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    • 2. 发明公开
    • Speed controlled pitch system
    • 速度控制变桨系统
    • EP2080902A3
    • 2011-11-09
    • EP09150486.0
    • 2009-01-14
    • General Electric Company
    • Nies, Jacob JohannesAchenbach, PatrickRogall, PeterBraicks, AlexRieken, Stefan
    • F03D7/02
    • F03D7/024F03D7/0224F03D7/043F05B2220/60F05B2260/78F05B2270/328F05B2270/602Y02E10/723
    • The present patent application concerns wind turbine (100) having a rotor with a first rotor blade (140) and a pitch control system (200) with a first drive system (210) for adjusting a pitch angle of the first rotor blade, wherein the first drive system (210) is adapted to transform rotational energy of the rotor blade rotating about its longitudinal axis into another form of energy such that a counter torque against the rotating direction is induced. Further, the present patent application concerns a method for controlling a pitch velocity of a rotor blade of a wind turbine, the wind turbine comprising at least one drive system for adjusting a pitch angle of said rotor blade, the drive system being adapted to operate in a active mode, wherein the drive system rotates the rotor blade, and in a passive mode, wherein the drive system exerts a counter force against the rotating direction, when the rotor blade being rotated by another force than the force of the drive system, wherein the pitch velocity is controlled by operating the drive system in said passive mode when the pitch of the rotor blade is changed from a first position to a second position.
    • 本专利申请涉及具有带第一转子叶片(140)的转子的风力涡轮机(100)和具有用于调节第一转子叶片的桨距角的第一驱动系统(210)的桨距控制系统(200),其中, 第一驱动系统(210)适于将转子叶片绕其纵向轴线旋转的旋转能量转换成另一种形式的能量,从而引起相对于旋转方向的反向扭矩。 此外,本专利申请涉及用于控制风力涡轮机的转子叶片的桨距速度的方法,该风力涡轮机包括用于调节所述转子叶片的桨距角的至少一个驱动系统,该驱动系统适于在 其中所述驱动系统使所述转子叶片旋转,并且处于被动模式,其中,当所述转子叶片以不同于所述驱动系统的力的旋转力旋转时,所述驱动系统施加抵抗所述旋转方向的反作用力,其中, 当转子叶片的节距从第一位置改变到第二位置时,通过以所述被动模式操作驱动系统来控制俯仰速度。
    • 4. 发明公开
    • Speed controlled pitch system
    • Blatteinstellwinkelsteuerungssystem
    • EP2080902A2
    • 2009-07-22
    • EP09150486.0
    • 2009-01-14
    • General Electric Company
    • Nies, Jacob JohannesAchenbach, PatrickRogall, PeterBraicks, AlexRieken, Stefan
    • F03D7/02
    • F03D7/024F03D7/0224F03D7/043F05B2220/60F05B2260/78F05B2270/328F05B2270/602Y02E10/723
    • The present patent application concerns wind turbine (100) having a rotor with a first rotor blade (140) and a pitch control system (200) with a first drive system (210) for adjusting a pitch angle of the first rotor blade, wherein the first drive system (210) is adapted to transform rotational energy of the rotor blade rotating about its longitudinal axis into another form of energy such that a counter torque against the rotating direction is induced. Further, the present patent application concerns a method for controlling a pitch velocity of a rotor blade of a wind turbine, the wind turbine comprising at least one drive system for adjusting a pitch angle of said rotor blade, the drive system being adapted to operate in a active mode, wherein the drive system rotates the rotor blade, and in a passive mode, wherein the drive system exerts a counter force against the rotating direction, when the rotor blade being rotated by another force than the force of the drive system, wherein the pitch velocity is controlled by operating the drive system in said passive mode when the pitch of the rotor blade is changed from a first position to a second position.
    • 本专利申请涉及具有转子的风力涡轮机(100),该转子具有第一转子叶片(140)和变桨控制系统(200),其具有用于调节第一转子叶片的俯仰角的第一驱动系统(210),其中 第一驱动系统(210)适于将围绕其纵向轴线旋转的转子叶片的旋转能量转换成另一形式的能量,从而引起抵抗旋转方向的反转矩。 此外,本专利申请涉及一种用于控制风力涡轮机的转子叶片的俯仰速度的方法,所述风力涡轮机包括用于调节所述转子叶片的俯仰角的至少一个驱动系统,所述驱动系统适于在 主动模式,其中所述驱动系统使所述转子叶片旋转,并且在被动模式中,其中当所述转子叶片被所述驱动系统的力的另一个力转动时,所述驱动系统施加抵抗所述旋转方向的反作用力,其中 当转子叶片的间距从第一位置改变到第二位置时,通过以所述被动模式操作驱动系统来控制俯仰速度。