研究人员对海上风力发电机进行了研究。由于大多数软件程序均无法模拟旋转转子的陀螺效应,因此本文进行了大量工作来制造和测试不同转子旋转速度和不同风向角的海上风力发电机,以便获得效果。这些参数对结构响应的影响。由于结构行为会严重影响建模和优化风力涡轮机结构的过程,因此研究风力涡轮机在环境载荷下的响应具有非常重要的意义。另一方面,风力涡轮机的频域结构响应也可使工程师了解有关特殊环境条件的适当系泊系统。因此,已经观察到,由于陀螺效应作为阻尼项出现,因此增加转子的旋转速度导致频谱的峰值移至更高的频率;风的航向角的变化可能会导致时域响应中的升沉和俯仰幅度发生变化,而频率响应中的升沉,摇摆和喘振运动也会发生变化。

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