IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0049722
(2008-03-17)
|
등록번호 |
US-8262363
(2012-09-11)
|
발명자
/ 주소 |
- Gerber, Brandon
- Althoff, Nicholas K.
- Petitjean, Benoit
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
4 인용 특허 :
8 |
초록
▼
A blade for a wind turbine includes a body adapted for movement in response to wind flow past the blade body. The body has an inner surface defining an interior chamber and an opposite outer surface. At least one damping element extends from the inner surface of the body. The at least one damping el
A blade for a wind turbine includes a body adapted for movement in response to wind flow past the blade body. The body has an inner surface defining an interior chamber and an opposite outer surface. At least one damping element extends from the inner surface of the body. The at least one damping element is configured to facilitate reducing an amount of noise generated by and propagating through the blade.
대표청구항
▼
1. A blade for a wind turbine, said blade comprising: a body adapted for movement in response to wind flow past said blade body, said body comprising an outer skin, an inner skin and an air gap defined between said inner and outer skins; andat least one acoustical damping element coupled to and exte
1. A blade for a wind turbine, said blade comprising: a body adapted for movement in response to wind flow past said blade body, said body comprising an outer skin, an inner skin and an air gap defined between said inner and outer skins; andat least one acoustical damping element coupled to and extending from said inner skin of said body, said at least one acoustical damping element configured to facilitate reducing an amount of noise generated by and propagating through said blade. 2. The blade of claim 1, wherein said body comprises an inboard section, an outboard section, and a middle section extending between said inboard and outboard sections, said at least one acoustical damping element is disposed in at least one of said inboard section and said outboard section. 3. The blade of claim 2, wherein said at least one acoustical damping element is coupled within said body inboard section. 4. The blade of claim 2, wherein said at least one acoustical damping element is coupled within said body outboard section. 5. The blade of claim 1, wherein said at least one acoustical damping element comprises at least one bulkhead. 6. The blade of claim 5 wherein said at least one bulkhead and at least a portion of said body inner skin are covered with a damping material. 7. The blade of claim 6, wherein said damping material is selected from a group of materials consisting of rubber, foam, mineral wool, expanding foam, fiberglass, felt, and kaoline wool. 8. The blade of claim 5, wherein said acoustical damping element has a conical shape. 9. The blade of claim 5, wherein said at least one bulkhead comprises an impact damper. 10. The blade of claim 1, wherein said blade further comprises a leading edge and a trailing edge, said at least one acoustical damping element extends substantially longitudinally within said body adjacent to and approximately 25 percent chord length from said trailing edge. 11. A wind turbine comprising: a tower;a nacelle coupled to said tower; anda rotor coupled to said nacelle, said rotor comprising a hub and at least one blade extending outwardly from said hub, said blade comprising a body adapted for movement in response to wind flow past said body to produce rotation of the rotor, said body comprising an outer skin, an inner skin and an air gap defined between said inner and outer skins. 12. The wind turbine of claim 11, wherein said body further comprises an inboard section, an outboard section, and a middle section extending between said inboard and outboard sections, said air gap is defined in said outboard section of said body. 13. The wind turbine of claim 12, wherein said blade further comprises a leading edge and a trailing edge, and has a lateral distance measured between said leading and trailing edges, said air gap extends a length less than one-third said lateral distance of said body. 14. The wind turbine of claim 11, wherein said body further comprises an inner surface defining an interior chamber, at least one damping element is affixed to said inner surface of said body. 15. The wind turbine of claim 14, wherein said at least one damping element comprises an impact damping member and an acoustic damping member configured to facilitate reducing an amount of noise generated by said blade. 16. A method of fabricating a blade for a wind turbine, said method comprising: fabricating a body having an inner surface that defines an interior chamber;fabricating said body with an outer skin, an inner skin and an air gap located between said inner and outer skins; andaffixing at least one acoustical damping element to said inner surface of said body. 17. The method of claim 16, further comprising coupling at least one bulkhead to said body within said interior chamber. 18. The method of claim 17, further comprising covering said bulkheads and at least a portion of said inner surface of said blade between said bulkheads with said damping element.
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