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    • 2. 发明申请
    • HUB FOR A WIND TURBINE AND A METHOD FOR FABRICATING THE HUB
    • 一种风力发电机组和一种用于制造集束的方法
    • US20130177444A1
    • 2013-07-11
    • US13517191
    • 2010-12-21
    • Anton BechMichael Lundgaard Bitsch
    • Anton BechMichael Lundgaard Bitsch
    • F03D1/06B23P15/00
    • F03D1/0691B23P15/00B23P15/04F05B2230/21Y02E10/721Y02P70/523Y10T29/49826
    • A hub (1) for a wind turbine and a method for fabricating the hub (1) are disclosed. The hub (1) comprises a continuous shell forming a hollow body with a main shaft flange (4) adapted to connect the hub (1) to a main shaft,and one or more blade flanges (5), each blade flange (5) being adapted to connect the hub (1) to a wind turbine blade. The hub (1) further comprises at least two hub parts (2, 3, 7), each hub part (2, 3, 7) being casted separately from a castable material, and each hub part (2, 3, 7) being subsequently connected to at least one other hub part (2, 3, 7) via one or more connecting portions (6), so that at least one blade flange (5) and/or the main shaft flange (4) comprises a section forming part of or being attached to one of the hub parts (2, 3, 7) and a section forming part of or being attached to another hub part (2, 3, 7), thereby ensuring that the casted parts have a size and a weight which are manageable during the manufacture, in particular during the casting. The hub (1) may comprise one or more reinforcement elements arranged at or near the blade flange(s) (5), e.g. comprising an inner wall (8) arranged at a distance to the continuous shell, thereby forming a cavity (9) between the inner wall (8) and the continuous shell. This allows the regions between the blade flanges (5) to be small or narrow, thereby reducing the size and weight of the hub (1), while maintaining a sufficient strength and stiffness of these regions.
    • 公开了一种用于风力涡轮机的轮毂(1)和用于制造轮毂(1)的方法。 轮毂(1)包括形成中空体的连续壳体,其具有适于将轮毂(1)连接到主轴的主轴法兰(4)和一个或多个叶片凸缘(5),每个叶片凸缘(5) 适于将轮毂(1)连接到风力涡轮机叶片。 轮毂(1)还包括至少两个轮毂部分(2,3,7),每个轮毂部分(2,3,7)与浇注材料分开铸造,每个轮毂部分(2,3,7)是 随后经由一个或多个连接部分(6)连接到至少一个其它毂部分(2,3,7),使得至少一个叶片凸缘(5)和/或主轴凸缘(4)包括形成 一部分或附接到所述轮毂部分(2,3,7)中的一个,以及形成一个或另一个轮毂部分(2,3,7)的部分,从而确保所铸造的部件具有尺寸和尺寸 在制造过程中,特别是在铸造过程中可以控制的重量。 轮毂(1)可以包括布置在叶片凸缘(5)处或附近的一个或多个加强元件,例如。 包括设置在连续壳体一定距离处的内壁(8),从而在内壁(8)和连续壳体之间形成空腔(9)。 这允许叶片凸缘(5)之间的区域小或窄,从而减小轮毂(1)的尺寸和重量,同时保持这些区域的足够的强度和刚度。
    • 3. 发明申请
    • TRANSPORTATION OF DRIVE TRAIN COMPONENTS IN A WIND TURBINE NACELLE
    • 风力发电机组中的驱动组件的运输
    • US20140017047A1
    • 2014-01-16
    • US13994646
    • 2011-12-08
    • Michael Lundgaard BitschAbolfazlian MazyarMorten Mogensen
    • Michael Lundgaard BitschAbolfazlian MazyarMorten Mogensen
    • F03D11/00B65G37/00
    • F03D13/40B65G37/00F03D13/10F03D15/00F03D80/00F03D80/50F05B2230/60F05B2230/61Y02E10/726Y02E10/728Y02P70/523
    • The invention relates to a transportation system for transporting at least one drive train component (7a, 7b, 7c) of a wind turbine (1) comprising a tower (2) and a nacelle (3) arranged on the top of said tower, said transportation system comprising a displacement system comprising one or more transportation rails (8, 8a, 8b) being arranged to support said at least one drive train component during displacement thereof, the displacement system facilitating displacement of the drive train component substantially parallel to the rotor axis between an installation location for the drive train component and a second location (10) by means of a first drive arrangement of said displacement system, and a second drive arrangement (11) mounted on said nacelle and comprising at least one winch (12), said second drive arrangement being separate to said displacement system and facilitating transportation of said drive train component between said second location and a lower level when connected to the drive train component independently of the operation of the displacement system. The invention furthermore relates to a wind turbine nacelle with a transportation system and a method of transporting a drive train component of a wind turbine.
    • 本发明涉及一种用于输送风力涡轮机(1)的至少一个传动系组件(7a,7b,7c)的输送系统,该风力涡轮机(1)包括塔(2)和布置在所述塔的顶部上的机舱(3) 运输系统包括位移系统,该排量系统包括一个或多个运输轨道(8,8a,8b),其布置成在其移动期间支撑所述至少一个传动系部件,所述排量系统促进驱动系组件基本上平行于转子轴线的位移 在所述驱动系部件的安装位置和通过所述排量系统的第一驱动装置的第二位置(10)之间,以及安装在所述机舱上并且包括至少一个绞盘(12)的第二驱动装置(11) 所述第二驱动装置与所述位移系统分离,并且便于当所述第二驱动装置连接到所述第二位置和下一级之间时传输所述传动系部件 传动系组件独立于排量系统的运行。 本发明还涉及具有运输系统的风力涡轮机机舱和运输风力涡轮机的传动系部件的方法。
    • 8. 发明授权
    • Transportation of drive train components in a wind turbine nacelle
    • 传动系组件在风力发电机舱中的运输
    • US09228567B2
    • 2016-01-05
    • US13994646
    • 2011-12-08
    • Michael Lundgaard BitschAbolfazlian MazyarMorten Mogensen
    • Michael Lundgaard BitschAbolfazlian MazyarMorten Mogensen
    • F03D11/00F03D1/00F03D11/02B65G37/00
    • F03D13/40B65G37/00F03D13/10F03D15/00F03D80/00F03D80/50F05B2230/60F05B2230/61Y02E10/726Y02E10/728Y02P70/523
    • The invention relates to a transportation system for transporting at least one drive train component (7a, 7b, 7c) of a wind turbine (1) comprising a tower (2) and a nacelle (3) arranged on the top of said tower, said transportation system comprising a displacement system comprising one or more transportation rails (8, 8a, 8b) being arranged to support said at least one drive train component during displacement thereof, the displacement system facilitating displacement of the drive train component substantially parallel to the rotor axis between an installation location for the drive train component and a second location (10) by means of a first drive arrangement of said displacement system, and a second drive arrangement (11) mounted on said nacelle and comprising at least one winch (12), said second drive arrangement being separate to said displacement system and facilitating transportation of said drive train component between said second location and a lower level when connected to the drive train component independently of the operation of the displacement system. The invention furthermore relates to a wind turbine nacelle with a transportation system and a method of transporting a drive train component of a wind turbine.
    • 本发明涉及一种用于输送风力涡轮机(1)的至少一个传动系组件(7a,7b,7c)的输送系统,该风力涡轮机(1)包括塔(2)和布置在所述塔的顶部上的机舱(3) 运输系统包括位移系统,该排量系统包括一个或多个运输轨道(8,8a,8b),其布置成在其移动期间支撑所述至少一个传动系部件,所述排量系统促进驱动系组件基本上平行于转子轴线的位移 在所述驱动系部件的安装位置和通过所述排量系统的第一驱动装置的第二位置(10)之间,以及安装在所述机舱上并且包括至少一个绞盘(12)的第二驱动装置(11) 所述第二驱动装置与所述位移系统分离,并且便于当所述第二驱动装置连接到所述第二位置和下一级之间时传输所述传动系部件 传动系组件独立于排量系统的运行。 本发明还涉及具有运输系统的风力涡轮机机舱和运输风力涡轮机的传动系部件的方法。