IP Library › Granted Patent US 9,677,537
Granted Patent B2
US 9,677,537 · App. 13/852,562 · Granted Jun 13, 2017

Acoustic shield for noise reduction in wind turbines

Inventors: Lorenz Edwin Drack (Munich, DE); Thierry Pascal Maeder (Munich, DE); Gowri Jaganathan Sengundermudaliar (Bangalore, IN); Karthickprabu Vijayakumar (Bangalore, IN)
Assignee: General Electric Company
F03D1/0633F05B2240/30F05B2260/96Y02E10/721Y10T29/49337Y10T156/10
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Quick Facts
Patent No.
US 9,677,537
App. No.
13/852,562
Granted
Jun 13, 2017
Kind
B2
Abstract

A wind blade is provided that includes a primary blade body defining a leading edge and a trailing edge and further defining a pressure side and a suction side joining along the trailing edge. The wind blade also includes a secondary blade having an aerodynamic contour defining a first surface and a second surface and coupled with the primary blade body for the purpose of shielding noise. The secondary blade body is disposed proximate to at least a portion of the trailing edge on at least one of the pressure side and the suction side of the primary blade body and may also improve overall performance of the wind blade.

Claims (22)

1. A wind blade comprising:

a primary blade body having an aerodynamic contour and defining a length extending from a blade root region outwards to a blade tip region, defining a leading edge and a trailing edge, and further defining a pressure side and a suction side joining along the trailing edge; and

a secondary blade body comprising an acoustic shield spaced apart from at least a portion of the trailing edge on at least one of the pressure side and the suction side of the primary blade body to allow air to flow between the primary blade body and the secondary blade body and to create a shielding effect for noise generated from the primary blade body without affecting boundary layer properties of air flowing over the aerodynamic contour of the primary blade body, wherein the secondary blade body comprises a thin shell structure disposed on the trailing edge, wherein the thin shell structure is situated in a span-wise direction with one end attached towards the blade tip region and loops back into the wind blade such that another end is attached towards the blade root region.

2. The wind blade of claim 1 , wherein the secondary blade body is coupled to an outer region defined by an outwards one third of the length of the primary blade body and including the blade tip region of the wind blade.

3. The wind blade of claim 1 , wherein the tip region of the wind blade is faired with the secondary blade body allowing for recovery of a tip vortex with high blade efficiency.

4. The wind blade of claim 1 , wherein the secondary blade body is coupled with the primary blade body on the suction side.

5. The wind blade of claim 1 , wherein the secondary blade body is coupled with primary blade body on the pressure side.

6. The wind blade of claim 1 , wherein the secondary blade body is configured to be retrofitted with the primary blade body.

7. The wind blade of claim 1 , wherein the secondary blade body comprises a material selected from a group consisting of metals or composite materials.

8. A wind blade comprising:

a primary blade body having an aerodynamic contour and defining a length extending from a blade root region outwards to a blade tip region, defining a leading edge and a trailing edge, and further defining a pressure side and a suction side joining along the trailing edge; and

a secondary blade body comprising an acoustic shield spaced apart from at least a portion of the trailing edge on at least one of the pressure side and the suction side of the primary blade body and configured for creating a shielding effect for noise generated from the primary blade body without affecting boundary layer properties of air flowing over the aerodynamic contour of the primary blade body, wherein the secondary blade body comprises a thickness to chord ratio in a range of 0.03 to 0.08.

9. A wind blade comprising:

a primary blade body having an aerodynamic contour and defining a length extending from a blade root region outwards to a blade tip region, defining a leading edge and a trailing edge, and further defining a pressure side and a suction side joining along the trailing edge; and

a secondary blade body comprising an acoustic shield spaced apart from at least a portion of the trailing edge on at least one of the pressure side and the suction side of the primary blade body and configured for creating a shielding effect for noise generated from the primary blade body without affecting boundary layer properties of air flowing over the aerodynamic contour of the primary blade body, wherein the secondary blade body comprises a chord-wise thickness in a range of 5% to 15% of the primary blade body.

10. A wind turbine comprising:

a plurality of wind blades, wherein each of the blade comprises:

a primary blade body having an aerodynamic contour and defining a length extending from a blade root region outwards to a blade tip region, defining a leading edge and a trailing edge, and further defining a pressure side and a suction side joining along the trailing edge; and

a secondary blade body comprising an acoustic shield having an aerodynamic contour defining a first surface and a second surface and coupled to and spaced apart from one of at least a portion of the trailing edge and the leading edge on at least one of the pressure side and the suction side of the primary blade body to allow air to flow between the primary blade body and the secondary blade body and to create a shielding effect for noise generated from the primary blade body without affecting boundary layer properties of air flowing over the aerodynamic contour of the primary blade body, wherein the secondary blade body comprises a thin shell structure disposed on the trailing edge, wherein the thin shell structure is situated in a span-wise direction with one end attached towards the blade tip region and loops back into the wind blade such that another end is attached towards the blade root region, and wherein the primary blade body is faired with the secondary blade body at the tip region for reducing a tip vortex strength of the wind blade.

11. The wind turbine of claim 10 , wherein the secondary blade body is coupled with the primary blade body on the suction side or the pressure side.

12. The wind turbine of claim 10 , wherein the secondary blade body is coupled to at least a portion of the trailing edge on the suction side of the primary blade body such that an edge of the secondary blade body is aft of the trailing edge.

13. The wind turbine of claim 10 , wherein the secondary blade body is coupled to an outer region defined by an outwards one third of the length of the primary blade body and including the blade tip region of the wind blade.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2013
From: DRACK, LORENZ EDWIN; MAEDER, THIERRY PASCAL; SENGUNDERMUDALIAR, GOWRI JAGANATHAN; VIJAYAKUMAR, KARTHICKPRABU
To: GENERAL ELECTRIC COMPANY
Reel/Frame 030294/0253 →
Continuity (1)
Related Publication 20140294592A1 · Oct 2, 2014