Abstract:
The disclosure relates to heat engines that operate using low temperature differentials. A Stirling engine is modified to provide a new heat engine that has no contained working fluid. The new heat engine flexible cylinders and the pistons are moved vertically upward by cables and vertically downward by gravity.
Abstract:
An electrical power system is disclosed including a first magnetic power generator and a second magnetic power generator wherein the first magnetic power generator is positioned within the second magnetic power generator. Also disclosed is an electrical power system including a first core having a first magnet rotor and a first stator and a second core having a second magnet rotor and a second stator with the first core positioned within the second core. The first magnet rotor is capable of operating in either an opposite rotational direction or a same rotational direction as the second magnet rotor.
Abstract:
A kinetic energy converter for converting linear motion into electrical energy has an outer body and an inner cylindrical body. The outer body and the inner body define a common central axis wherein the outer body is movable along the central axis with respect to the inner cylindrical body. A stator winding of a plurality of turns of at least one electrically conductive wire is disposed about an inner periphery of the inner body. A rotor having a central shaft and a plurality of magnets radially extending therefrom is rotatably disposed within the inner body and rotatable about the central axis. A helically twisted blade extends from one end of the outer body to the rotor and is interengaged with the rotor wherein axial translation of the blade rotates the rotor about the central axis.
Abstract:
An electromagnetic generator comprising an antenna that receives radiofrequency energy. The antenna is connected to a rectifier circuit, which is used to charge a first battery using the radiofrequency energy received by the antenna. The first battery supplies power to a control unit, which powers at least one electromagnet to generate a magnetic field. A flywheel having at least one magnet is configured to rotate when the magnetic field is generated. An alternator, connected to the flywheel, charges a second battery based on the rotation of the flywheel. The second battery is then used to supply power to an external device.
Abstract:
Processes used in the past were hazardous due to the material with which they were constructed, the design, and the location of the flywheel used on the device. In addition, the energy was inefficiently drawn from the flywheel which caused them to be replaced by fuel driven engines which emitted CO/2 and other greenhouse gases. My invention will create kinetic energy with zero greenhouse gases and all safety issues are remedied by high grade materials and new safety specifications. My invention is to turn a flywheel containing more kinetic energy than required by an electrical generator to produce power. The flywheel will be driven by an external energy source and, by overcoming the required kinetic energy of the electrical generator with the kinetic energy of the flywheel spinning at a high R.P.M., it will create kinetic energy.
Abstract:
The earth's magnetic field has not been mined as a source of energy. With average field strength of 0.5×10−4 Tesla around the world it is easy to understand why. A disruptive technology is needed to mine the earth's magnetic field. 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. Multiple sheets of graphene provide a significant multiplier to earth's magnetic field yielding a feasible source of ecologically clean power. Graphene based EcoCharge units can be driven by electric motors putting graphene in motion to mine the earth's magnetic field. Estimates show that 150 EcoCharge units driven by 15 electric motors using 905 kW of input electrical power will generate 504 MW, the output power of a standard coal fired power plant.
Abstract:
According to an exemplary embodiment, a rotational movement multiplier apparatus may be described. The rotational movement multiplier may be formed of at least one of a support structure, a lower platform, a support platform, and an upper platform that may be rigidly connected to the support structure. A driver disc may be rigidly connected to a driver shaft and a coupler may connect the driver shaft to a motor. Two or more rotor discs may be rigidly connected to a corresponding rotor shaft that may be rotatably connected with bearings to the support structure, and a first plurality of magnets may be rigidly connected to the driver disc and a second plurality of magnets may be rigidly connected to the rotor disc. Finally, the driver disc may be magnetically coupled to the rotor disc and may transmit rotational movement to the rotor disc without loss of torque or rotational speed.
Abstract:
There is provided a flywheel apparatus comprising a plurality of flywheels configured to be mounted on a rotating shaft having a longitudinal axis, each one of the flywheels having a mass concentration in a predefined zone within its surface such that the net torque required for maintaining the rotation of the flywheels when combined with a constant angular velocity about the longitudinal axis of the rotating shaft is null. There is also provided use of a flywheel apparatus with an electrical energy generation system.
Abstract:
A combined cycle dual closed loop electric generating system, comprising a gas turbine assembly (comprising a combustion chamber, a compressor, a first pump, a first driveshaft, a gas turbine and a first generator) and a steam turbine assembly (comprising a second pump, a second driveshaft, a steam turbine and a second generator). Said first portion of said working fluid circulates through said gas turbine assembly and a first heat exchanger. Said second portion of said working fluid circulates through said steam turbine assembly and said first heat exchanger. Said first heat exchanger transfers a first heat energy from said gas turbine loop to said steam turbine loop. Said gas turbine assembly generates a first portion of an electric output. Said steam turbine assembly generates a second portion of said electric output.
Abstract:
A magnetic levitation power device is revealed. The magnetic levitation power device includes at least two sets of power devices, a motor, and a power generator. The magnetic levitation power device features on the power devices each of which consists of a first seat, a second seat and a transmission set. A first sleeve is set on the first seat and a second sleeve is arranged at the second seat. The transmission set is composed of a shaft, a large gear and a small gear. Each of two ends of the shaft are disposed with two magnetic bodies respectively and are mounted in a sleeve. The magnetic bodies are arranged with like poles repel each other so that the transmission set is suspended and friction coefficient of the shaft is reduced. Therefore high speed transmission is achieved by low power to get high power.