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    • 5. 发明申请
    • ROTATING UNIT FOR ROTATING A COMPONENT MOUNTED IN A ROTATBLE MANNER ON A WIND TURBINE
    • 旋转组件旋转在风轮机上的旋转管道中的组件
    • US20150377218A1
    • 2015-12-31
    • US14737484
    • 2015-06-11
    • SENVION SE
    • Alf TredeCarsten Eusterbarkey
    • F03D11/02F03D11/00F03D1/00F03D1/06
    • F03D15/10F03D1/06F03D7/0204F03D7/0224F03D13/10F03D15/00F03D80/00F03D80/88F05B2260/30F05B2260/4031F05B2260/79Y02E10/721Y02E10/723Y02E10/726
    • A rotating unit for rotating a first component of a wind turbine rotatably mounted on a second component, which includes a gearwheel element arranged on the first component, a drive arranged on the second component by a drive holder including a drive housing and a drive pinion for actuating the gearwheel element, a connecting element arranged on the drive housing and configured to form a releasable connection between the drive housing and the drive holder, and fastening means, which interact with the connecting element and can be actuated between a clamping position and a disengagement position. The fastening means connect the drive housing, in the clamping position, in a force-fitting manner to the drive holder. In the disengagement position, the drive housing is displaceable on the drive holder in an adjustment direction such that it is possible to adjust a tooth-flank clearance between the drive pinion and the gearwheel element.
    • 旋转单元,用于旋转地安装在第二部件上的风力涡轮机的第一部件,所述第二部件包括布置在所述第一部件上的齿轮元件,驱动器由驱动器保持器驱动,所述驱动器保持器包括驱动壳体和驱动小齿轮, 致动所述齿轮元件,连接元件,其布置在所述驱动器壳体上并且被配置为在所述驱动器壳体和所述驱动器保持器之间形成可释放的连接,以及紧固装置,其与所述连接元件相互作用并且可在夹紧位置和脱离之间 位置。 紧固装置将驱动器壳体在夹紧位置以与制动器固定器的力配合方式连接。 在分离位置,驱动器壳体可以在调节方向上在驱动器保持器上移动,使得可以调节驱动小齿轮和齿轮元件之间的齿面间隙。
    • 6. 发明申请
    • FOUNDATION FOR A WIND TURBINE
    • 风力发电机基金会
    • US20150218796A1
    • 2015-08-06
    • US14417606
    • 2013-06-19
    • SENVION SE
    • Marc Seidel
    • E04B1/41E02D27/42E04H12/22E04B1/19E04H12/34
    • E04B1/4114E02D27/42E02D27/425E04B1/19E04H12/22E04H12/34
    • An openwork load-bearing structure for a wind turbine, in particular a lattice-tower structure for a wind turbine, in particular a foundation structure for a wind turbine, in particular for anchoring an offshore wind turbine in the ground via driven foundation piles, wherein the openwork load-bearing structure has primary structures, via which loads which occur in the load-bearing structure as a result of the wind turbine are dissipated, and secondary structures, which perform functional, rather than load-dissipating, tasks, wherein the secondary structures are arranged on the primary structures and are connected integrally thereto, and wherein the integral connection between the primary and the secondary structures is in the form of a connecting layer arranged therebetween. Also, a method for producing a lattice-tower structure for a wind turbine, in particular a foundation structure for a wind turbine, in particular for anchoring an offshore wind turbine in the ground via foundation piles.
    • 用于风力涡轮机的镂空承重结构,特别是用于风力涡轮机的格架式结构,特别是用于风力涡轮机的基础结构,特别是用于通过驱动基础桩将海上风力涡轮机锚定在地面中,其中 镂空承重结构具有初级结构,通过该结构,作为风力涡轮机的结果在承载结构中发生的负载被消散,并且执行功能而不是负载耗散任务的二级结构,其中次级 结构被布置在主结构上并且与其一体地连接,并且其中主结构和次结构之间的整体连接为布置在其间的连接层的形式。 另外,一种用于制造用于风力涡轮机的格子塔结构的方法,特别是用于风力涡轮机的基础结构,特别是用于通过基础桩将海上风力涡轮机锚定在地面中。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR COMMUNICATING IN WIND FARMS
    • 风力发电机通信方法与装置
    • US20150016470A1
    • 2015-01-15
    • US14388736
    • 2013-03-26
    • SENVION SE
    • Lars Stille
    • H04L12/417
    • H04L12/417
    • In the method according to the invention for communicating between installations, which are organized in an order according to a sortable feature, for example installation numbers, in a wind farm, in which information transmitted by an installation in the form of a message is received by all other installations in the wind farm, a cyclically recurring, temporal transmission interval is set up. A point in time in the transmission interval at which the installation can transmit a message is assigned to each installation on the basis of the position thereof in the order, wherein points in time are organized from the start of the transmission interval, starting from the installation number at the first position in the order, in accordance with the position in the order. The start of the transmission interval is synchronized in all installations using a message from the installation at the first position in the order.
    • 在根据本发明的用于在根据可排序特征(例如安装号)的顺序组织的安装之间进行通信的方法中,在风电场中,其中以消息的形式由安装传送的信息由 风力发电场中的所有其他安装,周期性循环的时间传输间隔被建立。 在安装可以传送消息的传输间隔中的时间点根据其位置按照顺序被分配给每个安装,其中时间点从安装开始就从传输间隔的开始被组织 号码在顺序中的第一个位置,按照顺序中的位置。 传输间隔的开始在所有安装中使用来自安装在第一个位置的顺序的消息进行同步。
    • 8. 发明申请
    • DIRECT MOLD FOR ROTOR BLADES FOR WIND TURBINES
    • 用于风力涡轮机的转子叶片的直接模具
    • US20140345789A1
    • 2014-11-27
    • US14457543
    • 2014-08-12
    • Senvion SE
    • Karl Eichler
    • F03D1/06B29D99/00B29C70/02
    • F03D1/065B29C33/02B29C33/307B29C33/38B29C70/021B29D99/0025B29L2031/08B29L2031/085Y02E10/721Y02P70/523Y10T156/1028
    • A direct mold includes a plank frame and a mold surface body held in shape by the plank frame. The plank frame is made of a plurality of planar panels that are aligned transversely to the longitudinal extension of the rotor blade and are arranged spaced with respect to each other in the direction of the longitudinal extension of the rotor blade. The panels of the plank frame have recesses, into which the mold surface body is inserted and which reproduces in its sequence in the plank frame mainly a progression of a contour of a part of a rotor blade profile. The mold surface body has a layer structure that includes a support layer and a sandwich layer. The support layer is made of rails that are aligned in the longitudinal direction of the rotor blade in a manner bridging the distances between the panels.
    • 直接模具包括板框架和通过板框架保持形状的模具表面体。 板条框架由多个平面板制成,它们横向于转子叶片的纵向延伸部排列,并且在转子叶片的纵向延伸方向上相对于彼此隔开设置。 板条框架的面板具有凹槽,模具表面主体被插入其中,并且在凹槽框架中以其顺序再现其主要是转子叶片轮廓的一部分轮廓的进展。 模具表面体具有包括支撑层和夹层的层结构。 支撑层由沿着转子叶片的纵向方向对齐的轨道制成,其桥接桥板之间的距离。