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Dynamic analysis of a floating vertical axis wind turbine under emergency shutdown using hydrodynamic brake

机译:使用流体动力制动器紧急关闭浮动垂直轴风力涡轮机的动态分析

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Emergency shutdown is always a challenge for an operating vertical axis wind turbine. A 5-MW vertical axis wind turbine with a Darrieus rotor mounted on a semi-submersible support structure was examined in this study. Coupled non-linear aero-hydro-servo-elastic simulations of the floating vertical axis wind turbine were carried out for emergency shutdown cases over a range of environmental conditions based on correlated wind and wave data. When generator failure happens, a brake should be applied to stop the acceleration of the rotor to prevent the rotor from overspeeding and subsequent disaster. In addition to the traditional mechanical brake, a novel hydrodynamic brake was presented to apply to the shutdown case. The effects of the hydrodynamic brake on the platform motions and structural loads under normal operating conditions and during the emergency shutdown events were evaluated. The use of both the hydrodynamic brake and mechanical brake was also investigated. The application of the hydrodynamic brake is expected to be efficient for rotor shutdown and for reducing the platform motions and structural loads.
机译:紧急关闭始终是运行垂直轴风力涡轮机的挑战。在本研究中,研究了一个5MW的垂直轴风力涡轮机,其安装在半潜式支撑结构上的Darrius转子。浮动垂直轴风力涡轮机的耦合非线性航空 - 水伺服弹性模拟在基于相关风和波数据的环境条件范围内进行紧急停机情况。当发生发电机故障时,应施加制动器以停止转子的加速度,以防止转子超速和随后的灾难。除了传统的机械制动器外,还提出了一种新型的流体动力制动器以适用于关断箱。评估了流体动力制动对正常操作条件下的平台运动和结构载荷的影响和在紧急关闭事件中的影响。还研究了使用流体动力制动和机械制动器。采用流体动力制动器的应用对于转子关断和降低平台运动和结构载荷是有效的。

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