Abstract:
A magnetic motor includes a rotor and a stator, in which there are magnets and materials of high magnetic permeability. The stator magnets are arranged with surfaces facing the rotor magnets in a staggered arrangement. The motor may be used to boost torque, for example in bicycles.
Abstract:
The present invention discloses an apparatus that includes a motor, flywheel, transmission, and generator. The motor converts an input energy into mechanical energy to rotate an output shaft coupled to a shaft of a flywheel. The design characteristics of the flywheel provide substantially uniform rotational speed to its shaft when the flywheel rotates. The rotating shaft of the flywheel connects to an input shaft of a transmission that includes a gear train that transfers the rotational speed of the flywheel to an output shaft of the transmission. The output shaft of the transmission drives an input shaft of a generator that converts the rotational speed to an output energy. After an initial start period, the output energy is sufficient to sustain mechanical operation of the apparatus, and provide power to external devices.
Abstract:
The earth's magnetic field has not been mined as a source of energy for electric vehicles. With average field strength of 0.5 Tesla around the world it is easy to understand why it has been overlooked. A disruptive technology is needed to mine the earth's magnetic field for powering electric vehicles. Such a technology, graphene, is now at an early stage of development with excellent properties in the form of high conductivity, low resistivity sheets that are durable, light weight, and low cost. Electrical properties of multiple sheets of graphene provide a significant multiplier to earth's weak magnetic field yielding a feasible source of ecologically clean power for electric vehicles. Graphene based EcoCharge systems can be mounted on a vehicles drive shaft and axles putting graphene in motion to mine the earth's magnetic field. Estimates show that EcoCharge can generate 15.1 kW at 60 mph while weighing only 10 oz.
Abstract:
The invention provides a system, apparatus and method for generating continuous electricity from a variety of sources, using high torque, high efficiency motors, and optionally a wind turbine to operate at least one generator.
Abstract:
A pneumatic thrust combined cycle power generator comprises a startup air compressor operated together with a high-pressure gas regulator to fill a high-pressure gas into a pneumatic motor and start operating a transmission bearing, such that the transmission bearing can drive a high power generation motor to produce a power generation effect and provide a power supply. The transmission bearing of the pneumatic motor can be operated with a driven gear and a transmission belt to drive a high-pressure gas recycle air compressor to operate, so as to return the high-pressure gas to the startup air compressor through a high-pressure gas recycle channel and achieve a combined cycle effect of using the high-pressure gas.
Abstract:
Systems and apparatuses for delivering power and energy using deflecting beams or other oscillating members motivated to oscillate a beam assembly using an eccentrically balanced rotating body that induces deflections in the elastic beam or other oscillating member. One or more rotors may be used on the elastic beams and a mechanical output or outputs are connected to the elastic beams. The rotating body is advantageously maintained in rotation by pulses of electro-magnetic force. The oscillating beam or members are preferably driven at a natural resonant frequency to minimize losses and render more efficient the output which can be obtained. The pulse motor or motors can be powered using stored electrical energy, such as may be generated from solar panels, wind generators or other energy storage devices. One or more outputs may be used to drive heat pumps, compressors, pumps or other equipment to assist in independent energy systems.
Abstract:
A power supply system is capable of generating electric power by building a roller coaster or the like dedicated for power generation on which a power generator is mounted, providing the roller coaster or the like with positional energy, and converting the given positional energy into kinetic energy, followed by converting the kinetic energy into electric energy.
Abstract:
Rotor formed by groups of materials (4) that orientate the magnetic field and magnets (2) in spiral lines, with the two magnetic poles of each magnet (2) facing the stator (3). Close to a magnetic pole of the end of the group, the material (4) that orientates the magnetic field protrudes towards the stator (3). This configuration enables to vary the field of each magnetic pole of the rotor which is projected to the stator; in this way, one end of the group of magnets (2) concentrates a very close magnetic pole in order to interact with the stator (3) and the opposite magnetic pole moves away gradually in order to decrease the interaction with the stator (3). The application is for magnetic motors.
Abstract:
The motor includes a central rotor rotating about a main shaft, with several first permanent magnets distributed around its periphery, having the same pole on an outer side; a plurality of satellite rotors arranged around the central rotor, each rotating about a corresponding secondary shaft parallel to the main shaft, with various second permanent magnets distributed around its periphery, having the same pole as the first permanent magnets on an outer side; a mechanical drive system to force the central rotor and satellite rotors to rotate in opposite directions, the first and second permanent magnets being arranged facing each other during rotation; and a plurality of magnetic screens, each being arranged between the central rotor and one of the satellite rotors in an upstream portion of the trajectory of the first and second permanent magnets.
Abstract:
The invention relates to a method for operating a turbine with an electric generator which can be driven by magnetic rotor/s in order to output electric power to an electricity consumer, storage or an electricity network. The invention also relates to a turbine with magnetic rotor/s and an electric generator coupled to the rotor/s in order to output electric power to an electricity consumer, storage and an electricity network. The invention also relates to a turbine with magnetic rotor/s coupled with a battery powered R/C or manual controlled stabilizer system that allows users of the turbine to control the start stop and restart functions. The invention also relates to a turbine with magnetic rotor/s and an electricity generator where the generator is coupled with a thermo coupling. The aim of the invention is to provide a turbine which avoids the disadvantages pertaining to wind turbines, which especially avoids excess energy loss as heat to the surroundings and which avoids an undesired termination or pause in electricity generation. To this end the inventive method is provided such that the power supplied to the network, storage or electricity consumer by the turbine is regulated according to the relevant materials used to compose the medium administrating the reintroduction of energy lost and the stabilizer system.