Sequentially asymmetric magnetic accelerator "kawaishi windmill"
A device with ferrous and non-ferrous metals in a magnetic structure addresses energy generation and gravitational alteration, achieving fuel-free energy and frictionless motion while preventing planetary destabilization.
Patent Information
- Application Number
- JP2024126429
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2026-01-21
AI Technical Summary
Existing technologies face challenges in efficiently generating energy and altering gravitational forces without causing destabilization or environmental damage, particularly when considering the potential gyroscopic effects and disruption of planetary orbits.
A device utilizing a specific arrangement of ferrous and non-ferrous metals within a magnetic structure, with precise orientation and rotation, to create an asymmetric magnetic field for acceleration and energy generation, potentially enhancing local gravity and enabling frictionless motion.
The device achieves localized energy generation and reduced gravitational forces, offering potential for fuel-free energy production and frictionless motion, while minimizing environmental impact and stabilizing planetary orbits.
Smart Images

Figure 2026009794000001_ABST
Abstract
Description
[Technical Field]
[0001] The circular stationary section houses seven or more equally spaced magnets, with the magnets facing north on the outside and south on the inside, each accompanied by a series of ferrous metal plates stacked on the forward rotating side of the magnet to shape the magnetic field in one direction (magnetic structure).The circular rotating section houses six or more equally spaced matching ferrous metal pieces, each accompanied by a non-ferrous metal arrangement aligned parallel to the direction of rotation or slightly behind the ferrous metal piece (ferrous metal structure).
[0002] The numbers in the magnetic and ferrometallic structures are either pairs of prime numbers, pairs of numbers with no common denominator, or pairs of numbers that differ by a prime number other than 2. The orientation of the components must be such that they are consistent with the Coriolis force.
[0003] The device rotates from the ferrous metal structure and accelerates in turn towards the magnetic structure, while the non-ferrous metal arrangement prevents backward movement by magnetic induction.
[0004] This device can be further modified using a coil of non-ferrous conductive metal wire as the non-ferrous metal arrangement, transferring the resulting magnetic charge to the next piece of ferrous metal, creating an instantaneous electromagnetic charge and increasing acceleration. * Please refer to the notes. *
[0005] Rotational motion can be used kinematically for applications where it has less friction than magnetic acceleration forces. If electromagnetic conversion could be safely achieved, the resulting acceleration would approach the speed of electrical energy transfer and could function as a localized gravity enhancer, in accordance with Einstein's laws of relativity and the associated hypothesis of universality.
[0006] The inventors strongly recommend against using electromagnets to modify this design and concept until enough data has been collected to do so safely. The primary concern is that modifying this design using electromagnets could result in a gyroscopic effect directed at galactic velocities and nearby sub-particle energies. This could lead to unexpected and extreme results, and could even atomize the materials in the device. This could be similar to flying a kite against wind moving at close to the speed of light.
[0007] The inventors strongly discourage the construction of a large-scale model of this device anchored to Earth. If the accompanying theory is valid, it is possible that this device could alter Earth's orbit if tethered to Earth in some way. A possible solution to this would be to build a tether that floats in the ocean without being anchored to Earth's crust. If stabilized, the height of the ocean surface relative to the structure could be used to adjust the relative acceleration of the combined device system, preventing it from escaping the atmosphere. We, the inventors, believe that such a large-scale device may even have been the cause of Planet X's extreme orbit. If an ancient civilization existed on that planet and discovered and constructed this device without taking appropriate precautions, it could have captured galactic momentum and then destabilized the planet's orbit, sending it farther away from the Sun. Depending on the relative velocities involved, a large-scale model of this device could also further disrupt the entire star system by bringing Earth closer to the Sun or by disrupting its orbital axis in a way that would cause Earth to move away from the solar system's orbital plane.
[0008] The inventors believe this concept is simple enough to have been discovered in the past, perhaps by accident by an underdeveloped civilization. This may have played a role in several unsolved mysteries throughout history. Furthermore, it is possible that more recent research into this or similar devices is being conducted in secret. We recommend proceeding with caution, openness, and understanding.
[0009] Only by working together through global coordination can we safely and effectively implement this functional model of the device and solve many of the problems currently facing humanity.
[0010] A successful model of this device could potentially generate currents within the galaxy without using fuel. North-south pulses could be used to passively generate energy from the galaxy's momentum. The magnet's decay rate would be the limiting factor. Levitation could be used to build near-frictionless models, avoiding frequent maintenance. This would eliminate fuel consumption and the need for dangerous or environmentally damaging structures.
[0011] A successful model of this device, if the accompanying theory is valid, could also enhance local gravity based on the principle of local maxima adjacent to voids. Potentially, a model of this device suspended above a zone could reduce the force of Earth's gravity in a localized area. This would allow heavy objects to be moved with much less force, or flight with much less thrust and lift. Once enough data is collected and analyzed, electromagnets could be used to further control the acceleration of this device, and using three or more models of this device in a balanced system might allow travel within the galaxy similar to using a kite. Of course, this would also mean levitation above Earth.
[0012] If successfully implemented, this device will allow humanity to live primarily off the land in floating structures, restoring the land to a lush, healthy state. With effective engineering, it may even be possible to inhabit the oceans and reverse the effects of environmental damage caused by humanity's longstanding mistakes.
[0013] Successful models of this device could also stabilize the Earth's magnetic field or act as a radiation umbrella if changes in the magnetic field weaken the Earth's protection against the sun's radiation.
[0014] A successful model of this device could serve as evidence for the contingent hypothesis of everything.
[0015] In their search for an answer to the question, "Why does the galaxy rotate?", researchers hypothesized that a windmill-like action occurs in a room filled with static air. To rotate a windmill, the windmill must be moved through the air. The air then becomes polarized into "front" and "back" relative to the windmill. When the windmill starts moving, the air becomes polarized into "future" and "past." The shape of the air is unimportant, just as the shape of a river is determined by the stones, not the water. The shape and structure of the windmill create the rotation. Air cannot pass through the material of the windmill, water cannot pass through the stones in the river, and presumably particle-energy fields cannot pass through magnetized material. The shape of the galaxy and the structure of magnetically polarized matter prevent the energy field from passing undisturbed, creating an ultra-low-density flow pattern of generally imperceptible energy that moves at extremely high speeds compared to the local environment. This explains the temporary polarization of iron in close proximity to a magnetic field. Just as wind blows away a weather vane, magnetic fields blow away the electrons in iron due to the shape of its atoms and molecules. This invention is therefore nicknamed the "Riverstone Pinwheel."
[0016] First goal: Strengthening the magnetic field. - Achieved Second goal: Continuous asymmetric magnetic field. - Achieved Third goal: Align ferrous and non-ferrous metals on the same circular plane as the enhanced magnetic field. - Achieved Fourth goal: Alternating magnetic and magnetically induced acceleration prevents acceleration in the opposite direction. - Partially achieved 5th goal: Internal south magnetic charge and external north magnetic charge pulsating on non-ferrous metals to generate electric currents. - Not achieved
[0017] The penultimate test achieved intermittent acceleration. This test excluded non-ferrous metal placement. After manually initiating rotation, the device slowed down, then accelerated audibly for a brief moment, before slowing down and stopping. This was the most successful test.
[0018] After including the non-ferrous metal arrangement in the final test, the device gradually slowed to a stop after manually initiating rotation. However, the inventors believe there was an error in this design. The non-ferrous metal arrangement was positioned so that it rotated slightly ahead of and parallel to the ferrous metal piece. To conserve resources, the experiment was run regardless. Notably, the deceleration rate was consistent with a similar low-friction structure without a magnetic component. Thus, the arrangement of magnetic and magnetically attracted components was balanced and largely stable. A magnetically unbalanced model would have decelerated more rapidly.
[0019] To achieve stability, the center of the ferrous metal piece's path was positioned directly over the center of the magnetic structure's path. The non-ferrous metal pieces were positioned on the north and south sides of the magnetic structure. The circular stationary section had a circular track around its base with loose metal bearings, far enough away to prevent bearing interference from the magnets. The circular rotating structure had a circular groove designed to fit over the top of the circular track on the circular stationary section. Lubricant was added to further reduce friction.
[0020] The device was constructed using a photoresin 3D printer.
[0021] The inventor has reached the limits of his resources, design capabilities, and personal energy, and will continue working if further opportunities arise. [Brief explanation of the drawings]
[0022] [Figure 1]●Label 1 is the magnetic stack. This is a stack of magnets arranged with their north magnetic poles facing the outer edge of the entire device. ●Label 2 is the iron plate stack. This is a stack of flat iron metal plates placed next to the stack of magnets, rather than facing either pole. ●Labels 1 and 2 make up the magnetic structure. ●Label 3 is the fixed base of the entire device. This base holds the magnetic structure in place while the rotating base moves through areas outside or above the fixed base. [Figure 2] ●Label 4 is a ferrous metal object. This ferrous metal object is positioned within the rotating platform at a point where it can be accelerated toward the magnetic structure. ●Label 5 is a non-ferrous metal arrangement. This non-ferrous metal arrangement is positioned within the rotating platform at a point where it can be decelerated relative to the magnetic structure to prevent reverse rotation. ●Label 6 is a rotating base. This rotating base holds the ferrous metal object and non-ferrous metal arrangement in a fixed position relative to the fixed base to allow for effective interaction between the magnetic structure, the ferrous metal object, and the non-ferrous metal arrangement. [Figure 3]● The text reads, "Galactic Pulse Turbine 'Riverstone Windmill' Concept Sketch" and "Movement Achieved Using Alternating Magnetic Attraction and Inductive Repulsion." ● Zone A illustrates the general material composition and general arrangement of components of a magnetic structure, as detailed in Image 1. The diagram below shows the intended extended shape of the magnetic structure's magnetic field. "Nd" refers to the chemical element neodymium. "Fe" refers to the chemical element iron. "N" refers to the North Magnetic Pole. "S" refers to the South Magnetic Pole. "(x)" refers to equidistance between magnetic structures. "B" refers to structures represented within Zone B. ● Zone B illustrates the general material composition and arrangement of ferrous metal objects and non-ferrous metal arrangements, as detailed in Image 2. "Cu" refers to the chemical element copper, which substitutes for non-ferrous metals. "Fe" refers to the chemical element iron. "N" refers to the North Magnetic Pole. "S" refers to the South Magnetic Pole. "(y)" refers to equidistance between ferrous metal objects and non-ferrous structures. "A" represents the structure represented within Zone A. The row of arrows within the circle represents the expected arrangement of atomic magnetic charges within a ferrous metal object. The vortices above the stack of non-ferrous plates in the image below represent magnetic eddy currents that prevent reverse acceleration. ● The various other arrows and x's represent intended motion and cancellation of motion of adjacent objects, respectively. [Explanation of symbols]
[0023] 1. Stack of magnets 2 stacks of ferrous metal washers 3 Fixed base 4. Ferrous metal objects 5. Placement of non-ferrous metals 6 Rotating Base
Claims
[Claim 1] A circular dynamo rotates using the alternating forces of magnetic attraction and magnetic induction. This is achieved by shifting the shape of the magnetic field of multiple magnets using a stack of steel washers or plates positioned perpendicular to the direction of the magnetic poles, then passing a piece of steel in front of the magnet with aluminum or copper placed immediately behind the steel. The shifted magnetic field creates unidirectional acceleration around the circle. The copper or aluminum prevents acceleration in the opposite direction through induction. When properly balanced, magnets can be used to create stable motion without consuming fuel. With sufficiently powerful magnets, this force can overcome friction and generate usable electricity based on the strength of the magnets. This follows the physical law of conservation of energy and harnesses the energy of the galaxy's momentum.