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Effect of the number of blades and solidity on the performance of a vertical axis wind turbine

机译:叶片数量和坚固性对垂直轴风力发电机性能的影响

摘要

Two, three and four bladed phgr-shape Vertical Axis Wind Turbines are simulated using a free-wake vortex model. Two versions of the three and four bladed turbines are considered, one having the same chord length as the two-bladed turbine and the other having the same solidity as the two-bladed turbine. Results of the two-bladed turbine are validated against published experimental data of power coefficient and instantaneous torque. The effect of solidity on the power coefficient is presented and the instantaneous torque, thrust and lateral force of the two-, three- and four-bladed turbines are compared for the same solidity. It is found that increasing the number of blades from two to three significantly reduces the torque, thrust and lateral force ripples. Adding a fourth blade further reduces the ripples except for the torque at low tip speed ratio. This work aims to help choosing the number of blades during the design phase of a vertical axis wind turbine.
机译:使用自由苏醒涡流模型模拟了两个,三个和四个叶片的phgr形状的垂直轴风力发电机。考虑了三种和三种叶片式涡轮机的两种形式,一种具有与两叶片式涡轮机相同的弦长,另一种具有与两叶片式涡轮机相同的坚固性。根据公开的功率系数和瞬时扭矩实验数据验证了两叶涡轮机的结果。提出了坚固性对功率系数的影响,并比较了具有相同坚固性的两叶片,三叶片和四叶片涡轮机的瞬时转矩,推力和侧向力。发现将叶片的数量从两个增加到三个可以显着减少扭矩,推力和横向力波动。除了在低叶尖速比下的扭矩外,添加第四个叶片还可进一步减少波动。这项工作旨在在垂直轴风力涡轮机的设计阶段帮助选择叶片数量。

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