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COMPARATIVE STUDY OF TWO-BLADED UPWIND AND DOWNWIND TURBINES USING THE NREL REFERENCE WIND TURBINE

机译:基于NREL参考风轮机的上涡轮和下涡轮的比较研究。

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Two-bladed wind turbines offer the potential for a lower cost of energy compared with three-bladed rotor turbines. This investigation was conducted to quantify the differences between the loads of upwind and downwind two-bladed wind turbines operating under random wind conditions. This paper focuses on a comparison of maximum and average loads that can cause first excursion failure, and loads that can cause fatigue failure. In this study, upwind and downwind turbines with two bladed rotors are compared. The NREL 5MW reference wind turbine was used as a baseline design and was modified as necessary to design a two bladed upwind wind turbine. The tower shadow effect was considered for the downwind turbine. The IEC61400-3 standard load cases were used to define the loading conditions for the wind turbine simulations. The computed load effects generally showed that the downwind configuration had lower load effects. Moreover, fatigue damage was lower for the two-bladed downwind turbine compared to the upwind turbine.
机译:与三叶片转子涡轮相比,两叶片风力涡轮机具有降低能源成本的潜力。进行这项研究是为了量化在随机风力条件下运行的迎风和顺风两叶风力涡轮机之间的负载差异。本文着重比较可能导致首次偏移故障的最大负载和平均负载,以及可能导致疲劳故障的负载。在这项研究中,比较了具有两个叶片式转子的上,下风轮机。 NREL 5MW参考风力涡轮机用作基准设计,并根据需要进行了修改,以设计两叶片逆风风力涡轮机。考虑了顺风涡轮的塔影效应。 IEC61400-3标准载荷工况用于定义风力涡轮机仿真的载荷条件。计算得出的载荷效应通常表明,顺风构造的载荷效应较小。此外,与顺风涡轮相比,两叶片顺风涡轮的疲劳损伤更低。

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