Device for lifting water from any depth and generating electricity by using minimum power

By designing a water lifting device that utilizes very little electrical energy or water potential energy, the problem of increasing electrical energy demand when existing water pumps increase in depth is solved, and environmentally friendly and low-cost water lifting and power generation effects are achieved.

CN120092134APending Publication Date: 2025-06-03RNI ENTERPRISES
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Patent Information

Application Number
CN202380068986.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2022-09-27
Filing Date
2023-09-23
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

Existing water pumps require more electricity when the depth increases, and have a great impact on the environment when generating electricity, making it difficult to achieve environmentally friendly and low-cost water improvement and power generation.

Method used

By leveraging very little electric energy or potential energy of water to lift water from groundwater levels at any depth, a water lifting device is designed, which includes vertical pipes, pistons, crank wheels, pulleys and solar panels or low-power motors, which utilize the potential energy and gravity of water to lift water and generate electricity through a turbine.

Benefits of technology

It realizes the increase of water from any depth with very little electric energy or potential energy of water, reduces the impact on the environment, and drives the turbine to generate electricity through circulating water, solving the problem of overuse of electricity, and is environmentally friendly and low-cost.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a concept for raising the groundwater level from any depth with little electrical energy or potential energy of water. The device comprises two vertical pipelines forming a closed circulation path. And water filled in the two pipelines is in a balanced state. The bottom self-lubricating piston is connected through a smoothly ground piston connecting pipe, and due to the existence of the floater, the bottom self-lubricating piston can easily move up and down in water. Meanwhile, underground water enters through the bottom check valve and flows out through the upper check valve. By means of the model design, even children can easily rotate the hand pump to lift water from any depth. The solar panel is used for operating the direct current motor. The model cost is reduced and the efficiency is improved. In the invention, only little energy is needed, and the device can be used as a hand pump well. The water can circulate and drive the turbine to generate electricity.
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Description

Technical Field

[0001] The present invention relates to a field of lifting water from the groundwater level at any depth using very little electrical energy or only relying on the potential energy of water. In addition, the present invention relates to lifting water from water sources such as the ocean, lakes, ponds, water tanks, wells, drillings, etc., and the water can be circulated and drive a turbine to generate electricity. The water can be lifted from a lower terrain height to a higher terrain height for irrigation and other household uses. Background of the Invention

[0003] Existing water pumps require more electrical energy to lift water as the depth increases and have a greater impact on the environment when generating electricity, while the present invention is environmentally friendly and can lift water from any depth using only very little electrical energy or the potential energy and gravity of water, and can also circulate the water and generate electricity. It solves the problem of excessive use of electrical energy and in turn generates electricity. The present invention can lift water from the groundwater level with very little electrical energy or the potential energy of water, is inspired by nature, does not affect the environment and the surroundings, and at the same time helps to generate electricity at a very low cost.

[0004] Object of the Invention

[0005] The main object of the present invention is to lift water from the groundwater level at any depth with very little electrical energy or only relying on the potential energy of water.

[0006] Another object of the present invention is to enable the water to be circulated and drive a turbine to generate electricity.

[0007] Still another object of the present invention is to lift water from a lower terrain height to a higher terrain height for irrigation and other household uses. Description of the Drawings

[0008] Figure 1 shows a schematic diagram of a water lifting device. Detailed Embodiment

[0009] Although the embodiments in the present disclosure can be subject to various modifications and alternative forms, specific embodiments are shown by way of example in the drawings and will be described below. However, it should be understood that the present disclosure is not intended to limit the disclosure to the specific forms disclosed, but on the contrary, the present disclosure is intended to cover all modifications, equivalents, and alternatives falling within the scope of the present disclosure.

[0010] It should be noted that those skilled in the art will be inspired by the present disclosure and may modify various configurations, which may vary depending on the application. However, such modifications should be considered to be within the scope of the present disclosure. Therefore, the drawings only show the specific details required to understand the embodiments of the present disclosure to avoid obscuring the present disclosure with details that are obvious to those of ordinary skill in the art after reading the description herein.

[0011] The present invention relates to water for raising the groundwater level from any depth with extremely little electrical energy or the potential energy of water. The present invention is inspired by nature, does not impact the environment and the surroundings, and also helps to generate electricity at an extremely low cost.

[0012] The water lifting device comprises the following components:

[0013] Water, pipes and pipe fittings, check valves, pistons, connecting rods, crank wheels, pulleys, belts or chains, hopper tanks or very low power AC motors or DC motors or solar panels, electrical energy storage batteries, turbines, generators, inverters and other fitting materials, and any fitting components added as required.

[0014] There are various improvements to the present invention, so it is a new model. A DC motor with extremely low power is used. Solar panels are used to operate the above-mentioned DC motor. In previous inventions, two pipes had annular pistons, and the pistons were located in the upper and lower parts. In the present invention, there are two vertical pipes with pistons, and the pistons are also located in the upper and lower parts. Therefore, the model cost is reduced and the efficiency is improved. A large number of improvements have been made to the vertical pipes. In this new invention, only extremely little energy is required, and it can be used as a hand pump well. The model is designed such that even a child can easily rotate the hand pump to lift water from any depth. In previous inventions, only the potential energy of water was used, while the new invention model has been improved and can work in various ways according to the location, such as:

[0015] 1) Using extremely little electrical energy

[0016] 2) Using solar panels

[0017] 3) Being used as a hand pump

[0018] 4) Using the potential energy of water.

[0019] The motor (17) rotates with the help of the electric power provided by the solar panel (29), or the hopper tank is filled with water due to the potential energy of the water turbine (22), and then the upper pulley (36), the lower pulley (36A), and the pulley belt (37) are rotated, which are successively connected to the crank wheel (11), the crank wheel (11A), the connecting rod (14) and the self-lubricating piston (4B), the connecting rod (14A) and the self-lubricating piston (4C). The motor can be an AC / DC motor. In an AC motor, the armature is stationary while the magnetic field rotates. In a DC motor, the armature rotates while the magnetic field remains stationary.

[0020] The component includes a vertical pipe for water movement, a crank wheel (11) that is manually rotated to start the system operation, self-lubricating pistons (4A and 4) that move up and down in response to the rotation of the crank wheel, check valves (7, 7A, 7B, 7C, 7D, and 7E) that cause water to flow alternately in the two vertical pipes, a connecting rod (14) that connects the crank wheel to the upper self-lubricating piston, piston connecting pipes and floats (5 and 5A) that help the pistons move in water, T-shaped pipes (6, 6A, 6B, and 6C) for guiding the water flow, and vertical pipe sections (9 and 9A) that hold water to facilitate movement. When the crank wheel (11) is manually rotated, it drives the connecting rod (14), thereby causing the upper self-lubricating piston (4A) to move up and down.

[0021] In the first half of the rotation, the water in the vertical pipe (9A) is pushed downward by the self-lubricating piston (4A), while the water in the vertical pipe (9) is pulled upward due to the movement of the upper piston. When the self-lubricating piston (4A) moves downward, the water in the vertical pipe (9) is blocked by the check valve (7D) and reaches the self-lubricating piston (4) through the piston connecting pipe hole (8). At the same time, the potential energy of the water in the vertical pipe (9A) helps the self-lubricating piston (4) to lift upward. At the same time, the water in the vertical pipe (9) tends to be pulled upward, and the water that has entered the vertical check valve (7A) is blocked and flows upward through the check valve (7E). The water moves upward through the vertical pipe (9). The vacuum formed at the bottom helps the groundwater to enter through the check valve (7) and fill this part. The self-lubricating piston (4) moves together with the floats (5 and 5A), and due to the presence of the floats, it can move up and down easily in water.

[0022] In the second half of the rotation, the crank wheel (11) continues to rotate, and the connecting rod (14) causes the self-lubricating piston (4A) to move upward. In one vertical pipe (9A), the water is pulled upward by the self-lubricating piston (4A). In the other vertical pipe (9), the water tends to move downward but is blocked by the bottom check valve (7E). The water flows through the piston connecting pipe hole (8A) and reaches the bottom self-lubricating piston (4), pushing it downward. The water in the second vertical pipe (9) tends to move upward through the check valve (7D). Since the top check valve (7C) is blocked, the water flows out through the vertical pipe (9B). A vacuum is formed at the bottom again, causing the groundwater to enter through the check valve (7A) and fill this part.

[0023] The design of this system ensures that with each rotation of the crank wheel, water enters through the bottom check valve and flows out through the top check valve. This means that the water levels in the two vertical pipes remain relatively stable, neither increasing significantly nor decreasing. The thrust of the upper self-lubricating piston and the pull at the bottom act simultaneously. This balanced force arrangement helps to achieve efficient and consistent movement of the pistons.

[0024] Automation provided by the solar panel or the motor simplifies the operation of the system and enables continuous pumping of water. The energy generated by the turbine is used to drive the piston and maintain a steady flow of water through the vertical pipes. Check valves are used to ensure that the water flows in the desired direction, and the closed-loop design ensures the continuity of the water potential energy from one vertical pipe to another, i.e., the water acts as a coupling force under the closed loop.

Claims

1. A system for lifting water, characterized in that, comprising: A plurality of vertical pipes, wherein the plurality of vertical pipes are filled with water, and both ends of the plurality of vertical pipes are connected to form a closed circulation path to achieve synchronous pulling and pushing of water; The plurality of vertical pipes include a water input T-shaped pipe and a vertical check valve; An upper self-lubricating piston, wherein the movement of the upper self-lubricating piston is configured to generate a pressure difference to promote the movement of water in the system; A crank wheel handle, wherein the crank wheel handle is used to start the operation, and the crank wheel handle is connected to a crank wheel, a connecting rod and a self-lubricating piston; A connecting rod, wherein the connecting rod is used to transmit the rotational motion of the crank wheel to the reciprocating motion of the piston, and the connecting rod is connected to the self-lubricating piston; A bottom self-lubricating piston, wherein the bottom self-lubricating piston is used to maintain the stable and smooth operation of the system, and the bottom self-lubricating piston is connected to a piston connecting pipe that has been smoothly ground, and floats are provided on both sides; A check valve, wherein the check valve is used to control the water flow direction and prevent water from flowing back; A piston connecting pipe, wherein the piston connecting pipe assists the self-lubricating piston to move up and down more easily in water.

2. The system according to claim 1, characterized in that, The water inlet of the hopper tank drives the turbine to rotate, and the turbine is sequentially connected to a pulley, thereby driving the upper pulley, the lower pulley and the pulley belt to rotate.

3. A method for lifting water, characterized in that, comprising the following steps: Generating electric energy through a solar panel to drive the motor to rotate; Utilizing the potential energy of water by the water inlet of the hopper tank to drive the turbine to rotate; Blocking the water, moving downward through the check valve during the movement of another vertical pipe, and moving upward and downward through the lower self-lubricating piston during the first and second half rotations; Pushing the water filled in one vertical pipe through the top self-lubricating piston; Pulling the water filled in another vertical pipe through the bottom self-lubricating piston; Transmitting the water to the vertical pipe through the check valve to fill the water; Discharging the water from the vertical pipe through the check valve to empty it.