Combined hydrodynamic - inertial rotoset - selfbooster
Abstract
The Combined Hydrodynamic-Inertial Rotoset-Selfbooster is a non-fuel power unit which includes: the hydrodynamic vane-fairing inertial rotor placed inside a closed loop tubular tunnel; a hydraulic module with a rotary pump propelling operative liquid in selfboosting manner to drive said rotor, cavitation preventor, and the electromechanical structure with the starter, electric output generator, storage battery, charger, drives, cooler, meters, control. The total combined rotor's torque is a sum of selfboosting hydrodynamic portion, and selfboosting inertial portion of the common integrated power produced simultaneously by the united rotor. The technology of rotoset-selfbooster can comprise various designes including mono- and poly-tunnel-rotor sets with a wide varieties of operative liquids, rotary pumps, and output power structures. The total power ratio is about 7.5 depending on design and KW required.
Claims
exact text as granted — not AI-modified1 . A Combined Hydrodynamic-Inertial Rotoset-Selfbooster comprises at least by one structure of:
a vane-fairing disk-inertial rotor placed into a circular closed loop tubular tunnel, and a storage battery with a charger, and output power devices including, for example, an electric generator transformers, meters, control.
2 . The Rotoset-Selfbooster of claim 1 wherein said tunnel has a hydraulic module with a rotary pump inside said module.
3 . The Rotoset-Selfbooster of claims 1 and 2 wherein said tunnel with said module are filled with operative liquid which is propelled by said pump in order to drive said rotor.
4 . The Rotoset-Selfbooster of claim 1 wherein said rotor includes radial fairing vanes, which can equally be V-vane, and/or W-vane, and/or O-vane, and/or compound and combined for any rotor.
5 . The Rotoset-Selfbooster of claims 1 , 2 , 3 , 4 wherein said rotary pump propels said operative liquid inside said tunnel and module, working in actual series with itself, for itself in order to rise cyclically the circular liquid flow dynamic pressure and drive said vane rotor in high potential operative liquid flow in energy-integrating and thus hydrodynamically selfboosting manner.
6 . The Rotoset of claim 1 wherein said tubular tunnel includes:
a springed piston valve for operative liquid cavitation limitation and prevention by liquid static pressure adjusting, and a gasketing insert in order to provide appropriate hydraulic connection with said module, and dynamic and static packings, and a fan cooler device
7 . The Rotoset of claim 1 wherein the parameters of said vane-fairing rotor, in order to provide the utmost inertial portion of common selfboosting, are corresponding to the equation R=F P,
where: R—is rotor's radius, P—is rotor's period of rotation, F—is a function depending on rotor's elements masses and dimensions proportions.
8 . The Rotoset of claim 1 wherein said vane-fairing rotor is installed in said tunnel with radial and side gaps in order to provide a smooth operative liquid flow with vortex limitation, thus contributing to both hydrodynamic and inertial portions of total rotor-selfboosting and to the common united rotor's torque.Join the waitlist — get patent alerts
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