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CONFIGURATION ANALYSIS AND DESIGN OF A WIND TURBINE WITH HYDROSTATIC TRANSMISSION SYSTEM

机译:静力传动系统风轮机的结构分析与设计

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This paper presents a methodology for designing and dimensioning of hydrostatic transmission system (HTS) configurations for wind turbines. HTS provides an alternative method to the gearbox in wind power applications. It decouples the turbine and the generator such that the generator can be driven at synchronous speed regardless of wind speed variation. A comparison of different HTS configurations shows that the functionality and performance of the proposed system depends on proper dimensioning of hydraulic components and the circuit configuration. Practical constraints of wind turbine and hydraulic technologies are considered in the design to configure an industrial scale system. The design objectives include obtaining the maximum system efficiency at the rated and high efficiency at partial load. Different hydrostatic systems were designed and simulated to show potentials for improving the overall efficiency of wind power using HTS. It was shown that the larger swept area and moderate speed generator improve efficiency of hydrostatic drivetrain. Optimization of the entire HTSWT can improve output power from a HTSWT to an extent that its annual energy production (AEP) becomes closely equal to AEP of a geared WT.
机译:本文介绍了一种用于风力涡轮机的静液压传动系统(HTS)配置的设计和尺寸确定方法。 HTS为风电应用中的变速箱提供了一种替代方法。它使涡轮机与发电机脱钩,从而无论风速如何变化,发电机都可以以同步速度驱动。不同HTS配置的比较表明,所提出系统的功能和性能取决于液压组件的正确尺寸和回路配置。设计中考虑了风力涡轮机和液压技术的实际限制,以配置工业规模的系统。设计目标包括在额定值下获得最大系统效率,在部分负载下获得最高效率。设计和模拟了不同的静液压系统,以显示使用高温超导技术改善风能整体效率的潜力。结果表明,较大的扫掠面积和中等速度的发电机可提高静液压传动系统的效率。整个HTSWT的优化可以将HTSWT的输出功率提高到一定程度,使其年度能源产量(AEP)变得与齿轮式WT的AEP相当。

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