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风电变流技术 储能系统 ★ 5.0

提升达里厄斯垂直轴风力机气动性能的现有解决方案综述:比较性讨论

A review of available solutions for enhancing aerodynamic performance in Darrieus vertical-axis wind turbines: A comparative discussion

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中文摘要

摘要 达里厄斯垂直轴风力机(VAWTs)在启动性能、相对较低的功率输出以及显著的周期性转矩波动幅度方面面临挑战。尽管已有大量提出的解决方案,但这些问题仍未得到解决,阻碍了VAWT潜力的充分发挥。本研究对现有解决方案在应对上述挑战方面的有效性进行了批判性评估,旨在识别各类方案的优势、劣势及相关研究空白。为此,将这些解决方案分为五类:涡轮结构改进、叶片形状优化、被动与主动技术以及流动增强方法。随后,基于反映其应对气动挑战能力的既定标准,评估各方案在性能上的可取性。此外,还考虑了各方案的不同实际因素,以评估其在现实应用中的可行性。研究结果表明,尽管某些设计在应对特定挑战方面显示出潜力,但它们往往引入了新的问题,例如变工况下性能不佳以及复杂性增加、维护需求上升和成本提高等实用性问题。这凸显了性能可取性与实用性之间的权衡关系,也体现在现有解决方案普遍较低的技术成熟度等级(Technology Readiness Levels, TRLs)上。该发现强调了有必要深入探究当前挑战的根本原因,这些原因与VAWT系统内在的复杂气动特性密切相关。本文提供的见解与建议旨在通过平衡性能提升与实际可行性,为未来达里厄斯型VAWT的发展提供指导。

English Abstract

Abstract Darrieus vertical-axis wind turbines (VAWTs) face challenges related to startup performance, relatively lower power output, and significant cyclic torque fluctuation amplitude. Despite numerous proposed solutions, these issues remain unresolved, hindering the full realization of VAWT potential. This study critically evaluates the effectiveness of existing solutions in addressing these challenges, aiming to identify solution strengths, weaknesses, and associated research gaps. To this aim, the solutions are categorized into five groups: turbine configuration modification, blade shape modification, passive and active techniques, and flow augmentation. The performance desirability of the solutions is then evaluated based on defined criteria reflecting their ability to address the aerodynamic challenges. Additionally, different practical aspects of the solutions are considered to assess their applicability in real-world situations. The findings reveal that while some designs show promise in addressing specific challenges, they often introduce new issues of poor off-design performance and practicality concerns such as increased complexity, maintenance requirements, and cost. This highlights a trade-off between practicality and performance desirability, reflected in the relatively low Technology Readiness Levels (TRLs) of the available solutions. This finding emphasizes the need to investigate the root causes of existing challenges, which are tied to the complex aerodynamics inherent in VAWT systems. The insights and recommendations provided aim to guide future Darrieus VAWT development by balancing between performance improvements and practical feasibility.
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SunView 深度解读

该垂直轴风机气动优化研究对阳光电源风电变流器产品具有重要参考价值。文中提到的启动性能差、功率波动大等问题,可通过我司先进变流控制技术协同解决:采用虚拟同步发电机(VSG)技术平抑转矩波动,利用三电平拓扑提升低风速启动能力,结合储能系统ST系列PCS实现功率平滑输出。文章揭示的气动-电气耦合特性为我司开发风储一体化解决方案、优化GFM并网控制策略提供理论依据,可推动垂直轴风机在分布式能源场景的商业化应用。