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Design and Simulation of a 1 DOF Planetary Speed Increaser for Counter-Rotating Wind Turbines with Counter-Rotating Electric Generators

机译:具有反旋转发电机的反旋转风力涡轮机的1 DOF行星速度升高的设计与仿真

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摘要

The improvement of wind turbine performance poses a constant challenge to researchers and designers in the field. As a result, the literature presents new concepts of wind turbines (WTs), such as: counter-rotating wind turbines (CRWTs) with two coaxial wind rotors revolving in opposite directions, WTs with higher-efficiency and downsized transmission systems, or WTs with counter-rotating electric generators (CREGs). Currently, there are a few solutions of WTs, both containing counter-rotating components; however, they can only be used in small-scale applications. Aiming to extend the use of WTs with counter-rotating wind rotors (CRWRs) and CREGs to medium- and large-scale applications, this paper introduces and analyzes a higher-performance WT solution, which integrates two counter-rotating wind rotors, a 1 degree of freedom (DOF) planetary speed increaser with four inputs and outputs, and a counter-rotating electric generator. The proposed system yields various technical benefits: it has a compact design, increases the output power (which makes it suitable for medium- and large-scale wind turbines) and allows a more efficient operation of the electric generator. The kinematic and static computing methodology, as well as the analytical models and diagrams developed for various case studies, might prove useful for researchers and designers in the field to establish the most advantageous solution of planetary speed increasers for the CRWTs with CREGs. Moreover, this paper extends the current database of WT speed increasers with an innovative concept of 1 DOF planetary gearbox, which is subject to a patent application.
机译:风力涡轮机性能的改善对该领域的研究人员和设计师构成了持续的挑战。结果,文献呈现了风力涡轮机(WTS)的新概念,例如:反向旋转风力涡轮机(CRWT),其具有两个同轴风转子沿相反方向旋转,具有更高效率和缩小的传动系统的WTS,或WTS反向旋转发电机(Cregs)。目前,含有少量含有反旋转部件的WTS解决方案;但是,它们只能用于小规模应用。本文介绍了将WTS与反旋转风转子(CRWRS)和压缩延伸到中型和大规模应用的使用,介绍了一种更高性能的WT解决方案,它集成了两个反向旋转风转子,1自由度(DOF)行星速度速度增加四个输入和输出,以及反向旋转发电机。所提出的系统产生各种技术效益:它具有紧凑的设计,增加输出功率(这使其适用于中型和大规模的风力涡轮机),并允许发电机的更有效操作。运动和静态计算方法以及为各种案例研究开发的分析模型和图表可能对该领域的研究人员和设计人员来说是有用的,以建立带有压缩队列的行星速度增加的最有利的行星速度升温的解决方案。此外,本文扩展了WT速度上升量的当前数据库,具有1 DOF行星齿轮箱的创新概念,该概念受专利申请。

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