A ROTOR BLADE FOR A WIND TURBINE, A WIND TURBINE, AND A METHOD FOR MANUFACTURING THE ROTOR BLADE

    公开(公告)号:US20240240609A1

    公开(公告)日:2024-07-18

    申请号:US18558530

    申请日:2022-05-05

    Inventor: Mark HANCOCK

    CPC classification number: F03D1/0675 F05D2240/304

    Abstract: A rotor blade for a wind turbine is disclosed. The rotor blade is comprising a first shell and a second shell, forming a first aerodynamic surface, a second aerodynamic surface, a trailing edge, and a leading edge. Furthermore, the rotor blade has at least one connective element having at least a first shell support portion, a second shell support portion, and an element support portion, wherein the first shell support portion is connected to the element support portion by a first arm, wherein the second shell support portion is connected to the element support portion by a second arm. The connective element is arranged, mounted, and/or attached between the first shell and the second shell by a first shell connection being effective between the first shell support portion and the first shell, by a second shell connection being effective between the second shell support portion and the first shell, and by an element connection being effective between the element support portion and the second shell.

    Aeroelastic stable wind turbine blade

    公开(公告)号:US12037978B2

    公开(公告)日:2024-07-16

    申请号:US18032939

    申请日:2021-11-19

    CPC classification number: F03D1/0681 F05B2260/964 F05B2280/6013

    Abstract: A wind turbine blade comprising a plurality of spar components extending along the longitudinal axis and providing the main bending stiffness of the wind turbine blade a major principal axis defining a structural pitch angle of at least 1° with respect to a chord line, and including: one or more suction-side spar caps each having a centre line; one or more pressure-side spar caps each having a centre line; and one or more shear webs distributed around a central shear web line and at least one of which being connected to first spar caps, wherein at least one suction-side spar cap centre lines is arranged with a first chordwise distance to the central shear web line, and at least one pressure-side spar cap centre lines is arranged with a second, different, chordwise distance to the central shear web line.

    LEADING EDGE PROTECTION WITH REDUCED NOISE IMPACT

    公开(公告)号:US20240133358A1

    公开(公告)日:2024-04-25

    申请号:US18278262

    申请日:2022-02-14

    CPC classification number: F03D1/0688 F05B2240/303 F05B2250/183 F05B2260/96

    Abstract: The present invention relates to a leading edge protection for a wind turbine blade, wherein a leading edge axis of the leading edge protection is configured to be fitted on at least part of a leading edge of a wind turbine blade and the leading edge protection is configured to extend between the leading edge and a first edge downstream a first side of the wind turbine blade as well as between the leading edge and a second edge downstream a second side of the wind turbine blade, wherein the leading edge protection comprises a first part and wherein the first edge is configured to be non-parallel with the leading edge of the wind turbine blade along the first part of the leading edge protection. The present invention further relates to a wind turbine blade comprising the leading edge protection and a wind turbine comprising the wind turbine blade. Finally, the present invention relates to a method for protecting a leading edge of a wind turbine blade arranged on a wind turbine and a leading edge protection obtainable by that method.

    MOVABLE PLATFORM FOR A MOULD SYSTEM AND METHOD FOR HANDLING A MOULD SYSTEM COMPRISING A MOVABLE PLATFORM

    公开(公告)号:US20240091989A1

    公开(公告)日:2024-03-21

    申请号:US18275869

    申请日:2022-02-15

    CPC classification number: B29C33/307 B29C33/26 B29D99/0028 B29L2031/085

    Abstract: Disclosed is a mould system for moulding a blade shell of a wind turbine blade comprising a first mould for manufacturing a first blade shell part of the wind turbine blade; a second mould for manufacturing a second blade shell part of the wind turbine blade; a turning device configured to reposition the first mould between an open mould position and a closed mould position comprising a turning mechanism and a first primary beam connecting the turning mechanism and the first mould; a first scaffold arranged between the first mould and the second mould in the open mould position and comprising a first primary scaffold part and a first secondary scaffold part spaced apart by a first primary scaffold opening, the first primary scaffold allowing the first primary beam to move therethrough during repositioning of the first mould; a first primary movable platform attached to the first mould and being configured to move between an extended platform position and a stored platform position and covering the first primary scaffold opening in the extended position and arranged to expose the first primary scaffold opening in the stored platform position.

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