FIELD: power engineering.
SUBSTANCE: invention relates to hydraulic power engineering, in particular, to damless hydroelectric power plants, and can be used to produce electricity from tide water, as well as in standing water (a lake, a reservoir, and deep rivers with low flow velocity), with simultaneous additional production of electricity by motion of air. Damless hydroelectric power station is based on a floating dock and comprises a container installed on the pontoon of the floating dock. The pontoon is equipped with ballast tanks. Dividers divide the container into three containers: the central main one and two side ones. All containers in the lower part are equipped with water gates. The side containers for communication with the water area and with the central main container are equipped with water conduits at the bottom. Hydraulic generators with multipliers are installed at the input of the water conduits. The containers are equipped with air ducts at the top with orthogonal wind power generators installed on the inside. The air ducts are equipped with air gates at the bottom.
EFFECT: damless hydroelectric power plant allows for simultaneous production of electricity by means of the energy of water and the motion of air in the containers. 1 cl, 5 dwg
Title | Year | Author | Number |
---|---|---|---|
DAMLESS SUBMERSIBLE MODULAR UNIVERSAL COASTAL HYDROELECTRIC POWER STATION AND ENERGY COMPLEX CONSISTING OF SEVERAL MODULAR HYDROELECTRIC POWER STATIONS UNITED BY COMMON PLATFORM | 2012 |
|
RU2520336C1 |
TIDAL HPP | 2019 |
|
RU2732359C1 |
DEVICE FOR POWER GENERATION FROM TIDES | 2019 |
|
RU2732356C1 |
TIDAL POWER PLANT WITH AN ADDITIONAL RESERVOIR | 2022 |
|
RU2796337C1 |
TIDAL ACCUMULATING HYDRO-ELECTRIC POWER STATION | 2018 |
|
RU2718992C1 |
DAMLESS HYDROELECTRIC STATION | 2007 |
|
RU2347937C1 |
AUTOMATIC TIDAL HYDROELECTRIC POWER PLANT WITH WATER RESERVOIR | 2019 |
|
RU2717424C1 |
TIDAL HPP | 2018 |
|
RU2710135C1 |
IN-CHANNEL RIVER PLANT | 2006 |
|
RU2347935C2 |
RIVER HYDRO-ELECTRIC POWER PLANT | 2007 |
|
RU2380479C2 |
Authors
Dates
2022-08-31—Published
2020-11-18—Filed