Method for producing electricity using inductive electromagnetic force of power generation coil
11515082 · 2022-11-29
Inventors
Cpc classification
International classification
Abstract
The present invention is directed to a method for producing induced electricity which prevents a collision by guiding induced electromagnetic force generated from a power generation coil as electricity is produced in the power generation coil to a predetermined location deviating from the path of power generation magnetic force which proceeds to be interlinked with the power generation coil to thus prevent power generation resistance from occurring and also produces electricity by interlinking the induced electromagnetic force with the power generation coil. The present invention is also directed to a “method for producing electricity using the induced electromagnetic force of a power generation coil” which uses an energy source for the production of electricity without conversion, so that there are no loss of energy during an energy conversion process and maintenance and management are easy, thereby reducing costs.
Claims
1. A method for producing electricity using induced electromagnetic force of a power generation coil, the method producing electricity by interlinking (passing) varying magnetic force with (through) a power generation coil, the method comprising: an excitation core (12) which produces electricity and induced electromagnetic force by using magnetic force produced using input electricity; power generation cores (22) which produce electricity and induced electromagnetic force by using induced electromagnetic force; and a controller (40) which controls and manipulates input and output of electricity; and a housing (51) which accommodates and holds components; wherein electricity is produced by interlinking induced electromagnetic force, which is generated from a power generation coil when electricity is produced, with a power generation coil disposed later through guidance using a magnetic force guidance unit.
2. The method of claim 1, wherein each of the power generation cores (22) is constructed by providing a magnetic force guidance unit (31-1) configured to form a closed circuit and to absorb and induce induced electromagnetic force and winding a power generation coil (23) on one side of the magnetic force guidance unit, as shown in
3. The method of claim 1, wherein a power generation cell is constructed by stacking a magnetic force guidance unit of a first power generation core of the power generation cores on a power generation coil of the excitation core and then stacking a magnetic force guidance unit of a second power generation core of the power generation cores on a power generation coil of the first power generation core disposed first.
4. The method of claim 1, wherein a power generation module is constructed by combining a plurality of power generation cells corresponding to a design desired capacity.
Description
DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
BEST MODE
(7) Embodiments of a “method for producing electricity using the induced electromagnetic force of a power generation coil” according to the present invention will be described in detail below with reference to the accompanying drawings.
(8)
(9) Furthermore,
(10) In the method for producing electricity using the induced electromagnetic force of a power generation coil according to the present invention, as shown in
(11) As shown in
(12) As shown in
(13) As shown in
(14) A controller 50 is provided to connect the power generation coil of the power generation module and controls the input and output of electricity and operation.
(15) As shown in
(16) The operation of the “method for producing electricity using the induced electromagnetic force of a power generation coil” according to the present invention, which is configured as described above, will be described below.
(17) First, when an alternating current or a direct current repeating connection and disconnection is applied by the controller 50, a magnetic force 41 which changes as shown in
(18) In this case, as shown in
(19) The lines of magnetic force proceeding in different directions forms an opposite or another magnetic force tangent 44-1 in the symmetric plane of the magnetic force tangent 44 of the magnetic force conductor 31 because the magnetic force conductor 31 constitutes a closed circuit, as shown in
(20) When the power generation coil 13 is disposed by being wound at both ends around the magnetic force line 44-1, as shown in
(21) In this case, when magnetic force passes through the hollow of the power generation coil, electricity and induced electromagnetic force are produced from the power generation coil. The produced induced electromagnetic force is formed as magnetic force having the same polarity as the magnetic force entering the power generation coil for interlinkage on the cross section of the power coil where the magnetic force enters according to the “Lenz's law” and acts as repulsive resistance which impedes the progress of the magnetic force. As a result, the loss of magnetic force occurs, and thus power generation efficiency of the power generation coil is reduced.
(22) Therefore, according to the method for producing electricity using the induced electromagnetic force of a power generation coil according to the present invention, the magnetic force guidance unit 31-1 is stacked on the power generation coil 13, as shown in
(23) Accordingly, the induced electromagnetic force 43 generated by the power generation coil is absorbed into the magnetic force guidance unit 31-1, and has a proceeding trajectory different from that of the magnetic force 41 produced from the excitation coil 11 are obtained, as shown in
(24) In this case, the magnetic force guidance unit in which a line of magnetic force line interlinked with the power generation coil is formed absorbs the magnetic force and reaches a saturated state. The magnetic force guidance unit stacked on the power generation coil has an empty magnetic path space in which lines of internal magnetic force are formed, and thus the induced electromagnetic force produced by the power generation coil is rapidly absorbed into the magnetic induction conductor and forms a magnetic flux inside the magnetic induction conductor.
(25) Furthermore, since the greatest magnetic force is formed at an end of an object forming a line of magnetic force, i.e., an end cross section of the magnetic force induction conductor, the greatest attraction force or repulsive force is generated when cross section having polarities face each other. However, since there is no end cross section because the magnetic force guidance unit constitutes a closed circuit and the line of magnetic force proceeding to be interlinked with the power generation coil and the induced electromagnetic force produced by the power generation coil do not face each other because the inductors forming the lines of magnetic force are different and proceeding paths are different, there is no collision between them.
(26) In this case, it will be apparent that the controller 50 selectively allows and blocks the input and output of electricity, controls them, and supplies a specific amount of electricity which allows the excitation coil 11 to produce and supply the magnetic force sufficient to enable the magnetic force guidance unit 31 to reach a saturated point.
(27) By the above-described method, electricity is produced by using the induced electromagnetic force of the excitation core as power generation magnetic force interlinked with the power generation coil without power generation resistance, electricity and induced electromagnetic force are produced by interlinking the induced electromagnetic force, generated as electricity is produced, with the power generation coil, and electricity is produced by using the induced electromagnetic force generated from the power generation coil of the power generation core disposed first as the power generation magnetic force of the power generation core disposed later.
DESCRIPTION OF REFERENCE SYMBOLS
(28) 11: excitation coil 12: excitation core 13: power generation coil 22: power generation core 23: power generation coil 31: magnetic force guidance unit 31-1: magnetic force guidance unit 41: magnetic force 41-1: magnetic force 43: induced electromagnetic force 43-1: induced electromagnetic force 44: magnetic force tangent 44-1: magnetic force tangent 45: magnetic force tangent 45-1: magnetic force tangent 50: controller 51: housing 52: power generation cell 53: power generation module
INDUSTRIAL APPLICABILITY
(29) The “method for producing electricity using the induced electromagnetic force of a power generation coil” according to the present invention has high energy usage efficiency because it has no energy loss attributable to energy conversion and no energy loss attributable to the resistance of induced electromagnetic force, does not cause contamination such as a harmful material, noise, etc. because it has no energy conversion device, and may be used for the production of electricity easy to manage because it has a simple structure.