首页> 外文期刊>Renewable energy >Blade design and performance testing of a small wind turbine rotor for low wind speed applications
【24h】

Blade design and performance testing of a small wind turbine rotor for low wind speed applications

机译:适用于低风速应用的小型风力发电机转子的叶片设计和性能测试

获取原文
获取原文并翻译 | 示例
       

摘要

Small wind turbines operating at low wind speeds regularly face the problem of poor performance due to laminar separation and laminar separation bubbles on the blades. This is due to the low Reynolds number (Re) resulting from low wind speeds and small rotor size. The use of specially designed low Re airfoils permits start up at lower wind speeds, increasing the startup torque and thus improving the overall performance of the turbine. A new airfoil was designed and the performance of a 2-bladed rotor designed for low Re application fitted to an Air-X marine 400 W wind turbine was tested at a wind speed range of 3-6 m/s. The low Re rotor incorporated taper and twist to the low Re AF300 airfoil section. The pitch of the blades was varied over a range of 15°, 18° and 20° to study the performance and the startup wind speed. It was found that the turbine performed best at 18° pitch angle. On an average, the wind turbine yielded a power coefficient (Cp) of 0.255 at a height of 8.22 m at a wind speed of 6 m/s at 18° pitch angle. Maximum Cp based on 10 s data at the freestream velocity of 6 m/s was 0.291. The cut-in wind speed based on 10 s averaged data at the optimum pitch angle was 3.24 m/s whereas the instantaneous cut-in wind speed was 2.34 m/s. In comparison with the baseline 3-bladed rotor, the new 2-bladed rotor produced more electrical power at the same freestream velocity.
机译:由于层流分离和叶片上的层流分离气泡,以低风速运行的小型风力涡轮机经常会遇到性能不佳的问题。这是由于低风速和较小的转子尺寸导致雷诺数(Re)低。使用特殊设计的低Re机翼可在较低的风速下启动,从而增加了启动扭矩,从而改善了涡轮机的整体性能。设计了一种新的翼型,并在3-6 m / s的风速范围内测试了安装在Air-X船用400 W风力涡轮机上的专为低Re应用设计的2叶片转子的性能。低Re转子带有锥度,并扭曲到低Re AF300机翼部分。叶片的螺距在15°,18°和20°的范围内变化,以研究性能和启动风速。发现涡轮在18°俯仰角下表现最佳。平均而言,风力发电机在高度为8.22 m,风速为6 m / s,俯仰角为18°时产生的功率系数(Cp)为0.255。在6 m / s的自由流速度下,基于10 s数据的最大Cp为0.291。在最佳桨距角下,基于10 s平均数据的切入风速为3.24 m / s,而瞬时切入风速为2.34 m / s。与基线3叶片转子相比,新型2叶片转子在相同的自由流速度下产生了更多的电能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号