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    • 2. 发明申请
    • LIFTING DEVICE AND METHOD FOR WIND TURBINE COMPONENTS
    • 用于风力涡轮机组件的升降装置和方法
    • WO2018072927A1
    • 2018-04-26
    • PCT/EP2017/072802
    • 2017-09-12
    • SIEMENS AKTIENGESELLSCHAFT
    • MOELLER, Jesper
    • B66C1/10B66C13/08F03D13/10
    • A lifting device (1) for a wind turbine component (10) com- prises a yoke (15) for connecting the wind turbine component (10) to a crane, the yoke (15) including at least one sensor (20) for measuring the position and/or the speed and/or the acceleration of the wind turbine component (10)at least during a lifting operation of the component (10). The yoke (15) further includes a pitching device (30) for rotating the wind turbine component (10) around a pitching axis (Y) when the wind turbine component (10) is connected yoke (15). The lifting device (1) further includes a controller (40) for controlling the rotation of the pitching device (30) around the pitching axis (Y) as a function of the measurement of the at least one sensor (20).
    • 用于风力涡轮机部件(10)的提升装置(1)包括用于将风力涡轮机部件(10)连接到起重机的轭架(15),轭架(15)包括在 至少一个传感器(20)用于至少在部件(10)的提升操作期间测量风力涡轮机部件(10)的位置和/或速度和/或加速度。 轭架(15)还包括俯仰装置(30),用于当风力涡轮机部件(10)连接轭架(15)时围绕俯仰轴线(Y)旋转风力涡轮机部件(10)。 提升装置(1)还包括用于根据至少一个传感器(20)的测量结果来控制俯仰装置(30)围绕俯仰轴线(Y)的旋转的控制器(40)。
    • 5. 发明申请
    • AUTOMATED RECEPTOR SYSTEM
    • 自动接收系统
    • WO2016146184A1
    • 2016-09-22
    • PCT/EP2015/055648
    • 2015-03-18
    • SIEMENS AKTIENGESELLSCHAFT
    • HANSEN, Steen MattrupMOELLER, JesperSVINTH, Kenneth Helligsoe
    • B66C1/10
    • B66C1/108B66C1/34
    • Automated receptor system (30) of a sling-receiving element (27) for gripping a connection means (23a) of a sling (23) of a blade gripping device (1) for gripping a rotor blade (9), in particular a rotor blade (9) of a wind turbine, which automated receptor system (30) comprises a receptor (H) for connecting the connection means (23a) to the sling-receiving element (27) and a drive system (D) for pivoting the receptor (H) for coupling the connection means (23a) to the sling-receiving element (27) and for decoupling the connection means from the sling-receiving element (27). Further a sling-receiving element (27) and a blade gripping device (1) are described. Furthermore, the invention concerns a method for gripping a connection means (23a) of a sling (23) of a blade gripping device (1) for gripping a rotor blade (9).
    • 用于夹持用于夹紧转子叶片(9)的叶片夹持装置(1)的吊索(23)的连接装置(23a)的吊索接收元件(27)的自动接收器系统(30),特别是转子 风力涡轮机的叶片(9),该自动接收器系统(30)包括用于将连接装置(23a)连接到吊索接收元件(27)的接收器(H)和用于枢转接收器的驱动系统(D) (H),用于将连接装置(23a)联接到吊索接收元件(27)并且用于将连接装置与吊索接收元件(27)分离。 此外,还描述了一个吊索接收元件(27)和一个刀片夹紧装置(1)。 此外,本发明涉及一种夹持用于夹持转子叶片(9)的叶片夹持装置(1)的吊索(23)的连接装置(23a)的方法。
    • 8. 发明申请
    • TOWER MANOEUVRING ARRANGEMENT
    • 塔式装卸装置
    • WO2015055334A1
    • 2015-04-23
    • PCT/EP2014/067391
    • 2014-08-14
    • SIEMENS AKTIENGESELLSCHAFT
    • MOELLER, JesperSVINTH, Kenneth Helligsoe
    • B66C13/08B66C23/18
    • B66C13/08B66C23/185
    • The invention describes a tower manoeuvring arrangement (1) for bringing a tower assembly (2) into a mounting position relative to a tower mount (3), which apparatus comprises a lifting means (10, 11) for lifting the tower assembly (2) over the tower mount (3); a tag line coupling means (4, 5) realised to detachably couple a tag line arrangement (6A, 6B) to the tower assembly (2), which tag line coupling means (4, 5) comprises a contact surface (40, 50) for application to an outer surface (20) of the tower assembly (2); and a winch arrangement (7) realised to deploy the tag lines (6A, 6B) to effect a controlled rotation of the tower assembly (2) about a longitudinal axis (L) of the tower assembly (2). The invention also describes a method of manoeuvring a tower assembly (2) into a mounting position relative to a tower mount (3).
    • 本发明描述了一种用于使塔架组件(2)相对于塔架(3)进入安装位置的塔架操纵装置(1),该装置包括用于提升塔架组件(2)的提升装置(10,11) 在塔架上(3); 实现了将标签线装置(6A,6B)可拆卸地连接到塔架组件(2)上的标签线联接装置(4,5),该标签线耦合装置(4,5)包括接触表面(40,50) 用于应用于塔组件(2)的外表面(20); 以及实现了部署标签线(6A,6B)以实现塔架组件(2)围绕塔架组件(2)的纵向轴线(L)的受控旋转的绞盘装置(7)。 本发明还描述了一种将塔架组件(2)相对于塔架(3)操纵到安装位置的方法。
    • 9. 发明申请
    • LIFTING DEVICE FOR WIND TURBINE COMPONENTS
    • 风力发电机组升降装置
    • WO2018082913A1
    • 2018-05-11
    • PCT/EP2017/076494
    • 2017-10-17
    • SIEMENS AKTIENGESELLSCHAFT
    • MOELLER, Jesper
    • B66C1/10F03D13/00B66C13/08
    • A lifting device (1) for a wind turbine component (10) comprises : a yoke (15) for connecting the wind turbine component (10) to a crane (11), the yoke (15) including at least one anchor point (P1, P2) connectable to a forcing system (21, 22) for pushing or pulling the yoke (5) in order to rotate the yoke (15) around a central axis (Y) of the yoke (15). The yoke (5) is configurable in at least a first closed configuration, wherein in the first closed configuration the at least one anchor point (P1, P2) is at a first distance (R1) from the central axis (Y) of the yoke (15), and at least a second extended configuration, wherein in the second extended configuration the at least one anchor point (P1, P2) is at a second distance (R2) from the central axis (Y) of the yoke (15) greater than the first distance (R1).
    • 用于风力涡轮机部件(10)的提升装置(1)包括:轭架(15),用于将风力涡轮机部件(10)连接到起重机(11),轭架(15) 包括至少一个可连接到加力系统(21,22)的锚定点(P1,P2),用于推动或拉动所述轭架(5)以围绕所述轭架的中心轴线(Y)旋转所述轭架(15) 15)。 所述轭(5)可至少配置成第一闭合配置,其中在所述第一闭合配置中,所述至少一个锚定点(P1,P2)与所述轭的中心轴线(Y)处于第一距离(R1) (15)和至少第二延伸结构,其中在所述第二延伸结构中,所述至少一个锚定点(P1,P2)与所述轭架(15)的所述中心轴线(Y)处于第二距离(R2) 大于第一距离(R1)。