FIELD: power industry.
SUBSTANCE: wind-hydro-electric power plant consists of windwheel containing rotating cylinders, of a cylinder actuator, a power source, a power generator kinematically connected with the wind wheel, wherein the axes of the cylinders, located vertically, are placed in the upper and lower bearing supports connected with flexible links of the cylinders. Other bearing supports moving in the chases of the upper and lower plant plates along a closed ring are connected to these flexible links on the other side. The cylinder actuation of forward and reverse rotation on the windward and leeward side is carried out by flexible links of cylinder actuator contacting with the cylinders from support rollers kinetically connected to the electric motors. A brake device for the cylinders is provided in the power plant, moving from the windward zone to the leeward zone and back, as well as actuation of all the cylinders from one electric motor.
EFFECT: increased output power and increased efficiency.
2 cl, 2 dwg
Title | Year | Author | Number |
---|---|---|---|
WINDMILL WITH MAGNUS EFFECT (VERSIONS) | 2012 |
|
RU2526127C2 |
WIND AND HYDRAULIC POWER UNIT WITH COMPOSITE BLADES USING MAGNUS EFFECT IN FLOW (VERSIONS) | 2015 |
|
RU2615287C1 |
WIND POWER PLANT | 2017 |
|
RU2684068C1 |
MODULAR WIND-DRIVEN POWER PLANT | 2015 |
|
RU2607711C1 |
WINDMILL | 2001 |
|
RU2193687C2 |
VORTEX POWER PLANT OF THE GAS PUMPING UNIT OF THE COMPRESSOR STATION | 2021 |
|
RU2780394C1 |
POWER PLANT WITH ACTIVE MAGNUS EFFECT-BASED WIND TREATMENT | 2006 |
|
RU2327898C1 |
MAGNUS-ROTOR WINDMILL-ELECTRIC GENERATING PLANT | 1993 |
|
RU2189494C2 |
MAGNUS EFFECT AMPLIFICATION TECHNIQUE | 2006 |
|
RU2333382C1 |
METHOD FOR CONTROLLING WIND POWER TAKEOFF AND WIND-ELECTRIC GENERATING UNIT | 1999 |
|
RU2178830C2 |
Authors
Dates
2018-01-29—Published
2015-07-08—Filed