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The Triple Spar campaign: Model tests of a 10MW floating wind turbine with waves, wind and pitch control

机译:三翼霸运动:带有波浪,风和俯仰控制的10MW浮动风力涡轮机的模型试验

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Results of a test campaign for a floating wind turbine in simultaneous wind and wave forcing at scale 1:60 are presented. The floater is the Triple Spar floater, a hybrid between a spar buoy and a semi submersible tri-fioater, tested here for the first time. The turbine is a model scale version of the DTU 10 MW reference wind turbine, which, also for the first time, is tested with active blade pitch control. The tests focus on the effects of aerodynamic damping and interaction effects between the wind forcing, wave forcing and the blade pitch control algorithm. Special focus is devoted to the instability of the platform pitch natural mode, that can occur if a standard land-based controller is applied. Results of three control strategies are reported: Fixed blade pitch, a standard land-based controller, and a tuned controller designed to eliminate the instability. Special rotor ID tests were carried out to characterize the rotor and identify the control parameters. Results for regular waves, focused wave groups, a wind-only test and irregular waves are presented in terms of time series, power spectra and exceedance probability plots. Among the key results are the wind-induced steady offset of floater pitch and surge and the aerodynamic damping of the floater pitch motion. Further, a clear example of the onset of unstable motion at the platform natural pitch frequency is provided along with a detailed analysis of the dynamic response for irregular wave conditions with the three control strategies. The paper ends with the first results of numerical re-modelling of the response for a waves-only test. A good match is found, thus encouraging further work in this direction.
机译:展示了浮动风力涡轮机同时风和波在规模1:60迫使浮动风力涡轮机的测试运动结果。 Floater是三重翼梁浮动,翼梁浮标和半潜水三件物品之间的混合动力器,首次在此测试。涡轮机是DTU 10 MW参考风力涡轮机的模型比例版本,其也是第一次用主动刀片桨距控制测试。该试验专注于风力胁迫,波形迫使和叶片间距控制算法之间的空气动力学阻尼和相互作用效应的影响。特殊焦点致力于平台间距自然模式的不稳定性,如果应用标准陆基控制器,则可能发生。报告了三种控制策略的结果:固定刀片间距,标准陆基控制器和旨在消除不稳定性的调谐控制器。进行特殊的转子ID测试以表征转子并识别控制参数。结果对于常规波,聚焦波组,仅在时间序列,功率谱和超强概率图方面呈现了仅限风测试和不规则波。关键结果是风力诱导的浮动俯仰和浪涌的稳定偏移以及浮动间距运动的空气动力学阻尼。此外,提供了在平台自然间距频率下不稳定运动的发作的清晰示例,并与具有三种控制策略的不规则波条件的动态响应进行了详细分析。纸张以数字重新建模的第一个结果结束,对唯一的波浪测试的响应。发现了一个很好的比赛,从而鼓励进一步朝着这个方向工作。

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