Sign In to Follow Application
View All Documents & Correspondence

Flywheel Energy Generating System

Abstract: The present invention relates to the system and method for flywheel energy generating system. More particularly, this invention pertains to a system and method of generating power using one or more flywheels. In the present invention system, low power supply is provided as input to rotate gear system, wherein in one or more flywheels are connected with this gear system to recinverts the stored kinetic energy of the flywheel to electric energy or any other energy. In the present invention flywheel is used for energy generating systems and more particularly to a flywheel energy storage system utilizing a transmission gear assembly for allowing an energy storage flywheel driven by a low-powered electric motor to drive a high-powered electric generator. -1 DEC200B

Get Free WhatsApp Updates!
Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
01 December 2008
Publication Number
24/2010
Publication Type
INA
Invention Field
ELECTRICAL
Status
Email
Parent Application

Applicants

1. SUTARIYA KALUBHAI BHAGVANBHAI
VILLAGE AT: RAMPARA: VIA: DEVLA: TALUKA: DHARI, DIST: AMRELI: GUJARAT 365640, (INDIA).

Inventors

1. SUTARIYA KALUBHAI BHAGVANBHAI
VILLAGE AT: RAMPARA: VIA: DEVLA: TALUKA: DHARI, DIST: AMRELI: GUJARAT 365640, (INDIA).

Specification

FORM 2
THE PATENTS ACT 1970
(39 of 1970)
&
The Patents Rules, 2003
COMPLETE SPECIFICATION
(See section 10 and rule 13)
1. FLYWHEEL ENERGY GENERATING SYSTEM


2. (A) Name :
(B) Nationality
(C) Address
Sutariya Kalubhai Bhagvanbhai Indian
Village At: Rampara; Via: Devla; Taluka :Dhari Dist: Amreli; Gujarat. (India). Pin: - 365640.
The following specification particularly describes the invention and the manner in which it is to be performed.

FLYWHEEL ENERGY GENERATING SYSTEM
The present invention relates to the system and method for flywheel energy generating system. More particularly, this invention pertains to a system and method of generating power using one or more flywheels. In the present invention system, power supply is provided as input to rotate gear system, wherein in one or more flywheels are connected with this gear system to recinverts the stored kinetic energy of the flywheel to electric energy or any other energy. In the present invention flywheel is used for energy generating systems and more particularly to a flywheel energy storage system utilizing a transmission gear assembly for allowing an energy storage flywheel driven by a low-powered electric motor to drive a high-powered electric generator.
It is well known that a flywheel is a mechanical device that converts electrical energy into kinetic energy and, when necessary, converts the kinetic energy back to electrical energy. In other words, it acts like a chemical battery but with many advantages when compared to a traditional chemical battery. Compared with traditional batteries, flywheel convert energy very efficiently and have very high output potential maintenance free and relatively long life. Furthermore, the flywheel is relatively unaffected by ambient temperatures.
In the conventional flywheel energy generating system generally comprises a flywheel suspended inside a vacuum chamber and an energy converting device which is generally a combination of an electric motor and an electric generator. In operation, the energy converting device takes an electrical input to accelerate the flywheel up to speed by using the electric motor and maintaining the energy in the system as inertial energy and return the

electrical energy by using this same electric motor as the electric generator. Since the electric generator and the electric motor are essentially of the same device, in order to supply electrical energy at a desired high power by the electric generator, a high-powered electric motor has to be employed, accordingly.
Accordingly, an object of the present invention is to provide a flywheel energy generating system utilizing a transmission gear assembly for allowing a flywheel driven by a low-powered electric motor to drive a high-powered electric generator.
The above and other features of the invention, including various novel details of construction and combination of parts, are now more particularly described with reference to the accompanying drawings, in which:
Fig.l represents the top view of the present invented flywheel
energy generating system
Fig.2 represents the side view of the present invented flywheel
energy generating system
As shown in Fig.l, Input power is connected with motor supply (1), 16th teeth gear(2) is mounted on motor shaft. 16th Teeth gear is now relativly connected with 120th teeth gear (3). which is coimected with 60th Teeth gear(4). 60th Teeth gear(4) is connected with 16th teeth gear(5) inside of the present invented system body on the same shaft, wherein 84l1 teeth gear(6) is relatively connected downside with 16th teeth gear(5). Another 16th teeth gear(7) is also connected to support 84th teeth gear (6) from the down side of the present invention system.Two flywheels are connected as shown in

Fig. 1, wherein one flywheel(8) is connected inside and second outside flywheel(9) is connected outside of the present invention body. 82th teeth gear(10) is also connected on the same shaft in the opposite direction of 84th teeth gear(6) so, now outside flywheel(9), 82th teeth(lO), 60th teeth(4), 16th teeth(5) and inside flywheel(8) are connected in the same sequence on the same shaft. 82th teeth gear(10) is relatively connected with 62th teeth gear(l 1) at motor side and 16th teeth gear(12) at the opposite direction. 62* teeth gear(ll) is relatively connected with 16,h teeth gear(13), which is mounted on the shaft of dynemo(14) for energy generating. 16th teeth gear(12) is relatively connected with 220lil teeth gear(15) at the opposite direction of the motor. Two dead loads(16) are connected with this 220th teeth gear (15) for the balanceing. Centerlly passed shaft is provided to support 220th teeth gear (14). All the gears and flywheels are supported by two metal strips(17) as shown in Fig. L Output(18) of the dynamo(14) is connected with High powered motor with load to use generated energy or load shaft(19) is connected with the machine through belt or chain drive to operate it. In case of power cut of situation, input shaft(20) is loaded with metal pully, wherein in diesel engine or any generator is used to rotate the pully, which Ixirther drvies the gear system and flywheel for geneating high output power. By this way, the present invention is used to generate high power to operate high powered motor or it can be directly used through load shaft (19) to operate other machine through belt or chain drive. The present invention is also used for converting single phase power supply to the three phase power supply.
In Fig.2 flywheel energy generating system, all gears, motor, dynemo and one flywheel is convered in the present invention body and only load shaft and second flywheel is provided outside the present invention body.

Although the present invention has been described with reference to a specific embodiment, it should be noted that the described embodiment is not necessarily exclusive and that various changes and modifications may be made to the described embodiment without departing from the scope of the invention as defined by the appended claims.

I Claims:
1. FLYWHEEL ENERGY GENERATING SYSTEM consists with motor(l), gears (2,3,4,5,6,7,10,11,12,13,15) , flywheel (8,9), dead load (16). metal strips( 17) .dynemo (14) and load shaft(19);
Wherein low input power is connected to motor (1);
Wherein gear (2) is mounted on motor(l) shaft, gear (3, 4) are relatively connected sequentially in the opposite direction of motor(l),
gear (5) is mounted at the inside flywheel (8) side and gear (10) is mounted at the outside flywheel (9) side on the same shaft where the gear (4) is mounted,
gear (6) is relatively connected with gear (5) wherein gear (7) is support the gear (6) from the downside.
gear (12, 15) are relatively connected with gear (10) at the opposite direction of dynemo (14) and gear (11, 13) are relatively connected with gear (10) at the dynemo(14) side, wherein gear (13) is mounted on the shaft of dynemo (14);
wherein inside flywheel (8) and outside flywheel (9) are connected on the same shaft where the gear (4) is mounted;
wherein two dead load (16) are attached with gear (15) in the same direction at both end at inside flywheel side;

wherein two metal strip (17) are provided to support all gears and flywheel;
wherein in dynemo(14) is transferred the high powered generated energy through output (18);
wherein load shaft (19) is the same shaft of dynemo (14) for directly use the output high power eneregy.
2. FLYWHEEL ENERGY GENERATING SYSTEM as claimed in
claim 1, wherein motor(l). gears(2,3,4,5,6,7,10,11,12, .13,15),
dynemo (14), one flywheel and two dead load(16) are covered by
metal body.
3. FLYWHEEL ENERGY GENERATING SYSTEM as claimed
in claim 1, wherein shaft of dyenmo is connected with dyenrao to
generate high powered output (18) or load shaft (19) is connected
through belt drive or chain drive to operate high powered machine
directly.
4. FLYWHEEL ENERGY GENERATING SYSTEM as claimed in claim 1, wherein single phase or three phase input is provided to operate motor (1) which further generate the energy to operate three phase motor or machine.
5. FLYWHEEL ENERGY GENERATING SYSTEM as claimed in claim 1, wherein input shaft is loaded with metal pully, wherein in diesel engine or power generator is used to rotate the pully. which

further drvies the gear system and flywheel for geneating high output power, in case of power cut of situation.
FLYWHEEL ENERGY GENERATING SYSTEM substantially herein described with reference to the foregoing description and the accompanying drawings.

Dated 13tn November 2008.

Documents

Application Documents

# Name Date
1 2508-mum-2008-abstract.doc 2018-08-09
1 abstract1.jpg 2018-08-09
2 2508-mum-2008-abstract.pdf 2018-08-09
2 2508-mum-2008-form 5.pdf 2018-08-09
3 2508-mum-2008-form 3.pdf 2018-08-09
4 2508-mum-2008-form 26.pdf 2018-08-09
5 2508-mum-2008-form 2.pdf 2018-08-09
7 2508-mum-2008-form 2(title page).pdf 2018-08-09
8 2508-mum-2008-form 1.pdf 2018-08-09
9 2508-mum-2008-drawing.pdf 2018-08-09
10 2508-mum-2008-description(complete).pdf 2018-08-09
12 2508-mum-2008-correspondence.pdf 2018-08-09
13 2508-mum-2008-claims.pdf 2018-08-09
15 2508-mum-2008-abstract.pdf 2018-08-09