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    • 1. 发明授权
    • Wind turbine blade having a spoiler with effective separation of airflow
    • 风力涡轮机叶片具有有效分离气流的扰流板
    • US08944775B2
    • 2015-02-03
    • US13139153
    • 2009-10-26
    • Peter FuglsangKaja Lenz
    • Peter FuglsangKaja Lenz
    • F03B3/12F03D1/06
    • F03D1/0641F03D1/0675F05B2200/263F05B2240/301F05B2250/712Y02E10/721
    • A wind turbine blade with a flow guiding device attached to a profiled contour on a pressure side of the blade is described. The flow guiding device extends along at least a longitudinal part of a transition region of the blade and is arranged so as to generate a separation of airflow along at least a central longitudinal portion of the flow guiding device from the pressure side of the blade at a point between the flow guiding device and a trailing edge of the blade, when the blade is impacted by an incident airflow. The inflow surface, in at least the central longitudinal portion, is formed so that, for each transverse cross-section, a end point tangent to the inflow surface at the end point crosses the profiled contour at a crossing point, where the profiled contour has a profile tangent to the profiled contour, and wherein an angle between the profile tangent and the end point tangent is at least 45 degrees.
    • 描述了具有附接到叶片的压力侧上的轮廓轮廓的流动引导装置的风力涡轮机叶片。 流动引导装置沿着叶片的过渡区域的至少纵向部分延伸,并且布置成沿着叶片的压力侧沿流动引导装置的至少中心纵向部分产生气流分离 当叶片被入射气流冲击时,流动引导装置和叶片的后缘之间的点。 至少中心纵向部分的流入表面被形成为使得对于每个横截面,在端点处与流入表面相切的终点在交叉点处穿过异型轮廓,其中轮廓具有 与轮廓轮廓相切的轮廓,并且其中轮廓切线和终点切线之间的角度至少为45度。
    • 2. 发明申请
    • WIND TURBINE BLADE HAVING A SPOILER WITH EFFECTIVE SEPARATION OF AIRFLOW
    • 具有有效分离气流的风力涡轮机叶片
    • US20110250076A1
    • 2011-10-13
    • US13139153
    • 2009-10-26
    • Peter FuglsangKaja Lenz
    • Peter FuglsangKaja Lenz
    • F01D5/14
    • F03D1/0641F03D1/0675F05B2200/263F05B2240/301F05B2250/712Y02E10/721
    • A wind turbine blade with a flow guiding device attached to a profiled contour on a pressure side of the blade is described. The flow guiding device extends along at least a longitudinal part of a transition region of the blade and is arranged so as to generate a separation of airflow along at least a central longitudinal portion of the flow guiding device from the pressure side of the blade at a point between the flow guiding device and a trailing edge of the blade, when the blade is impacted by an incident airflow. The inflow surface, in at least the central longitudinal portion, is formed so that, for each transverse cross-section, a end point tangent to the inflow surface at the end point crosses the profiled contour at a crossing point, where the profiled contour has a profile tangent to the profiled contour, and wherein an angle between the profile tangent and the end point tangent is at least 45 degrees.
    • 描述了具有附接到叶片的压力侧上的轮廓轮廓的流动引导装置的风力涡轮机叶片。 流动引导装置沿着叶片的过渡区域的至少纵向部分延伸,并且布置成沿着叶片的压力侧沿流动引导装置的至少中心纵向部分产生气流分离 当叶片被入射气流冲击时,流动引导装置和叶片的后缘之间的点。 至少中心纵向部分的流入表面被形成为使得对于每个横截面,在端点处与流入表面相切的终点在交叉点处穿过异型轮廓,其中异形轮廓具有 与轮廓轮廓相切的轮廓,并且其中轮廓切线和终点切线之间的角度至少为45度。
    • 4. 发明授权
    • Wind turbine blade having a flow guiding device with optimised height
    • 具有优化高度的导流装置的风力涡轮机叶片
    • US08944776B2
    • 2015-02-03
    • US13139157
    • 2009-10-26
    • Kaja LenzPeter FuglsangSudhakar Piragalathalwar
    • Kaja LenzPeter FuglsangSudhakar Piragalathalwar
    • F03D1/06
    • F03D1/0641F05B2240/301Y02E10/721
    • A wind turbine blade with a flow guiding device attached to a profiled contour on a pressure side of the blade is described. The flow guiding device extends along at least a longitudinal part of a transition region of the blade and is arranged so as to generate a separation of airflow along at least a central longitudinal portion of the flow guiding device from the pressure side of the blade at a point between the flow guiding device and a trailing edge of the blade, when the blade is impacted by an incident airflow. The flow guiding device is arranged at a relative chordal position, seen from the leading edge of the blade, lying in an interval between 40% and 92%. The relative height of the flow guiding device is at least 10% of a maximum thickness of the profiled contour.
    • 描述了具有附接到叶片的压力侧上的轮廓轮廓的流动引导装置的风力涡轮机叶片。 流动引导装置沿着叶片的过渡区域的至少纵向部分延伸,并且布置成沿着叶片的压力侧沿流动引导装置的至少中心纵向部分产生气流分离 当叶片被入射气流冲击时,流动引导装置和叶片的后缘之间的点。 流动引导装置布置在相对的弦位置,从叶片的前缘看,以40%至92%之间的间隔。 导流装置的相对高度至少是成型轮廓最大厚度的10%。