IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0903350
(2010-10-13)
|
등록번호 |
US-8587145
(2013-11-19)
|
발명자
/ 주소 |
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
3 인용 특허 :
8 |
초록
▼
A wind turbine for power generation includes a vertical axis hydro kinetic wind generator with an independent free turning magnetically levitated high powered magnetic translator stack. The wind turbine converts high pressure hydraulic kinetic energy stored in the high pressure reservoir into mechan
A wind turbine for power generation includes a vertical axis hydro kinetic wind generator with an independent free turning magnetically levitated high powered magnetic translator stack. The wind turbine converts high pressure hydraulic kinetic energy stored in the high pressure reservoir into mechanical energy that drives the vertical axis linear generator. The high pressure reservoir, hydraulic pump motor, microprocessor controller and algorithm software and the fully levitated vertical axis linear generator along with light weight sail blades are instrumental for improved operation.
대표청구항
▼
1. A vertical axis wind turbine comprising: a vertical rotary shaft;a plurality of wind turbine blades, mechanically coupled to said vertical rotary shaft;a hydraulic energy storage apparatus coupled to said vertical rotary shaft; anda free turning magnetically levitated powered magnetic stack stato
1. A vertical axis wind turbine comprising: a vertical rotary shaft;a plurality of wind turbine blades, mechanically coupled to said vertical rotary shaft;a hydraulic energy storage apparatus coupled to said vertical rotary shaft; anda free turning magnetically levitated powered magnetic stack stator. 2. A vertical axis wind turbine comprising: a vertical rotary shaft;a plurality of wind turbine blades, mechanically coupled to said vertical rotary shaft;a magnet stack stator and a copper winding rotor disposed inside said plurality of wind turbine blades; anda hydraulic energy storage apparatus, coupled to said vertical rotary shaft and disposed underneath said plurality of wind turbine blades. 3. The vertical axis wind turbine of claim 2, wherein said hydraulic energy storage apparatus comprises, a hydraulic fluid tank,a turbine hydraulic fluid supply pipe, anda hydraulic turbine injector. 4. The vertical axis wind turbine of claim 2, wherein said vertical rotary shaft is mechanically coupled to said magnet stack stator. 5. The vertical axis wind turbine of claim 2, wherein said vertical rotary shaft is mechanically coupled to said magnet stack stator, said magnet stack stator being at least partially enclosed by said copper winding rotor. 6. The vertical axis wind turbine of claim 2, wherein said magnetic stack stator is configured as a free turning magnetically levitated powered magnet stack stator. 7. The vertical axis wind turbine of claim 2, wherein said hydraulic energy storage apparatus comprises, a pelton type turbine and a hydraulic jet nozzle. 8. The vertical axis wind turbine of claim 2, further comprising a housing encasing said magnet stack stator and said copper winding rotor and wherein said plurality of wind turbine blades are attached to an exterior surface of said housing. 9. The vertical axis wind turbine of claim 2, further comprising first and second magnetic disk bearing plate units disposed at each end of said magnet stack rotor and said copper winding rotor. 10. The vertical axis wind turbine of claim 9, wherein inner surfaces of first and second magnetic disk bearing plate units are separated from each other by an air gap. 11. The vertical axis wind turbine of claim 9, further comprising a pair of collars, each attached to said vertical rotary shaft in radial alignment with a respective first and second magnetic disk bearing plate units. 12. A wind turbine comprising: a vertical rotary shaft;a plurality of wind turbine blades, mechanically coupled to said vertical rotary shaft;a hydraulic energy storage apparatus, coupled to said vertical rotary shaft;wherein said vertical rotary shaft is mechanically coupled to a magnet stack stator, said magnet stack stator being at least partially enclosed by a copper winding rotor. 13. The wind turbine of claim 12, wherein said hydraulic energy storage apparatus comprises, a hydraulic fluid tank,a turbine hydraulic fluid supply pipe, anda hydraulic turbine injector. 14. The wind turbine of claim 12, wherein said hydraulic energy storage apparatus comprises, a pelton type turbine and a hydraulic jet nozzle. 15. The wind turbine of claim 12, wherein said hydraulic energy storage apparatus comprises, a hydraulic fluid tank,a turbine hydraulic fluid supply pipe,a hydraulic turbine injector, anda pelton type turbine. 16. The wind turbine of claim 12, further comprising a free turning magnetically levitated powered magnetic stack stator. 17. A vertical axis wind turbine comprising: a vertical rotary shaft;a plurality of wind turbine blades, mechanically coupled to said vertical rotary shaft;a magnet stack stator mechanically coupled to said vertical rotary shaft;a copper winding rotor being at least partially enclosing said magnet stack stator; anda hydraulic energy storage apparatus coupled to said vertical rotary shaft, said hydraulic energy storage apparatus including a pelton type turbine and a hydraulic jet nozzle. 18. The vertical axis wind turbine of claim 17, further comprising a housing encasing said magnet stack stator and said copper winding rotor and wherein said plurality of wind turbine blades are attached to an exterior surface of said housing. 19. The vertical axis wind turbine of claim 17, wherein said hydraulic energy storage apparatus further comprises a turbine housing encasing said pelton type turbine and a reservoir tank disposed adjacent said turbine housing, said reservoir tank containing a pipe supplying hydraulic fluid to said pelton type turbine. 20. The vertical axis wind turbine of claim 17, further comprising a baseplate, wherein said plurality of wind turbine blades, said magnet stack stator and said copper winding rotor upstand on said baseplate.
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