空气动力学
参数统计
风力发电
航程(航空)
垂直轴风力涡轮机
物理
扭矩
航空航天工程
方位角
力矩(物理)
风速
海洋工程
涡轮机
纵横比(航空)
纵轴
方向(向量空间)
涡轮叶片
功率(物理)
叶尖速比
攻角
俯仰力矩
相(物质)
刀(考古)
空气动力
光谱密度
机械工程
风洞
倾斜(摄像机)
计算流体力学
声学
机械
参数化设计
作者
Seyed Reza Mirmotahari,Farzad Ghafoorian,Amir Zanj
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2025-11-01
卷期号:37 (11)
被引量:5
摘要
Darrieus vertical axis wind turbines (VAWTs) are a class of lift-based wind turbines known for their high efficiency across a broad spectrum of tip speed ratios (TSRs). However, they often suffer from poor self-starting capabilities due to low net torque in the windward section, particularly at low TSRs. To address this limitation, hybrid J-shaped blade configurations—featuring a primary row of clean blades and a secondary row of J-shaped blades—have recently gained attention for their potential to enhance startup performance. To fully harness the advantages of this novel configuration, this study aims to conduct a comprehensive parametric investigation to assess and optimize its aerodynamic performance and self-starting capability. Specifically, three key design parameters are examined: (1) the diameter ratio between the inner and outer rotors, (2) the phase angle between the main and secondary blades, and (3) the orientation of the openings in the J-shaped blades. These findings reveal that the optimal configuration features an outer-facing J-blade opening, a diameter ratio of 1.3, and a phase angle of 0°. This setup extends the effective TSR range down to 0.5, significantly improving self-starting behavior. Additionally, it increases the power coefficient (Cp) by up to 140% in the medium-TSR range and enhances the moment coefficient (Cm) by up to 80% at an azimuth angle of 75°, particularly when the blades are in the upwind position. These results demonstrate the potential of the hybrid J-shaped design to address one of the key performance bottlenecks of conventional Darrieus VAWTs.
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