FIELD: hydraulic devices.
SUBSTANCE: invention relates to hydraulic devices. Proposed fountain comprises round pool water pump with filter and water feed regulator and cone-screw wind-hydraulic power plant (CSWHPP). Fountain comprises electromagnetic valves of water supply, parallel along the perimeter of walls of the tank, and hinged converging nozzle of the first circular pipeline. Adjusting nuts are used for installation of hinged convergent nozzles. T-joints of the first water line are intended for connection with nozzles. External surface of screw blades have a reflective coating. Second line serves to feed water into the bowl-hemisphere, which consists of top and bottom chamber. Proposed fountain comprises also tension ropes and transparent water conduits, suspended to tension ropes. Electric hydraulic valves are intended for start of water from water lines in a hemisphere. CSWHPP hase radial thrust ball bearing assemblies of bowl hemisphere, vertical shaft, movable pipe and rotary base. Fountain comprises ring parabolic shape in cross-section located faces downwards along the perimeter, and magnets facing each other by like poles. In the fountain there are magnetoelectric generator (MEG), rotor with magnets and stator with winding coils. Key connection provide kinematic connection between shaft and CSWHPP pipe. Mounting shaped plates serve for attachment of the spiral cylinder truncated curved screw surfaces of part of cone-screw blades, to moving pipe of CSWHPP. Mounting shaped plates are rigidly secured to moving pipe of CSWHPP. Fountain contains lithium batteries, charge-discharge controller, programmable electronic control panel. Fountain has laser emitters, led lamps illumination, suspended to ropes tension, inverter of DC voltage generated (MEG), in alternating voltage, which is used for operation of the water pump, connection of LED lamps and lighting lanterns. Inverter is arranged in cavity of the circular wall round the pond.
EFFECT: technical result consists in reduction of costs for power and possibility for production of ecologically clean electric power.
4 cl, 8 dwg
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Authors
Dates
2016-04-10—Published
2014-11-19—Filed