Cyclic energy generator and manufacturing method thereof

By designing an environmentally friendly and energy-consuming cycling generator, using water wheels, speed-growing transmission gears and energy storage barrel structures, self-circulation power generation in areas with insufficient water sources is achieved, solving the problems of existing power production dependence on energy and environmental pollution, and providing efficient and clean power generation solutions.

CN120444167APending Publication Date: 2025-08-08邵桂良
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Patent Information

Application Number
CN202510005925.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

Existing power production methods rely mostly on energy consumption and new materials, and are polluted to the environment. Especially in the construction of hydropower stations, the geographical environment has high requirements and large investment, making it difficult to apply in areas with insufficient water sources.

Method used

Design an environmentally friendly and energy-consuming cycling energy generator. Through the matching of water wheels and the speed-growing transmission gear, the energy storage barrel structure and lever principle, the gravity circulation of water is used to generate kinetic energy to drive power generation, and combine the mutual promotion of water pumping and power generation of water, self-circulation power generation is achieved.

Benefits of technology

It has achieved all-weather self-circulation power generation, with high kinetic energy utilization rate, low cost and no environmental pollution. It is suitable for household and large power plants and has strong adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the design principle of the novel environment-friendly energy-consumption-free circulating energy generator, after comprehensive restructuring is conducted according to different performance and effects of a hydropower station and a water pumping station, the novel environment-friendly energy-consumption-free circulating energy generator is generated, and a small part of generating capacity is used for supplying power to the water pump, pumping water and storing energy. Key nodes among the water wheel, the energy storage barrel and the energy storage barrel are the improvement and arrangement method of the water wheel and the effect of the additionally arranged energy storage barrel, the lever principle is fused, and the water wheel is in a flange shape and is placed in a 90-degree perpendicular shape. And the inherent phenomenon that the empty barrel and the full barrel cannot be balanced is more highlighted, so that kinetic energy is generated. Water is flowing liquid, so that the water can be used at will and can be reused, but water storage equipment, namely a water tank, must be arranged, and splashing and loss of the water can also be prevented. When a water pump pumps water, due to the fact that the energy storage barrels are different in position and form, a small amount of water can be flushed in a short time only when the energy storage barrels are rotated to fixed positions, and in order to solve the problem, the multi-pipe flow dividing type water distributor is designed, and the full degree can be achieved only after the water is flushed through multiple pipes. And when the energy storage barrel begins to incline towards the bottom to pour water until the energy storage barrel is emptied, the formed gravity is always kept on the right side and is converted into kinetic energy, so that the power generator is driven to generate power through cyclic operation, and the ideal state of three cycles of water, electricity and kinetic energy is achieved.
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Description

Technical field:

[0001] The invention is a pollution-free and energy-saving circulating energy generator with simple structure, low cost, easy production and no restrictions on geographical or other additional conditions. Background technology:

[0002] In this era of rapid scientific and technological development and increasingly abundant material resources, the widespread adoption of electrified and intelligent products relies on a crucial element: electricity. The generation of electricity in all seven major sectors—water, fire, wind, solar, oil, gas, and nuclear—requires energy consumption and reliance, as well as the development and utilization of new materials. These processes are complex, technically challenging, and have significant environmental impacts and pollution. Hydropower stations, however, utilize natural energy, but these require extremely high requirements for the geographical environment. Furthermore, the investment and engineering requirements are enormous, and the areas where they could be used are largely exhausted. Construction of the Medog Hydropower Station has also remained stagnant due to the harsh environment. In areas with limited water resources, pumped hydropower stations have emerged, and circulating energy generators have emerged as a result. Summary of the invention:

[0003] The present invention aims to provide a clean, environmentally friendly, and energy-saving self-circulating generator. The generator can be used for small household applications, connected to the grid for power generation, or used in remote areas without electricity. It can also be used to build larger power stations or be integrated with other devices. A method for manufacturing the generator is also provided.

[0004] To solve the above problems, the present invention provides, on one hand, a method for manufacturing an environmentally friendly, energy-saving, pure cycle energy generator, comprising:

[0005] Step 1: Design the turbine size and the final speed of the secondary speed-increasing transmission gear to match the generator speed.

[0006] Step 2: Complete the external gear hobbing process on the water wheel and the transmission gear and set them aside.

[0007] Step 3: Design the turbine frame and determine the load-bearing columns ( Figure 1 2) points and weighted rollers ( Figure 1 5) in the figure, and then fix the processing.

[0008] Step 4: Install the lifting rollers and load-bearing rollers into place.

[0009] Step 5. After fixing the energy storage tanks on one side of the water wheel in sequence, install the water wheel onto the load-bearing column, and insert the inner surface of the water wheel into the grooves of the upper and lower rollers or the lower load-bearing ring.

[0010] Step 6. Install a column on the lower right side of the outer circle of the water wheel and install an anti-sway roller. Insert the outer circle of the water wheel into the groove while leaving a gap, and then fix the main column.

[0011] Step 7. On the frame at the outer circle of the left side of the water wheel, determine the positions of the two sets of secondary transmission gears and set up brackets to fix them.

[0012] Step 8: Install the secondary speed increasing transmission gear into place on the set gear bracket.

[0013] Step 9: Design the generator base and bracket, install the passive gear on the generator main shaft, and connect it to the final drive gear on the water wheel to generate electricity. Starting method:

[0014] The first is to use the mains electricity to start the water pump to pump water for energy, and then quickly switch to self-generation after the water wheel runs to drive the generator. Second, when outdoors or in areas without electricity, you can first open the pipe cap and quickly fill it with water while draining it moderately. A fourth flush pipe, located parallel to the centerline and next to the energy storage tank, flushes the water. This pipe has a spring-loaded ball that automatically closes when the water pressure increases after the pump pumps water. A float is also placed in the main pipe to prevent water from spraying upwards. Once the system is operating normally, tighten the pipe cap and properly close the drain outlet. Prototype experimental data: As shown in the diagram, this design is divided into twelve equal sections, each capable of storing water. However, the water storage is uneven, totaling approximately three buckets. Each bucket is designed to hold 1.4 kg, resulting in a total of 4.2 kg for three buckets. Excluding the 1.2 kg of idling energy, this leaves a remaining 3 kg. Excluding limited transmission loss, this should be largely offset by the large wheel, small wheel, and lever action. This should fully power a 5 kW generator and a 0.55 kW / h water pump, a 9:1 ratio. This leaves at least 4 kW of energy available for other household uses without external interference, allowing for 24 / 7 operation. The kinetic energy generated is undeniable, similar to the common emitter in electronics. The water storage buckets can also be used to increase power. Description of the drawings: Attachment Figure 1 This is a schematic diagram of the power source and power generation design of the circulating energy generator. The basic principle is to use the gravity of water to drive the water wheel to generate power and drive electricity through the water circulation effect. The speed increase transmission mechanism after power generation is relatively simple and is not included in the attached figure. It has been clearly stated in the application, so it is attached. Figure 1 It should be regarded as a schematic diagram of the power design structure of the circulating energy generator. Attachment Figure 1 Arrangement of icon names: Figure 1 1----Water Wheel Figure 1 2 in the middle-------load-bearing columns Figure 1 3---weighted roller Figure 14 in the middle-------Back roller groove Figure 1 5 in the middle-------lift roller Figure 1 6-------racks Figure 1 7-------Energy Storage Tank Figure 1 8-------Anti-sway roller Figure 1 9-------Anti-sway columns Figure 1 10------Water pump Figure 1 11------Flush pipe Figure 1 12 in the water tank Figure 1 13------Irrigation pipe and pipe cover Figure 1 14 in the water mark Figure 1 15 in the drain valve Figure 1 16 in ------ generator.

Claims

1. A method for manufacturing a new type of environmentally friendly and energy-saving circulating energy generator, characterized in that: The main components and installation methods include: Step 1. The main components are The frame (6 in Figure 1) is made of stainless steel square tubes and is equipped with load-bearing columns, anti-sway columns, generator load-bearing frames, etc. The water wheel (1 in Figure 1) is made of high-quality plastic sheet. Energy storage barrel (7 in Figure 1) stainless steel sheet. The water separator (13 in FIG1 ) is a high-quality plastic plate. Water pump (10 in Figure 1) 0.55KW. Generator (16 in Figure 1) 5KW. Water tank (12 in Figure 1) stainless steel sheet. The three types of rollers (3 in Figure 1, 5 in Figure 1, and 8 in Figure 1) are made of high-quality plastic plates, all with built-in bearings, and the lifting and anti-sway rollers are both equipped with external grooves. The transmission gear (not marked in the figure) is made of nylon oil, and the speed increasing transmission gear has built-in bearings, which are matched in size into groups, with a total of two groups.

2. Component processing The second step is to set up the machine frame, position the processed load-bearing columns and fix them (2 in Figure 1). Then set up and fix the load-bearing roller frame (5 in Figure 1). The third step is to process the water wheel into a flange shape, process roller grooves on the back of the water wheel or set up a load ring, and the outer circle needs to be hobbed (1 in Figure 1). The fourth step is to process and shape the three types of rollers as required and then install bearings inside for standby use (3 in FIG1 , 5 in FIG1 , and 8 in FIG1 ). The fifth step is to process and shape the two sets of transmission gears. All gears must be hobbed and equipped with built-in bearings for backup (not marked in the figure). Step 6: Make energy storage barrels with an oblique cut at the mouth. Make the bevel as large as possible (7 in Figure 1). There are twelve barrels in total for use. Step 7: Make a 1″ straight hole in the water distributor that connects to the water pump and irrigation pipe, and four inclined holes on the side as 3' connecting holes. Step 8: Make a water tank according to the required specifications (12 in Figure 1) Step 9: Install all rollers onto the columns. Step 10: Make the AC power starting conversion device.

3. Component assembly: The manufacturing method of the circulating energy generator according to claim 1 is that the raw materials are made of high-quality plastic plates, which have the advantages of light weight, easy processing, low cost, etc., which is conducive to reducing load and consumption. It is characterized by: The water wheel is flange-shaped and placed vertically at a 90-degree angle. During assembly, the inner surface of the water wheel fits into the groove of the lifting roller (3 in Figure 1). The lower load-bearing roller fits into the groove on the back of the water wheel (5 in Figure 1) or rests on a separate load ring. The gears on the right side of the water wheel fit into the groove of the anti-sway roller (8 in Figure 1), leaving some clearance. The anti-sway column is then secured.

4. According to claim 3, since the water wheel has no central support point, it is characterized in that: The support of the water wheel is completed by the two rollers on the left side closer to the center, while the load point formed by the flushing water is on the right side, which obviously produces a lever energy amplification effect.

5. The setting of the energy storage tank has a significant effect, which is characterized by: The energy storage barrel is a key component that enables the water wheel to operate after storing and increasing energy. It not only stores water and increases energy, but also automatically releases water to reduce the load. When the energy storage barrel is full and continues to rotate downward, the barrel gradually tilts, automatically releasing water until it is empty. This ensures that the weight is always on the right side. After all the barrels have been flushed through the above-mentioned rotation, they can operate in a repetitive cycle, creating reliable conditions for driving the generator. The bevel of the barrel mouth should be as large as possible while maintaining the water storage capacity. This will increase the distance between the two barrels and facilitate the filling of the barrels. The high side of the barrel mouth should be close to the outer edge of the water wheel and the bottom of the front barrel to prevent overflow of flushing water. The barrel mouths should be installed on the water wheel with the same orientation and equidistant distance.

6. According to claim 5, when the water pump flushes, since the flushing point is fixed, when the water wheel runs into place, the energy storage tank is still in a tilted state and can only flush a small amount of water. Therefore, a flushing manifold (13 in Figure 1) is added, which is characterized in that: The water volume can be replenished by multiple flushing pipes at the same time. When the barrel body is in an upright state, the full level can be reached. For this, the water distributor is fixed on the load-bearing column (2 in Figure 1), and the flushing pipes are respectively aligned with the bevel cut of the energy storage barrel.

7. According to claim 6, when the water wheel is in continuous operation, the outer gear on the water wheel can drive the small gears in the two sets of speed-increasing transmission gears (each set consists of two gears, one small and one large, for a total of two sets, called a two-stage speed-increasing transmission) to operate, and then the first set of large gears drives the second set of small gears, and then the second set of large gears drives the passive small gears on the generator to drive the generator to generate electricity. (The water wheel should be considered an extra-large gear, which also includes a leverage effect. By driving the two sets of speed-increasing transmission gears to drive the generator to operate, the attenuation will roughly offset each other.) The speed of the generator driven by the second transmission large gear must meet the standard speed of the generator.

8. Water can be reused. To achieve the purpose of recycling and prevent water splashing and loss, the following features are required: A water storage device, a water tank (12 in Figure 1), is required. Placing the entire set of installed equipment, including the water pump and generator, inside the water tank and adding a cover is the primary prerequisite for achieving circulating energy power generation.

9. According to claim 8, when using the circulating water, a float is provided in the water pipe (13 in FIG1 ) above the water distributor, characterized in that This function primarily prevents water from bubbling upwards when water pressure is high, and also serves as a starting mechanism for water filling. However, due to low water pressure, fewer energy storage tanks can be flushed, resulting in insufficient starting force. Therefore, a fourth flush pipe is added to fill the lower tank with water, enabling a faster start. When water pressure increases, the built-in spring ball automatically seals the water outlet. Once the system is operating normally, tighten the water filling cap and check the water level (14 in Figure 1). If the water level is excessive, open the drain valve (15 in Figure 1) to drain the appropriate amount.

10. After connecting the AC power conversion device to the water pump and generator, place an appropriate amount of water in the water tank to power on, pump water to generate electricity, and then switch to self-generation to achieve the effect of self-circulation.