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首页> 外文期刊>Journal of Physics: Conference Series >Design of a two-bladed 10 MW rotor with teetering hub
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Design of a two-bladed 10 MW rotor with teetering hub

机译:使用夹持枢纽的双刃10 MW转子设计

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摘要

Two-bladed rotors are emerging as a viable alternative to classic three-bladed ones for driving down the cost of energy of large sized wind turbines. By eliminating a blade one could easily reduce the cost of the rotor. However, design challenges arise due to the reduced power output and the resonance typically occurring between the frequency of the tower and the two-per-revolution. In this work, we perform a dedicated design of a two-bladed configuration for a 10 MW wind turbine: the solution is upwind and equipped with a teeter hinge at the hub in order to alleviate the loads on the fixed infrastructure. The rotor and the tower are then optimized by using a holistic design algorithm, and a complete technical and economic assessment of the optimal design is conducted against a reference three-bladed one in order to compare the main performance including loads, energy yielding and the cost of energy.
机译:双刃转子作为经典的三刃替代品,用于驱逐大型风力涡轮机的能量成本。通过消除刀片,可以容易地降低转子的成本。然而,由于功率输出降低和通常发生在塔架的频率和两旋转之间的共振来产生设计挑战。在这项工作中,我们对10 MW风力涡轮机进行双刃配置的专用设计:解决方案是逆风,并配备枢纽的跷跷板铰链,以便缓解固定基础设施上的负载。然后通过使用整体设计算法优化转子和塔,并且对最佳设计的完整技术和经济评估是针对参考三刃的技术和经济评估,以比较包括负荷,能量屈服和成本的主要性能能量。

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