HB GroupEIT · Aeroacoustics and Turbulence Laboratory
返回研究方向Back to research

研究RESEARCH研究专题RESEARCH TOPIC

阵风对垂直轴风力发电机气动性能的影响Gust Response of Vertical-axis Wind Turbines

垂直轴风力机非定常流动阵风响应气动载荷Vertical-axis turbinesUnsteady flowGust responseAerodynamic loading
01

科学问题QUESTION

理解复杂城市与海上环境中的阵风如何影响功率输出、非定常载荷和结构寿命。

Understand how gusts in complex urban and offshore environments affect power output, unsteady loading and structural life.

02

研究方法METHOD

构造可控阵风模型,比较有无阵风条件下的速度场,并解析阵风与旋转叶片的相互作用。

Construct controlled gust models, compare velocity fields with and without gusts, and resolve gust–blade interaction.

03

验证证据EVIDENCE

利用水平速度场及其差值,识别阵风引起的局部流动变化与气动响应。

Use horizontal-velocity fields and their differences to identify gust-induced flow changes and aerodynamic response.

METHOD & CONTEXT

我们如何研究How we investigate

随着“双碳目标”的提出,风能作为一种可持续能源备受人们的青睐,垂直轴风力发电机因其易安装,全向性和噪声低等特点,适用于城市与海上等复杂环境。阵风是风力涡轮机遇到的一种常见大气条件,风力机的非定常阵风载荷不仅对功率输出有显著影响,而且会降低风力机的结构寿命。利用合适的阵风模型,分析其与风机机翼之间的相互作用,研究小扰动对旋转风机空气动力学影响机理,对提高垂直轴风力发电机气动性能具有重要意义。

As wind energy expands under carbon-neutrality goals, vertical-axis wind turbines are attractive for urban and offshore environments because they are easy to install, omnidirectional and potentially quiet. Gusts are common atmospheric disturbances: their unsteady loads alter power output and may reduce structural life. Appropriate gust models make it possible to study gust–blade interaction and clarify how small disturbances affect rotating-wing aerodynamics.

VISUAL EVIDENCE

计算与分析图像Computational evidence

图1:阵风与垂直轴风力机相互作用的水平方向速度场 / Horizontal velocity field for gust interaction with a vertical-axis wind turbine
01图1:阵风与垂直轴风力机相互作用的水平方向速度场Horizontal velocity field for gust interaction with a vertical-axis wind turbine
图2:无阵风工况下垂直轴风力机的水平方向速度场 / Horizontal velocity field without a gust
02图2:无阵风工况下垂直轴风力机的水平方向速度场Horizontal velocity field without a gust
图3:施加阵风对水平方向速度场的影响(图1-图2) / Gust-induced change in horizontal velocity (difference between the two conditions)
03图3:施加阵风对水平方向速度场的影响(图1-图2)Gust-induced change in horizontal velocity (difference between the two conditions)