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    • 1. 发明申请
    • APPARATUS FOR ROTATING THE NACELLE OF A WIND TURBINE
    • 用于旋转风力涡轮机的装置的装置
    • US20130170989A1
    • 2013-07-04
    • US13821488
    • 2011-11-16
    • Alf TredeMatthias Bruckner
    • Alf TredeMatthias Bruckner
    • F03D1/06
    • F03D1/06F03D7/0204F03D7/0244F05B2260/902F16C2360/31Y02E10/721Y02E10/723Y02E10/726
    • The present invention provides an apparatus for the controlled rotation of a nacelle of a wind turbine, which includes a control device and n of yaw brakes. In standstill operation, the n yaw brakes are actuated to impart a standstill holding moment M1 for holding the nacelle, and the n yaw brakes impart a substantially equal first holding moment. In tracking operation, the n yaw brakes are actuated to impart a tracking holding moment, M2, which is lower than the standstill holding moment M1 (M1>M2). The control device, in tracking operation, actuates a number m of the n yaw brakes to generate substantially the same constant holding moment M3, where M1/n>M3>M2/n, and where the other (n−m) yaw brakes are actuated to generate substantially the same constant holding moment M4, where m*M3+(n−m)*M4˜=M2, and M1/n>M2/n>M4.
    • 本发明提供了一种用于风力涡轮机的机舱的受控旋转的装置,其包括控制装置和n个偏航制动器。 在静止操作中,n个偏航制动器被致动以提供用于保持机舱的停止保持力矩M1,并且n个偏航制动器施加基本相等的第一保持力矩。 在跟踪操作中,n个偏航制动器被致动以赋予比停止保持力矩M1(M1> M2)低的跟踪保持力矩M2。 在跟踪操作中,控制装置致动数量m的n个偏航制动器,以产生基本相同的恒定保持力矩M3,其中M1 / n> M3> M2 / n,并且其他(nm)偏航制动器被致动到 产生基本相同的恒定保持力矩M4,其中m * M3 +(nm)* M4〜= M2,以及M1 / n> M2 / n> M4。
    • 3. 发明授权
    • Positioning of a rotor of a wind power plant
    • 风力发电厂转子的定位
    • US08450871B2
    • 2013-05-28
    • US12436527
    • 2009-05-06
    • Alf Trede
    • Alf Trede
    • F03D11/00F03D11/02
    • F03D11/00F01D25/36F03D15/00F03D15/10F03D80/00F03D80/50F03D80/70F05B2230/80F05D2230/80Y02E10/721Y02P70/523
    • The invention relates to a wind power plant (W) with a rotor, which is in operative connection with a gearbox (13) via a rotor shaft (12), wherein in particular the gearbox (13) is in operative connection with a generator via a main drive (19). Moreover, the invention relates to a method for the operation of a wind power plant (W) with a rotor and use of a driving device. The wind power plant (W), with a rotor, is further established in that the gearbox (13) has an auxiliary drive (30) and in that a rotor positioning rotating device (24) is arranged on the auxiliary drive (30) so that using the rotor positioning rotating device (24) and the auxiliary drive (30) of the gearbox (13), the rotor of the wind power plant (W) is positioned, and wherein the auxiliary drive (30) cannot be switched within the gearbox (13).
    • 本发明涉及一种具有转子的风力发电厂(W),其经由转子轴(12)与齿轮箱(13)操作连接,其中特别地,齿轮箱(13)与发电机通过 主驱动器(19)。 此外,本发明涉及一种利用转子和驱动装置的风力发电设备(W)的运行方法。 进一步建立具有转子的风力发电厂(W),其中齿轮箱(13)具有辅助驱动(30),并且转子定位旋转装置(24)布置在辅助驱动器(30)上,因此 使用转子定位旋转装置(24)和变速箱(13)的辅助驱动(30),风力发电厂(W)的转子被定位,并且其中辅助驱动器(30)不能在 变速箱(13)。
    • 4. 发明授权
    • Apparatus for rotating the nacelle of a wind turbine
    • 用于旋转风力涡轮机的机舱的装置
    • US09359995B2
    • 2016-06-07
    • US13821488
    • 2011-11-16
    • Alf TredeMatthias Bruckner
    • Alf TredeMatthias Bruckner
    • F03D1/06F03D7/02
    • F03D1/06F03D7/0204F03D7/0244F05B2260/902F16C2360/31Y02E10/721Y02E10/723Y02E10/726
    • The present invention provides an apparatus for the controlled rotation of a nacelle of a wind turbine, which includes a control device and n of yaw brakes. In standstill operation, the n yaw brakes are actuated to impart a standstill holding moment M1 for holding the nacelle, and the n yaw brakes impart a substantially equal first holding moment. In tracking operation, the n yaw brakes are actuated to impart a tracking holding moment, M2, which is lower than the standstill holding moment M1 (M1>M2). The control device, in tracking operation, actuates a number m of the n yaw brakes to generate substantially the same constant holding moment M3, where M1/n>M3>M2/n, and where the other (n−m) yaw brakes are actuated to generate substantially the same constant holding moment M4, where m*M3+(n−m)*M4˜=M2, and M1/n>M2/n>M4.
    • 本发明提供了一种用于风力涡轮机的机舱的受控旋转的装置,其包括控制装置和n个偏航制动器。 在静止操作中,n个偏航制动器被致动以提供用于保持机舱的停止保持力矩M1,并且n个偏航制动器施加基本相等的第一保持力矩。 在跟踪操作中,n个偏航制动器被致动以赋予比停止保持力矩M1(M1> M2)低的跟踪保持力矩M2。 在跟踪操作中,控制装置驱动n个偏航制动器的数量m,以产生基本相同的恒定保持力矩M3,其中M1 / n> M3> M2 / n,其中(n-m)个偏航制动器是 致动以产生基本上相同的恒定保持力矩M4,其中m * M3 +(n-m)* M4〜= M2,以及M1 / n> M2 / n> M4。
    • 5. 发明授权
    • Method for the operation of a wind power plant
    • 风力发电厂运行方法
    • US08764393B2
    • 2014-07-01
    • US12663718
    • 2008-04-28
    • Martin Von MutiusJens AltemarkAlf Trede
    • Martin Von MutiusJens AltemarkAlf Trede
    • F03D11/00
    • F03D7/0264F03D17/00F03D80/50F05B2230/80F05B2270/32F05B2270/321Y02E10/723Y02P70/523
    • A method for operating a wind power plant (WEA) before or during the performance of maintenance work on the wind power plant (WEA). At least one physical condition of the surroundings outside the wind power plant (WEA) induced by wind movement outside the wind power plant (WEA) is detected as an external physical condition. At least one physical condition of a component of the wind power plant (WEA) influenced by wind movement outside the wind power plant (WEA) is detected as an internal physical condition. The at least one external physical condition and/or at least one internal physical condition are evaluated. The at least one external physical condition is compared with a predetermined reference value for the external physical condition. The at least one internal physical condition is compared with a predetermined reference value for the internal physical condition. Depending on the comparison, at least one warning message is generated.
    • 在风力发电厂(WEA)进行维护工作之前或期间操作风力发电厂(WEA)的方法。 作为外部物理条件,检测到风力发电厂(WEA)外的风动作用引起的风力发电厂(WEA)外的环境的至少一个物理状况。 作为内部物理条件,检测到风力发电厂(WEA)以外的风动影响的风力发电厂(WEA)的部件的至少一个物理状况。 评估至少一个外部物理条件和/或至少一个内部物理条件。 将至少一个外部物理条件与外部物理条件的预定参考值进行比较。 将至少一个内部物理条件与内部物理条件的预定参考值进行比较。 根据比较,生成至少一个警告消息。
    • 6. 发明申请
    • METHOD FOR THE OPERATION OF A WIND POWER PLANT
    • 风力发电厂运行方法
    • US20100183440A1
    • 2010-07-22
    • US12663718
    • 2008-04-28
    • Martin Von MutiusJens AltemarkAlf Trede
    • Martin Von MutiusJens AltemarkAlf Trede
    • F03D7/00F03D11/00
    • F03D7/0264F03D17/00F03D80/50F05B2230/80F05B2270/32F05B2270/321Y02E10/723Y02P70/523
    • The invention concerns a method for operating a wind power plant (WEA), preferably before or during the performance of maintenance work on the wind power plant (WEA), wherein —at least one physical condition of the surroundings outside the wind power plant (WEA) induced by wind movement outside the wind power plant (WEA) is detected as an external physical condition, and/or at least one physical condition of a component of the wind power plant (WEA) influenced by wind movement outside the wind power plant (WEA) is detected as an internal physical condition; —the at least one external physical condition and/or at least one internal physical condition are evaluated; —the at least one external physical condition is compared with a predetermined reference value for the external physical condition, and/or the at least one internal physical condition is compared with a predetermined reference value for the internal physical condition; —depending on the comparison at least one warning message is generated, in particular a maintenance warning message.
    • 本发明涉及一种用于操作风力发电设备(WEA)的方法,优选在对风力发电厂(WEA)进行维护工作之前或期间进行操作,其中至少一个风力发电厂外部的环境(WEA) 被检测为风力发电厂(WEA)外的风动作用引起的外部物理状况,和/或风力发电厂(WEA)的部件的至少一个物理状况受风力发电厂外的风动作影响 WEA)被检测为内部物理条件; - 评估至少一个外部身体状况和/或至少一个内部身体状况; 将至少一个外部物理条件与外部物理条件的预定参考值进行比较,和/或将至少一个内部物理条件与内部物理条件的预定参考值进行比较; 根据比较,生成至少一个警告消息,特别是维护警告消息。
    • 7. 发明申请
    • CONNECTION ASSEMBLY FOR COMPONENTS OF A WIND TURBINE
    • 风力涡轮机组件连接组件
    • US20100171317A1
    • 2010-07-08
    • US12593198
    • 2008-03-06
    • Alf Trede
    • Alf Trede
    • F03D1/00E04B1/62E04B1/21E04B1/38
    • F03D1/0658F03D13/20F03D15/00F03D15/10F03D80/00F03D80/50F05B2230/90F05B2280/6011F05C2253/12F16B2/005Y02E10/721Y02P70/523
    • A connection of components (11, 12, 13) of a wind turbine (WEA), especially of components (11, 12, 13) of a wind turbine (WEA) with a diameter greater than 0.5 m, preferably greater than 1.0 m, more preferably greater than 1.5 m, in which two components (11, 12, 13) to be connected to each other each have contact areas facing toward each other, and in the connected state the components (11, 12, 13) are or become secured to each other. The connection is constituted by multiple intermediate connecting bodies (20) arranged between a first component (11; 12) of the wind turbine (WEA) and a second component (12; 13) of the wind turbine (WEA) and by designing the intermediate connecting bodies (20) with contact areas which are arranged opposite to the contact areas of the first and second component (11, 12, 13), at least one contact area of the intermediate connecting bodies (20) being provided with a coating.
    • 风力涡轮机(WEA)的部件(11,12,13),特别是直径大于0.5m,优选大于1.0m的风力涡轮机(WEA)的部件(11,12,13)的连接, 更优选大于1.5μm,其中彼此连接的两个部件(11,12,13)各自具有彼此面对的接触区域,并且在连接状态下,部件(11,12,13)成为或成为 相互固定。 连接由布置在风力涡轮机(WEA)的第一部件(11; 12)和风力涡轮机(WEA)的第二部件(12; 13)之间的多个中间连接体(20)构成,并且通过设计中间体 连接体(20)具有与第一和第二部件(11,12,13)的接触区域相对布置的接触区域,中间连接体(20)的至少一个接触区域设置有涂层。
    • 8. 发明申请
    • POSITIONING OF A ROTOR OF A WIND POWER PLANT
    • 风力发电厂转子的定位
    • US20090278359A1
    • 2009-11-12
    • US12436527
    • 2009-05-06
    • Alf Trede
    • Alf Trede
    • F03D9/00
    • F03D11/00F01D25/36F03D15/00F03D15/10F03D80/00F03D80/50F03D80/70F05B2230/80F05D2230/80Y02E10/721Y02P70/523
    • The invention relates to a wind power plant (W) with a rotor, which is in operative connection with a gearbox (13) via a rotor shaft (12), wherein in particular the gearbox (13) is in operative connection with a generator via a main drive (19). Moreover, the invention relates to a method for the operation of a wind power plant (W) with a rotor and use of a driving device. The wind power plant (W), with a rotor, is further established in that the gearbox (13) has an auxiliary drive (30) and in that a rotor positioning rotating device (24) is arranged on the auxiliary drive (30) so that using the rotor positioning rotating device (24) and the auxiliary drive (30) of the gearbox (13), the rotor of the wind power plant (W) is positioned, and wherein the auxiliary drive (30) cannot be switched within the gearbox (13).
    • 本发明涉及一种具有转子的风力发电厂(W),其经由转子轴(12)与齿轮箱(13)操作连接,其中特别地,齿轮箱(13)与发电机通过 主驱动器(19)。 此外,本发明涉及一种利用转子和驱动装置的风力发电设备(W)的运行方法。 进一步建立具有转子的风力发电厂(W),其中齿轮箱(13)具有辅助驱动(30),并且转子定位旋转装置(24)布置在辅助驱动器(30)上,因此 使用转子定位旋转装置(24)和变速箱(13)的辅助驱动(30),风力发电厂(W)的转子被定位,并且其中辅助驱动器(30)不能在 变速箱(13)。
    • 9. 发明申请
    • ERECTING A WIND POWERPLANT
    • 检查风力发电机
    • US20090159549A1
    • 2009-06-25
    • US12336980
    • 2008-12-17
    • Alf TredeOliver HeineckeCarsten Eusterbarkey
    • Alf TredeOliver HeineckeCarsten Eusterbarkey
    • B66C13/00
    • F03D13/10B66C1/108B66C1/62F03D1/0658F05B2230/61Y02E10/721Y02E10/728Y02P70/523
    • A method for handling a wind powerplant's rotor hub (11) or to handle a wind powerplant's rotor (10) using a hoist, in particular for erecting a wind powerplant or for assembling or disassembling a rotor (11) to and from such a powerplant, in particular a hub (11) or a rotor (10) being configured by means of one assembly side to the wind powerplant's tower, the hub (11) or rotor (10) being raised or held by the hoist. In the raised state, the hub (11) is tilted by a tilting mechanism (15) acting on it out of the initial, raised position by a predetermined angle of tilting, or the rotor (10) is tilted by a tilting mechanism (15) acting on the rotor blade roots of the rotor (10) through a predetermined angle of tilting. A mechanism (15) to handle a wind powerplant's rotor hub (11) of a wind powerplant's rotor (10), in particular for assembling or dismantling a rotor to or from its wind powerplant.
    • 一种用于处理风力发电机的转子轮毂(11)或使用起重机来处理风力发电机的转子(10)的方法,特别是用于竖立风力发电机组或用于组装或拆卸与这种动力装置相关的转子(11) 特别是通过一个组装侧构造到风力发电机塔的轮毂(11)或转子(10),轮毂(11)或转子(10)由起重机升起或保持。 在凸起状态下,轮毂(11)由作用在其上的倾斜机构(15)倾斜预定的倾斜角度,或者转子(10)由倾斜机构(15)倾斜 )通过预定的倾斜角度作用在转子(10)的转子叶片根部上。 一种用于处理风力发电机转子(10)的风力发电机的转子毂(11)的机构(15),特别是用于将转子组装或拆卸到其风力发电机组或从其风力发电机组拆卸。