Three-Phase Fractal Generator Layout to Reduce Magnetic Field Bleed-Off
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Conventional generator systems face inefficiencies in electromagnetic field utilization and magnetic field bleed-off, limiting the effectiveness of electricity generation.
Innovation Solution
A three-phase fractal generator system featuring a rotating fractal field relay above a fractal armature with non-magnetic windings and strategically arranged permanent magnets creates a compressed woven magnetic field, enhancing electromagnetic field direction changes and reducing magnetic field loss.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of energy
If conventional generator systems are used, then electricity generation is achieved, but magnetic field bleed-off occurs reducing efficiency
Solution Approach 1:
The generator system divides the magnetic field structure into discrete permanent magnets arranged in a specific pattern around the armature. This segmentation allows for controlled magnetic field distribution and reduces unwanted magnetic field bleed-off between poles, improving overall system efficiency while maintaining effective electricity generation.
Solution Approach 2:
The patent implements non-magnetic windings in specific locations where magnetic field concentration is desired, and positions permanent magnets with specific polarities in strategic locations. This local differentiation of magnetic properties enhances the compressed woven magnetic field effect in critical areas while minimizing magnetic field bleed-off in other regions.
2Use of energy by moving object
If traditional electromagnetic field structures are used, then generator operation is achieved, but field utilization efficiency is limited
Solution Approach 1:
The patent combines permanent magnets with non-magnetic windings in an integrated armature structure, creating a unified magnetic circuit that enhances field utilization. The permanent magnets provide a compressed woven magnetic field that works in conjunction with the non-magnetic windings, improving energy efficiency without requiring separate complex magnetic circuit components.
Solution Approach 2:
The generator system employs a rotating fractal field relay that dynamically adjusts the magnetic field configuration during operation. As the relay rotates, it modulates the magnetic field strength and distribution, optimizing electromagnetic field utilization across different rotational positions while maintaining a relatively simple static structure.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The fractal design increases electromagnetic field direction changes per rotation, improving energy efficiency and compactness, while minimizing magnetic field bleed-off, resulting in a more effective and compact generator system.
Implementation Method 1
A three-phase fractal generator system wherein electricity is conducted by rotating a fractal field relay above a fractal armature
Implementation Method 2
strategically arranged permanent magnets creates a compressed woven magnetic field
Data Source
AI summary
A three phase fractal generator system includes an armature plate, having a first conductor winding having nine fractal circles wrapped in wire; a second conductor winding having nine fractal circles wrapped in wire; and a third conductor winding having nine fractal circles wrapped in wire; a fractal field relay positioned on top of the armature plate, the fractal field relay having, an inner, middle, and outer circular row of magnets; each magnet is flanked by a magnet with an opposite pole; and a position and proximity of each of the magnets in the fractal field relay create a compressed woven magnetic field that reduces bleed off while channeling a peak strength to the armature plate and spins relative to the armature plate.


