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    • 71. 发明公开
    • LIFTING ASSEMBLY
    • HEBEANORDNUNG UND ANSCHLAGEINRICHTUNG
    • EP2391570A1
    • 2011-12-07
    • EP10722847.0
    • 2010-03-30
    • Engineered Lifting Technologies, Inc.
    • INDA, Jeremy
    • B66C1/66F03D1/00
    • B66C1/66B66C1/108F03D13/10F05B2240/912F05B2260/301Y02E10/728
    • A lifting bracket (420) for a lifting assembly (400) to lift a cylindrical object (300) having an annular flange (240) with a plurality of spaced-apart holes (255, 260) formed therein using a lifting device (350) is provided. The bracket includes a flange attachment piece (425) having at least one adjustable hole assembly (440,441) for aligning with at least one hole of said plurality of spaced-apart holes on the flange such that the bracket may be used to lift objects having spaced-apart holes of varying distances. The bracket also includes a hoist ring (445) for receiving a wire rope (500) and a swivel device (443) having a hoist ring connection loop (453). The swivel device freely rotates about a pin (446) and the hoist ring freely pivots when the object is being lifted from a horizontal position to a vertical position.
    • 提供了一种用于提升组件的用于提升具有环形凸缘的圆柱形物体的提升支架,其中使用提升装置在其中形成有多个间隔开的孔。 支架包括具有至少一个可调节孔组件的凸缘附接件,用于与凸缘上的所述多个间隔开的孔中的至少一个孔对准,使得支架可用于提升具有不同距离的间隔开的孔的物体 。 支架还包括用于接收钢丝绳的提升环和具有起重环连接环的旋转装置。 旋转装置围绕销自由旋转,并且当物体从水平位置提升到垂直位置时,起重环自由枢转。
    • 78. 发明公开
    • TOWER FOR A WIND TURBINE
    • TURMFÜREINE WINDENERGIEANLAGE
    • EP2227632A2
    • 2010-09-15
    • EP08854284.0
    • 2008-11-25
    • Wind en Water Technologie Holding B.V.
    • OOSTERLING, Pieter
    • F03D1/00F03D11/04
    • F03D13/22E02D27/42E02D27/425F03D13/10F05B2240/912F05B2240/913Y02E10/726Y02E10/728
    • The invention concerns a tower for a wind turbine which tower supports a nacelle with bearings in which a horizontal rotation axis with blades can rotate, the tower comprises a steel wall of circular section, a drive for rotating the nacelle around a vertical axis of the circular section and at the bottom of the tower foundation means for supporting the tower in upright position. In accordance with the invention the foundation means comprises a bearing on a base which bearing supports the tower and a support ring positioned by three or more legs above the base for keeping the tower upright wherein in the support ring rollers or wheels press against the steel wall of circular section.
    • 本发明涉及一种用于风力涡轮机的塔架,塔架支撑具有轴承的机舱,其中具有叶片的水平旋转轴线可以旋转,塔架包括主要为圆柱形或略圆锥形的圆形截面或类似的钢壁,驱动 用于使机舱围绕垂直轴线旋转,并且在用于将塔架支撑在直立位置的塔架基座装置的底部。 根据本发明,基座装置包括在基座上的轴承,其支承在垂直方向上支撑塔架,支撑环由位于基座上方相当高度的三根或更多支脚定位在支撑环上, 塔的外墙。
    • 80. 发明公开
    • Design for flangeless wind tower
    • 风筝风情设计
    • EP2169145A2
    • 2010-03-31
    • EP09169712.8
    • 2009-09-08
    • General Electric Company
    • Mathai, ManuCairo, Ronald R.Sathian, Sujith
    • E04H12/02E04H12/08
    • E04H12/08F05B2240/912Y02E10/728Y10T403/55
    • A wind turbine tower (100) employing fingerplate assemblies (510) on a flangeless joint (500) between adjacent tubular tower sections (140). Means for stiffening the wind turbine tower includes a limited intercan gap (28) between adjacent tubular tower sections (140) at the flangeless joint (500) and selecting a number of fingerplate assemblies (510) to fasten each flangeless joints (500) to limit distortion. Selecting optimum dimensions (520), (530), (535) for the fingerplates (540) may further minimize localized tower distortion. A material for the fingerplate (540) with a lower Young's modulus than a material for the tubular section results in reduced localized tower distortion. Attaching a coverplate (620) to a top tubular section limits tip displacement for the tower. The coverplate (620) may include backing stiffeners (690) and be comprised of a material with a high Young's modulus relative to the Young's modulus for the fingerplates (540).
    • 一种在相邻管状塔架部分(140)之间的无凸缘接头(500)上采用指板组件(510)的风力涡轮机塔架(100)。 用于加强风力涡轮机塔架的装置包括在无凸缘接头(500)处的相邻管状塔架部分(140)之间的有限的连接间隙(28),并且选择多个指板组件(510)以将每个无凸缘接头(500)紧固以限制 失真。 为指板(540)选择最佳尺寸(520),(530),(535)可进一步最小化局部塔失真。 具有比管状部分的材料更低的杨氏模量的指板(540)的材料导致局部塔失真的减小。 将顶板(620)连接到顶部管状部分限制塔的尖端位移。 盖板(620)可以包括背衬加强件(690),并且由相对于指板(540)的杨氏模量的杨氏模量高的材料组成。