HYDRAULIC-CIRCULATION POWERED ENGINE
20190010912 ยท 2019-01-10
Inventors
Cpc classification
B60K8/00
PERFORMING OPERATIONS; TRANSPORTING
Y02E10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F03B1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B17/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hydraulic-circulation powered engine includes: a housing, defining a chamber inside; a rotating disk, a periphery thereof configured with a plurality of sequentially arranged driven elements, the rotating disk configured inside the chamber, and a rotating shaft outputting power configured on a shaft center of the rotating disk and extended out of the housing; a plurality of nozzles, configured on the chamber, and sequentially arranged outside the periphery of the rotating disk, allowing the nozzles to face the driven elements; a liquid pressurizing driver, configured with liquid outlet in communication with the nozzles; and a power supply, in electric connection with the liquid pressurizing driver, allowing the liquid pressurizing driver to be driven to output liquid to each nozzle, thereby ejecting liquid toward the driven elements configured on the periphery of the rotating disk so as to drive the driven elements to turn the rotating disk and rotating shaft.
Claims
1. A high hydraulic-circulation powered engine, comprising: a housing, defining a chamber inside; a rotating disk, a periphery thereof configured with a plurality of sequentially arranged driven elements, said rotating disk configured inside said chamber, and a rotating shaft capable of outputting power configured on a shaft center of said rotating disk and extended out of said housing; a plurality of nozzles, configured on said chamber, and sequentially arranged outside said periphery of said rotating disk, allowing said nozzles to face said driven elements; a liquid pressurizing driver, configured with liquid outlet in communication with said nozzles; and a power supply, in electric connection with said liquid pressurizing driver, allowing said liquid pressurizing driver to be driven to output liquid to each said nozzle through said liquid outlet with electricity supply of said power supply, each said nozzle to eject liquid toward said driven elements configured on said periphery of said rotating disk so as to drive said driven elements to turn said rotating disk and rotating shaft.
2. The engine according to claim 1, wherein a liquid ejecting line of said nozzle is tangent to said periphery of said rotating disk, and said driven element is configured with a wall positioned at a location where said liquid ejecting line is tangent to said periphery of said rotating disk.
3. The engine according to claim 1, wherein said driven element is a groove or blade.
4. The engine according to claim 2, wherein said driven element is a groove or blade.
5. The engine according to claim 1, wherein said liquid pressurizing driver is configured with a liquid inlet in communication with said chamber of said housing, capable of collecting liquid in said housing.
6. The engine according to claim 1, wherein said liquid pressuring driver is configured with a liquid storage room and pump.
7. The engine according to claim 1, wherein said rotating shaft is in connection with a generator, allowing said rotating shaft to drive said generator to generate electric energy, and said generator is in electric connection with a storage battery, allowing said electric energy to be stored in said storage battery.
8. The engine according to claim 7, wherein said storage battery is in electric connection with said power supply, allowing said storage battery to provide said power supply with electric energy.
9. The engine according to claim 1, wherein said power supply is a battery, and said liquid is water or hydraulic oil.
10. The engine according to claim 8, wherein said power supply is a battery, and said liquid is water or hydraulic oil.
11. The engine according to claim 1, wherein said housing, rotating shaft, liquid pressurizing driver and power supply are configured inside a vehicle, and said rotating shaft is in connection with wheels of said vehicle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0018] Referring to
[0019] A chamber 10 is configured inside the housing 1. The rotating disk 2 is a circular rotating disk and configured in the chamber 1, with the peripheral of the rotating disk 2 being configured with a plurality of sequentially-arranged driven elements 21. The rotating shaft 3 is in connection with the axle center of the rotating disk 2 and extended from the chamber 10 to the outside of the housing 1 so as to be in connection with wheels 91 of the vehicle 9, allowing the rotating shaft 3 to output the rotating power of the rotating disk 2 to the wheels 91 of the vehicle 9.
[0020] The nozzles 4 are respectively disposed in the chamber 10, and sequentially arranged outside the periphery of the rotating disk 2 and allowed to facing the driven elements 21. Furthermore, the liquid ejecting line of each nozzle 4 and is tangent to the periphery of the rotating disk 2, and the nozzles 4 can eject liquid to the driven elements 21. Specifically, the driven element 21 may be a groove or blade configured with a wall 211 positioned at a location where the liquid ejecting line is tangent to the periphery of the rotating disk 2.
[0021] Referring to
[0022] The power supply 6 may be a battery in electric connection with the liquid pressurizing driver 5 and can supply electricity to drive the liquid pressurizing drivers to output the liquid to each nozzle 4 through the liquid outlet 53, allowing each nozzle 4 to eject the liquid toward the driven elements 21 configured on the periphery of the rotating disk 2 so as to drive the driven elements 21 to turn the rotating disk 2 and rotating shaft 3.
[0023] Referring to
[0024] With the above structural characteristics, the liquid-circulation powered engine of the present invention can be specifically applied in automobiles, motorcycles, or other vehicles. Using the power supply 6 to provide the liquid pressurizing driver 5 with required operation electric energy, allowing the liquid pressurizing driver 5 to provide the nozzles 4 with high pressure liquid, and the plurality of nozzles 4 to respectively eject liquid to push the walls 211 of the driven elements 21 to move to drive the driven elements 21 to turn the rotating disk 2 and rotating shaft 3 so that the rotating shaft 3 outputs power to the wheels 91 of the vehicle 9 to move the vehicle 2. In addition, using the rotating shaft 3 to drive the generator 7 to generate electricity allows the storage battery 8 to store the electric energy for the electricity generation, and the storage battery 8 to supply or resupply the power supply 6 with electric energy so as to achieve the effect of generating engine power with the hydraulic-circulation power supply.