Impact of zigzag tape on blade loads and aerodynamic wake in a vertical axis wind turbine: A Delft VAWT case study

IF 9.4 1区 工程技术 Q1 ENERGY & FUELS Energy Pub Date : 2025-04-15 Epub Date: 2025-03-18 DOI:10.1016/j.energy.2025.135344
Krzysztof Rogowski , Jan Michna , Robert Flemming Mikkelsen , Carlos Simao Ferreira
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Abstract

This study investigates the impact of zigzag tape on the aerodynamic performance and wake characteristics of the Delft Vertical Axis Wind Turbine (VAWT). The primary aim is to understand how the zigzag tape affects blade loads and the resulting aerodynamic wake. A comprehensive analysis was conducted using the Actuator Line Model (ALM) with airfoil characteristics measured in the wind tunnel at the Technical University of Denmark (DTU). Additionally, a 2-D CFD analysis with k-ω SST and γ-Reθ turbulence models were employed to evaluate the influence of laminar transition phenomena on rotor characteristics. Results indicate that while the zigzag tape linearizes the lift coefficient characteristic, it leads to a notable reduction in aerodynamic efficiency due to increased drag and decreased lift below the critical angle of attack. The simulations were performed at a tip-speed ratio (TSR) of 4.5 to avoid a dynamic stall, as this operating condition ensures that the rotor blades remain below the static stall threshold and large offshore VAWTs are designed to operate near their maximum aerodynamic efficiency (CP) for the majority of their operational time. The aerodynamic wake behind the rotor also shows significant changes, with the zigzag tape promoting asymmetry and affecting the wake recovery distance. The study’s findings highlight the importance of considering surface contamination effects, represented by zigzag tape, in evaluating VAWT performance and wake behavior, offering valuable insights for wind turbine design and optimization.
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垂直轴风力机之字形带对叶片载荷和气动尾迹的影响:Delft VAWT案例研究
研究了之字形带对代尔夫特垂直轴风力机气动性能和尾迹特性的影响。主要目的是了解之字形带如何影响叶片载荷和由此产生的气动尾迹。在丹麦技术大学(DTU)的风洞中,使用致动器线模型(ALM)对翼型特性进行了全面分析。此外,采用k-ω SST和γ-Reθ湍流模型进行二维CFD分析,以评估层流过渡现象对转子特性的影响。结果表明,虽然之字形带使升力系数特性线性化,但由于阻力增加和升力降低,在临界迎角以下,其气动效率显著降低。模拟在4.5的叶尖速比(TSR)下进行,以避免动态失速,因为这种运行条件确保了转子叶片保持在静态失速阈值以下,并且大型海上vawt的设计在大部分运行时间内都接近其最大气动效率(CP)。旋翼后的气动尾迹也发生了明显的变化,锯齿形带增强了不对称性,影响了尾迹恢复距离。该研究结果强调了在评估VAWT性能和尾迹行为时考虑表面污染效应(以之字形胶带为代表)的重要性,为风力涡轮机的设计和优化提供了有价值的见解。
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来源期刊
Energy
Energy 工程技术-能源与燃料
CiteScore
15.30
自引率
14.40%
发文量
0
审稿时长
14.2 weeks
期刊介绍: Energy is a multidisciplinary, international journal that publishes research and analysis in the field of energy engineering. Our aim is to become a leading peer-reviewed platform and a trusted source of information for energy-related topics. The journal covers a range of areas including mechanical engineering, thermal sciences, and energy analysis. We are particularly interested in research on energy modelling, prediction, integrated energy systems, planning, and management. Additionally, we welcome papers on energy conservation, efficiency, biomass and bioenergy, renewable energy, electricity supply and demand, energy storage, buildings, and economic and policy issues. These topics should align with our broader multidisciplinary focus.
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