IP Library Granted Patent US 12,116,794
Granted Patent B2
US 12,116,794 · App. 17/632,993 · Granted Oct 15, 2024

Systems and methods for repurposing retired wind turbines as electric utility line poles

Inventors: Tristan Al-Haddad (Atlanta, GA); Russell Gentry (Atlanta, GA); Lawrence Bank (Atlanta, GA); Ammar Alshannaq (Atlanta, GA); Jamieson Pye (Atlanta, GA); Mehmet Bermek (Atlanta, GA)
Assignee: Georgia Tech Research Corporation
E04H12/02E04H12/24
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Quick Facts
Patent No.
US 12,116,794
App. No.
17/632,993
Granted
Oct 15, 2024
Kind
B2
Abstract

An exemplary embodiment of the present disclosure provides an electric utility pole, comprising a beam, a base, and an arm. The beam can be formed from a retired turbine blade and can comprise a first end and a second end. The base connected to the first end of the beam. The arm can be connected to the beam. The arm can be configured to support at least one electrical conductor.

Claims (60)

1. In a system comprising:

a composite material structure;

wherein:

the composite material structure comprises at least a portion of a decommissioned turbine blade;

the decommissioned turbine blade has a blade design based upon turbine blade performance, enabling use of the turbine blade with a turbine that extracts energy from a fluid flow and converts it into useful work;

the blade design of the decommissioned turbine blade renders the composite material structure incompatible for use in an electric utility pole of an electric power transmission/distribution system; and

conventional second-life options for a conventional decommissioned turbine blade that is no longer used with a turbine include disposal of the conventional decommissioned turbine blade or rendering the conventional decommissioned turbine blade into constituents;

the improvement comprising structural repurposing that transforms the composite material structure into an improved composite material structure, wherein the improved composite material structure comprising the decommissioned turbine blade is compatible for use in an electric utility pole of an electric power transmission/distribution system;

wherein:

the improved composite material structure is a vertical, load-bearing component of an electric utility pole, the improved composite material structure having a second-life design based upon electric utility pole performance, enabling the improved composite material structure to form a beam of the electric utility pole; and

an improved second-life option for the conventional decommissioned turbine blade that is no longer used with a turbine includes repurposing the conventional decommissioned turbine blade via the structural repurposing into a component of the improved composite material structure having the second-life design based upon electric utility pole performance.

2. The improved system of claim 1 , wherein the beam comprises an internal cavity spanning at least a portion of the length of the beam between a first end and a second end of the beam.

3. The improved system of claim 2 , wherein at least a portion of the internal cavity proximate the first end of the beam is filled with self-consolidating grout.

4. The improved system of claim 3 further comprising a base connected to the first end of the beam;

wherein the base comprises one or more bars extending away from the base and into the self-consolidating grout.

5. The improved system of claim 3 , wherein a least a portion of the self-consolidating grout is located beneath ground.

6. The improved system of claim 1 further comprising a base connected to a first end of the beam;

wherein the base is located beneath ground.

7. The improved system of claim 1 , wherein an internal cavity of the beam comprises a spar cap and one or more webs.

8. The improved system of claim 1 , wherein an external surface of the beam has an airfoil shape.

9. The improved system of claim 1 further comprising an electrical conductor.

10. The improved system of claim 1 , wherein the decommissioned turbine blade is a decommissioned wind turbine blade previously used with a wind turbine to collect kinetic energy of wind moving past the wind turbine blade.

11. An electric utility pole of comprising:

a beam spanning a length between a first end configured to be in proximity to ground and a second end of the beam configured to be distal the ground;

an arm connected to the beam in proximity of the second end of the beam, the arm configured to support at least one electrical conductor; and

structural repurposing:

wherein:

the electric utility pole is configured to form part of an electric power transmission/distribution system;

the beam comprises a retired turbine blade;

the retired turbine blade has a first-life design based upon turbine blade performance, which first-life design of the retired turbine blade is incompatible for use in a beam of an electric utility pole of an electric power transmission/distribution system;

the structural repurposing enables the use of the retired turbine blade in the beam of the electric utility pole; and

the conversion technology comprises one or more of:

self-consolidating grout, wherein the beam comprises an internal cavity spanning at least a portion of the length of the beam, and wherein at least a portion of the internal cavity proximate the first end of the beam is filled with the self-consolidating grout;

a base, one or more bars, and the self-consolidating grout, wherein the base is connected to the first end of the beam, and wherein one or more of the bars extend away from the base and into the self-consolidating grout; or

the beam comprises one or more surface modifications configured to reduce lift on the beam.

12. The pole of claim 11 , wherein the one or more surface modifications comprise one or more apertures.

13. The pole of claim 12 , wherein at least a portion of the one or more apertures each comprise a first end on a first side of the beam, and a second end on a second side of the beam, the first side opposing the second side.

14. An electric utility pole comprising:

a beam structure comprising at least a 12 meter portion of a retired wind turbine blade, the beam structure extending from a first end and a second end;

a base connected to the first end;

a structural repurposing system; and

an arm connected to the beam structure between the first end and the second end, the arm configured to support at least one electrical conductor;

wherein the retired wind turbine blade has a first-life design based upon wind turbine blade performance, which first-life design of the retired wind turbine blade is incompatible for use in a beam of an electric utility pole; and

wherein the structural repurposing system enables the use of the retired wind turbine blade in the beam of the electric utility pole.

15. The pole of claim 14 , wherein the beam structure comprising the portion of the retired wind turbine blade comprises an internal cavity; and

wherein the structural repurposing system comprises at least a portion of the internal cavity proximate the first end being at least partially filled with a self-consolidating grout.

16. The pole of claim 15 , wherein the structural repurposing system further comprises one or more attachment members protruding from the base and into the self-consolidating grout.

17. The pole of claim 16 , wherein the base and at least a portion of the self-consolidating grout is positioned beneath ground level.

18. A method of installing an electric utility pole comprising:

attaching a first end of a beam of which at least a portion comprises an intact, 12 meter or longer portion of a retired turbine blade to a base, such that a second end of the beam extends from the base; and

attaching an electrical conductor to the beam.

19. The method of claim 18 , wherein the second end of the beam extends upwards away from the base; and

wherein at least a portion of an internal cavity of the beam proximate the first end has self-consolidating grout.

20. The method of claim 19 further comprising:

positioning the base; and

filling the portion of the internal cavity of the beam proximate the first end with the self-consolidating grout;

wherein attaching the first end of the beam to the base comprises attaching the first end of the beam to the base via a plurality of members extending from the base and into the self-consolidating grout.

21. The method of claim 19 , wherein the internal cavity spans the length of the beam between the first end and the second end.

22. The method of claim 18 , wherein an internal cavity of the beam comprises a spar cap and one or more webs.

23. The method of claim 18 , wherein the retired turbine blade is a retired wind turbine blade.

Assignments (2)
CONFIRMATORY LICENSE Recorded Feb 10, 2025
From: GEORGIA INSTITUTE OF TECHNOLOGY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 070159/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2022
From: AL-HADDAD, TRISTAN; GENTRY, RUSSELL; BANK, LAWRENCE C.; ALSHANNAQ, AMMAR; PYE, JAMIESON; BERMEK, MEHMET
To: GEORGIA TECH RESEARCH CORPORATION
Reel/Frame 061251/0632 →
Continuity (3)
Provisional Application 62882680 · Aug 5, 2019
Provisional Application 62987961 · Mar 11, 2020
Related Publication 20220259883A1 · Aug 18, 2022