低风速环境下垂直轴风力机性能预测

Franklyn Kanyako, I. Janajreh
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引用次数: 6

摘要

垂直轴风力机在未来智能电网中最有利于城市风力机的集成,因为垂直轴风力机不受频繁风向变化的影响,可以简单地与建筑结构相结合,并且对城市中常见的湍流气流有更好的响应。该工作为研究低速环境下垂直轴风力机的气动模型的建立做出了贡献。基于马斯达尔城(24.4202°N, 54.6132°E)的可用风速,建立了双多流管模型(DMST),用于预测使用NACA0015和NACA0018翼型的小尺度固定螺距VAWT的性能。对围绕同一VAWT模型的三维非定常流场进行了数值模拟。并将分析结果与计算流体力学(CFD)模拟结果进行了比较。CFD和DMST的结果都表明,在较低的叶尖速比下,模型涡轮机的扭矩和性能为最小和/或负,这意味着涡轮机无法自启动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vertical Axis Wind Turbine performance prediction for low wind speed environment
Vertical Axis Wind Turbine is the most favorable for urban wind turbine integration in future smart grid as they do not suffer from frequent change in wind direction, can simply integrate with building architecture, and have better response in turbulence wind flow which is common in urban areas. This work contributes to the development of aerodynamic model for studying Vertical Axis Wind Turbine for low speed environment. Based on the available wind speed at Masdar City (24.4202° N, 54.6132° E) the Double Multiple Stream Tube model (DMST) was developed to predict the performance of small scale fixed pitch VAWT using NACA0015 and NACA0018 airfoils. Numerical simulation is conducted for three-dimensional unsteady flow around the same VAWT model. Comparison of the analytical results with computational fluid dynamics (CFD) simulation has been performed. Both the CFD and DMST results have shown minimum and/or negative torque and performance at lower tip speed ratios for the modeled turbine, which implies the inability of turbine to self start.
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