IP Library › Granted Patent US 12,595,782
Granted Patent B2
US 12,595,782 · App. 18/857,316 · Granted Apr 7, 2026

Wind turbine blade and method for manufacturing a wind turbine blade

Inventor: Victor March Nomen (Sant Cugat del Valles, ES)
Assignee: SIEMENS GAMESA RENEWABLE ENERGY INNOVATION & TECHNOLOGY, S.L.
F03D80/301B29C65/34B29L2031/085
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Quick Facts
Patent No.
US 12,595,782
App. No.
18/857,316
Granted
Apr 7, 2026
Kind
B2
Abstract

A wind turbine blade is provided, including: a first and a second blade component connected with each other in an overlap region by thermal welding, a resistive element arranged between the first and second blade components in the overlap region as a remnant of the thermal welding, the resistive element having a first and a second terminal, a lightning conductor electrically connected with each of the first and second terminals, and a surge protection device, wherein one of the first and second terminals is electrically connected with the lightning conductor via the surge protection device. The resistive element which was used for the welding process and is left in the blade as a remnant of the welding process can be integrated into the lightning protection system of the blade.

Claims (25)

1 . A wind turbine blade, comprising:

a first blade component and a second blade component connected with each other in an overlap region by thermal welding;

a resistive element arranged between the first blade component and the second blade component in the overlap region as a remnant of the thermal welding, the resistive element having a first terminal and a second terminal;

a lightning conductor electrically connected with each of the first terminal and the second terminal; and

a surge protection device, wherein one of the first terminal and the second terminal is electrically connected with the lightning conductor via the surge protection device.

2 . The wind turbine blade according to claim 1 , wherein the surge protection device is configured to:

provide a closed electrical connection between the respective terminal of the resistive element and the lightning conductor for lightning protection when a voltage applied to the surge protection device exceeds a threshold voltage, and

provide an electrical isolation between the respective terminal of the resistive element and the lightning conductor) for thermal welding of the first blade component and the second blade component when the applied voltage is at or below the threshold voltage.

3 . The wind turbine blade according to claim 2 , wherein the threshold voltage is 1.5 kV, 2 kV, 2.5 kV, 3 kV, 10 kV, or 30 kV.

4 . The wind turbine blade according to claim 1 , wherein only one of the first terminal and the second terminal is connected to the lightning conductor via a surge protection device and the other one of the first terminal and the second terminal is connected to the lightning conductor by an electrical wire.

5 . The wind turbine blade according to claim 1 , wherein the resistive element is an elongated element extending in a longitudinal direction and having a first end and a second end with respect to the longitudinal direction, and the first terminal is arranged at the first end and the second terminal is arranged at the second end.

6 . The wind turbine blade according to claim 1 , wherein the overlap region of the first blade component and the second blade component is an elongated region arranged parallel to a longitudinal direction of the wind turbine blade and/or the resistive element is an elongated element arranged parallel to the longitudinal direction of the wind turbine blade.

7 . The wind turbine blade according to claim 1 , comprising at least one additional resistive element having a first terminal and a second terminal, wherein the second terminal of the resistive element is electrically connected to the first terminal of the at least one additional resistive element in series.

8 . The wind turbine blade according to claim 7 , wherein the second terminal of the resistive element and the first terminal of the at least one additional resistive element are electrically connected with the lightning conductor by a common conductive wire and/or by a common surge protection device.

9 . The wind turbine blade according to claim 7 , comprising an even number n of the resistive elements, and a number p of surge protection devices, wherein p is an even number fulfilling equation p=(n/2) or p is an odd number fulfilling equation p=(n/2)+1.

10 . The wind turbine blade according to claim 7 , comprising an odd number m of the resistive elements and a number q of surge protection devices, wherein q is an even number fulfilling equation q=[(m−1)/2]+1.

11 . The wind turbine blade according to claim 1 , wherein the first blade component and/or the second blade component comprises a lower blade shell, an upper blade shell, a pressure side shell, a suction side shell, and/or a shear web.

12 . A method for manufacturing a wind turbine blade, comprising:

a) arranging a first blade component and a second blade component such that the first blade component and the second blade component overlap with each other in an overlap region, wherein a resistive element is arranged between the first blade component and the second blade component in the overlap region, the resistive element has a first terminal and a second terminal, a lightning conductor is arranged such that the lightning conductor is electrically connected with each of the first terminal and the second terminal, and the lightning conductor is electrically connected to one of the first terminal and the second terminal via a surge protection device; and

b) connecting the first blade component and the second blade component to each other by thermal welding including supplying an electrical current between the first terminal and the second terminal of the resistive element for heating the resistive element.

13 . The method according to claim 12 , wherein a voltage applied at the surge protection device in step b) is at or below a threshold voltage such that:

the surge protection device provides an electrical isolation between the one of the first terminal and the second terminal of the resistive element and the lightning conductor, and

the electrical current for heating the resistive element is supplied through electrical connection between the other one of the first terminal and the second terminal of the resistive element and the lightning conductor.

14 . The method according to claim 12 , wherein each of the first terminal and the second terminal are electrically connected by an electrical connection in step b) with a power source for supplying the electrical current between the first terminal and the second terminal.

15 . The method according to claim 14 , comprising a step of removing the electrical connection between each of the first terminal and the second terminal and the power source after step b).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2024
From: MARCH NOMEN, VICTOR
To: SIEMENS GAMESA RENEWABLE ENERGY INNOVATION & TECHNOLOGY, S.L.
Reel/Frame 068914/0703 →
Priority Claims (1)
EP 22382412 · Apr 29, 2022 · regional
Continuity (1)
Related Publication 20250277483A1 · Sep 4, 2025
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