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A systems engineering analysis of three-point and four-point wind turbine drivetrain configurations

机译:三点和四点风力涡轮机传动系统配置的系统工程分析

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摘要

This study compares the impact of drivetrain configuration on the mass and capital cost of a series of wind turbines ranging from 1.5MW to 5.0MW power ratings for both land-based and offshore applications. The analysis is performed with a new physics-based drivetrain analysis and sizing tool, Drive Systems Engineering (DriveSE), which is part of the Wind-Plant Integrated System Design & Engineering Model. DriveSE uses physics-based relationships to size all major drivetrain components according to given rotor loads simulated based on International Electrotechnical Commission design load cases. The model's sensitivity to input loads that contain a high degree of variability was analyzed. Aeroelastic simulations are used to calculate the rotor forces and moments imposed on the drivetrain for each turbine design. DriveSE is then used to size all of the major drivetrain components for each turbine for both three-point and four-point configurations. The simulation results quantify the trade-offs in mass and component costs for the different configurations. On average, a 16.7% decrease in total nacelle mass can be achieved when using a three-point drivetrain configuration, resulting in a 3.5% reduction in turbine capital cost. This analysis is driven by extreme loads and does not consider fatigue. Thus, the effects of configuration choices on reliability and serviceability are not captured. However, a first order estimate of the sizing, dimensioning and costing of major drivetrain components are made which can be used in larger system studies which consider trade-offs between subsystems such as the rotor, drivetrain and tower. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:这项研究比较了动力传动系统配置对陆上和海上应用的一系列额定功率从1.5MW至5.0MW的风力涡轮机的质量和资本成本的影响。使用新的基于物理学的动力传动系统分析和选型工具“驱动系统工程”(DriveSE)进行分析,该工具是“风电厂集成系统设计和工程模型”的一部分。 DriveSE使用基于物理的关系,根据给定的转子负载,根据国际电工委员会设计的负载案例模拟给定的转子负载,确定所有主要传动系统组件的尺寸。分析了该模型对包含高度可变性的输入负载的敏感性。空气弹性模拟用于计算每种涡轮设计的转子力和施加在传动系统上的力矩。然后,将DriveSE用于三点和四点配置的每个涡轮机的所有主要传动系统组件的尺寸。仿真结果量化了不同配置在质量和组件成本之间的权衡。使用三点传动系统配置时,平均可使机舱总质量降低16.7%,从而使涡轮机资本成本降低3.5%。该分析由极限载荷驱动,不考虑疲劳。因此,没有捕获配置选择对可靠性和可维护性的影响。但是,对主要传动系统组件的尺寸,尺寸和成本进行了一次估算,可用于大型系统研究中,该系统研究考虑了转子,传动系统和塔架等子系统之间的权衡。版权所有(c)2016 John Wiley&Sons,Ltd.

著录项

  • 来源
    《Wind Energy》 |2017年第3期|537-550|共14页
  • 作者单位

    Natl Renewable Energy Lab, 15013 Denver West Pkwy, Golden, CO 80401 USA;

    Natl Renewable Energy Lab, 15013 Denver West Pkwy, Golden, CO 80401 USA|Colorado Sch Mines, Dept Mech Engn, 1500 Illinois St, Golden, CO 80401 USA;

    Natl Renewable Energy Lab, 15013 Denver West Pkwy, Golden, CO 80401 USA;

    Natl Renewable Energy Lab, 15013 Denver West Pkwy, Golden, CO 80401 USA|Univ Colorado, Dept Mech Engn, 1111 Engn Dr,UCB 427, Boulder, CO 80309 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    systems engineering; drivetrain design; sensitivity analysis; cost optimization;

    机译:系统工程;动力传动系统设计;灵敏度分析;成本优化;

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