Structure to generate power by applying weight from upper part of large wheel and obtaining rotational force

The system harnesses gravity and leverage to generate stable, zero-emission electricity, addressing climate change and health hazards, and reducing national wealth outflow by using a large wheel with a lever mechanism and a weighted vehicle.

JP2025160071AInactive Publication Date: 2025-10-22桜庭 昇
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Patent Information

Application Number
JP2024085878
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-04-09
Publication Date
2025-10-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Current power generation heavily relies on pyrotechnic fuels, leading to climate change, health hazards, and significant national wealth outflow, while renewable energy sources like solar, wind, and hydroelectric power are insufficient and uneven.

Method used

A system utilizing gravity through a large wheel with a lever mechanism to generate rotational force and electricity, employing a weighted vehicle on a 4-meter wheel with a 200 kg load, generating a vertical falling force to rotate a smaller wheel connected to a generator.

Benefits of technology

Generates stable and zero-emission electricity, reducing national wealth outflow and health risks, independent of natural conditions, and leveraging the principle of leverage for continuous power generation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To generate power without using, as fuel, coal and petroleum which cause air pollution.SOLUTION: A wheel having a diameter of 2 meters is fixed to an axle in the middle of a large wheel having a diameter of 4 meters. The large wheel of 4 meters is preferably made of a light-weight material, and a weighted wheel is placed on the shoulder of the large wheel so that the weight becomes 200 kg. The surface is suitably made of rubber. The weighted wheel is in contact with the shoulder of the large wheel at 60 cm to the left from the vertical line of the large wheel. The contact portion of the large wheel on the left side and the weighted wheel has an inclination at a portion corresponding to the shoulder of the large wheel so that the weighted wheel falls to the lower left, and an arm for preventing this is connected by a joint to an inclined arm provided on the right side with the weighted wheel as a starting point. The wheel having a diameter of 2 meters connected to a generator in the middle of the large wheel is fixed to the same axle as the large wheel, and this wheel is rotated by the rotational force of the large wheel.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] This structure generates electricity by applying gravity from the top of the large wheel to generate rotational force. [Background technology]

[0002] Current power generation relies heavily on pyrotechnic fuels, which has led to climate change caused by carbon dioxide (CO2) emissions, a major problem, and disasters associated with it are expanding to a point where they can no longer be prevented by human power. In response to this, the creation of harmless renewable energy sources is accelerating, but this is not enough to reduce carbon dioxide emissions to zero.

[0003] Although harmless renewable energy sources such as solar power, wind power, and hydroelectric power are in operation, there are still shortages. Because they are dependent on nature, power generation is uneven. For example, solar power is at its maximum in direct sunlight, but decreases as the sun sets, and it is impossible to generate electricity in the dark. Wind power generation requires winds of at least 6 meters per second, and there are few installation sites. Wind power generation is installed offshore, but there are concerns about salt damage. Hydroelectric power generation relies on rain.

[0004] Pyrotechnic fuels are widely used not only for power generation but also in other industries, resulting in the annual import of tens of trillions of yen, resulting in a huge outflow of national wealth. It is necessary to reduce this outflow of national wealth even if just a little. The invention was born out of the hope of putting a stop to disasters caused by climate change, and contributing even just a little to a world where people can live safely and without fear of disasters. Summary of the Invention [Problem to be solved by the invention]

[0005] In addition to climate change, the extensive use of pyroclastic fuels also leads to the spread of substances that are said to have adverse effects on the human body, such as sulfur oxides (SOx), nitrogen oxides (NOx), and suspended particulate matter, which can cause chronic bronchitis, asthma, pneumoconiosis, lung cancer, and allergic hay fever. Although it has become less common recently, it is still published in newspapers and other media. The Ministry of the Environment announced environmental standards in January 2017 and March 31, 2017. It is also described in detail in the Family Medicine Encyclopedia.

[0006] We want to bring disasters caused by climate change, which is an extremely difficult issue, as close to zero as possible. We want to reduce, even if only slightly, the outflow of national wealth that amounts to tens of trillions of yen each year. The aim is to make full use of renewable energy sources in nature and to generate the electricity used in a country domestically.

[0007] In order to stop the progression of global warming, it is necessary to improve the causes of carbon dioxide (CO2) emissions. Even if trees in forests absorb carbon dioxide, it will reduce the amount slightly, but that does not mean that the use of pyrotechnic fuels will stop. Countries that use a lot of pyrotechnic fuels are providing financial assistance to countries that do not use them at all, but this is not expected to stop carbon dioxide (CO2) emissions.

[0008] Electricity is now the most important energy source, and life cannot continue without it. Fortunately, electric vehicles are becoming the norm, but if the source of electricity used is pyrotechnic fuel, we cannot just throw our arms up in celebration. This invention provides safe and stable power generation, produces zero carbon dioxide emissions, has zero outflow of national wealth and does not decrease no matter how much it is used, can be used in unlimited amounts free of charge, and covers the entire Earth, so there can be no disputes over comparison.

[0009] The best way to solve these various conditions is to utilize gravity. If you think about using it without putting a lid on it, you can come up with a variety of ways to use it. It is difficult to use gravity alone, but this invention makes use of the principle of leverage. By combining all three points of support of the lever with gravity, it is possible to generate electricity. Levers have been used since ancient times, and a small weight can move a large weight.

[0010] The question is what form of gravity is used, but gravity causes an extremely accurate vertical drop or transfers weight vertically downward. In this invention, a 200 kg weighted vehicle is placed on the shoulder of a large wheel with a diameter of 4 meters. The 200 kg of gravity continues to generate a vertical falling force through the contact point between the large wheel and the weighted vehicle. Gravity generates a force that tends to make something vertical when hung at an angle. For example, the pendulum of a grandfather clock with a dead battery will always be vertical. A swing at a children's park will always hang vertically when no one is riding it. This invention utilizes a method of applying weight to the large wheel vertically and the natural law that an inclined object tends to become vertical. Effects of the invention

[0011] It will contribute to reducing global warming, reduce the outflow of national wealth, and reduce the damage to human health caused by air pollution due to the excessive use of pyrotechnic fuels. [Brief explanation of the drawings]

[0012] [Figure 1] perspective view [Figure 2] The side view is the most suitable illustration. [Figure 3] A diagram showing the arrangement of wheels, etc., as seen from directly above DETAILED DESCRIPTION OF THE INVENTION

[0013] A set of three wheels, each with a diameter of two meters, is fixed to the axle between the large wheels with a diameter of four meters, but the more sets there are, the more stable it is, as the base becomes wider. It is desirable that the 4-meter large wheel be made of as light a material as possible. A weighted wheel is placed on the left shoulder of the large wheel (as seen from the drawing). It should weigh 200 kg and the surface should be made of rubber. This is to avoid metal friction and metallic noise if the weighted wheel is also made of metal. The load car is in contact with the shoulder of the large wheel, 60 cm to the left of the vertical line of the large wheel. A metal fitting to prevent the load car from coming off is attached to the contact point with the large wheel. The fitting is attached to this support, which is vertically positioned starting from the large wheel axle, so that it sandwiches both wheels at the contact point between the large wheel and the load car. A wheel-slip prevention bracket is also provided on the right side, positioned 60 cm below the top of the main wheel, sandwiching the main wheel and the weight wheel.As there are two main wheels, the same bracket is provided on both sides. The contact point between the large wheel on the left and the load car is inclined at the shoulder of the large wheel, which causes the load car to fall to the lower left.An arm to prevent this is connected to the inclined arm on the right side with a joint, starting from the load car. The diagonal arm on the right side mentioned above has four pillars, two of which sandwich the large wheel, and has joints at the top of the two pillars. An arm at a 50-degree angle is connected to the joint, and a load car carrying 200 kg is connected to this arm and the large wheel. The point of contact with the large wheel is midway within the 2-meter half diameter of the large wheel. In addition to the 200 kg weighted wheel connected to the arm at a 50-degree angle, a 200 kg weight is also hanging from the bottom of the arm. When a heavy object is hung at an angle, the arm will always try to become vertical; this is an application of the law of nature, which will produce the same result no matter who tries it. The load wheel connected to the arm is fixed to the 50-degree arm by three support arms that can be considered fan-shaped. The three support arms connected to the 50-degree arm prevent the load from being placed on only one arm and bending. A 200 kg weight is hung from the bottom of the 50-degree arm, and together with the 200 kg load wheel, it continues to push the large wheel. The 50-degree inclined arm works on the principle of a lever.The 200 kg weighted wheel in contact with the large wheel acts as the fulcrum, and a 200 kg weight is hung from the bottom of the lever.The top of the lever is connected by a joint, so a considerable amount of force is generated. A wheel with a diameter of 2 meters is connected to the generator in the middle of the large wheels and is fixed to the same axle as the large wheels. This wheel rotates using the torque of both large wheels. The combined force exerted by both large wheels on the left side is 400 kg, the weight of the weight wheel in contact with the side of the large wheel on the right side is 400 kg, and there is an additional 400 kg from the two weights hanging from the bottom of the arm at a 50-degree angle.The total force exerted on the side of the large wheel on the right side is 800 kg, but this weight is slightly reduced because the weight is in contact with the side of the large wheel at an oblique angle. There are four support pillars, but the lower part from the main wheel axle is bifurcated to support the weight of the upper part, and the upper main wheel from the axle and the weighted wheel derailment prevention fittings are fixed to the support pillars and are positioned slightly differently on the left and right sides, and there are eight wheel derailment prevention fittings in total. Eight diagonal supports are fixed to both sides of the four supports, and a building is required to protect from rain and wind. [Explanation of symbols]

[0014] 1. Large wheels with a diameter of 4 meters, as light as possible. 2 200 kg weighted vehicle, surface made of com. 3. The weighted vehicle wheel-slip prevention brackets are fixed to the support posts and are installed in different positions on the left and right sides. 4. The weighted vehicle support arm is connected with a joint in the middle of the arm at a 50-degree angle. 5 The bottom of this arm is at a 50-degree angle, and a 200kg weighted vehicle continues to push against the top of the large wheel. A weight of 200 kg is hung from it, creating a lever effect that further strengthens the rotation of the large wheel. 6. A weight hung from the bottom of an arm at a 50-degree angle. 7. Connect the joint between the weighted wheel support arm and the 50-degree inclined arm. A joint that connects the bottom of the diagonal arm to a metal fitting that hangs a 200 kg weight. 8 Attached to the support by an arm at the top of the arm at a 50-degree angle. 9 Fixed to the support with joint mounting hardware. 10 posts 11 Wheels that connect to the generator with a belt or chain. 12 Generator connecting belts or chains or other belts. 13 Axles and bearings.

Claims

[Claim 1] Two large wheels with a diameter of 4 meters are fixed to the axles between each wheel with a diameter of 2 meters. Three wheels are used in one set, but two or four sets are more stable. It is desirable that the 4-meter large wheel be made of as light a material as possible. Looking at the drawing, a 200 kg load vehicle will be placed on the left shoulder of the large wheel, and the surface of the load vehicle will be made of rubber. With the wheel axle in the vertical position and viewed as the centerline, the weighted vehicle is in contact with the shoulder of the wheel 60 cm to the left. A wheel derailment prevention bracket is attached to the wheel at the point of contact with the wheel. The bracket is fixed to a support pillar that is vertically positioned starting from the wheel axle, and is attached so that it lightly clamps both wheels at the point of contact between the wheel and the weighted vehicle. A wheel-slip prevention fitting is also installed on the right side, and the weighted wheels are installed on both sides, but the contact point between the left weighted wheel and the large wheel is at the shoulder of the large wheel, while the contact point between the right large wheel and the weighted wheel is 60 cm below the top of the large wheel, and the wheel-slip prevention fitting is installed at this position. The weighted vehicle has an inclined part at the shoulder of the large wheel, so there is a risk that the weighted vehicle will fall to the lower left.To prevent this, an arm is connected by a joint to an arm at a 50-degree angle that suspends the weighted vehicle on the right side, starting from the weighted vehicle. The arm on the right is at a 50-degree angle, and two of the four supports are sandwiched between the large wheel and these arms.The two arms have joints at the top, and the 50-degree arm is connected to the joints as the starting point.A loaded vehicle weighing 200 kg is connected to this arm and is suspended at a 50-degree angle.The suspended loaded vehicle remains in contact with the large wheel in that position. It takes advantage of the natural law that gravity always tends to become vertical when hung at an angle. The connection between the 50-degree inclined arm and the 200 kg load vehicle is attached to three support arms and the inclined arm. There is only one connection to the load vehicle, but the connection to the inclined arm is divided into a fan shape to prevent excessive load from being placed on the inclined arm. A 200 kg weight is hung from the bottom of the arm, along with a 200 kg weight wheel suspended from the arm at a 50-degree angle, and the combined weight of the 200 kg weight wheel continues to push the large wheel.The slanted arm uses the weight wheel as the fulcrum and has a 200 kg weight at the bottom, so it becomes a three-point support, the principle of leverage is established, and the number of swords continuing to push the large wheel is increasing. There are two large wheels, all identical, and a wheel with a diameter of 2 meters is fixed to the large wheel axle in the middle of the two wheels and connected to the generator. There are four support pillars, the lower part from the axle is forked and the upper part is vertical, sandwiching each wheel. At the top of the four pillars, eight diagonal supports are required on both sides.

Citation Information

Patent Citations

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    JP2002349419A

  • Device with structure for rotating electric generator under vertical force of gravity

    JP2014206151A

  • Vehicle with structure for converting weight into propulsion power under application of principle of lever

    JP2015010604A