Integrated green power generation device
A hybrid green energy system integrating solar, wind, and hydroelectric components addresses land use inefficiency and instability by stabilizing energy production and reducing land use through a dam-based hydroelectric setup.
Patent Information
- Application Number
- CN202410466976.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-18
- Publication Date
- 2025-07-15
AI Technical Summary
The existing wind, hydraulic and photovoltaic power generation technologies have problems such as unstable power generation, large footprint, and limited installation location.
Design an integrated green power generation device, combining breeze wind turbines, Archimedes hydroelectric generators and photovoltaic panels, and use cement dams and water storage tank systems on the river bank to achieve stable power generation through the comprehensive utilization of wind, hydraulic power and light energy.
It improves the stability and energy utilization efficiency of the power generation system, reduces the area, and solves the problem of unstable power generation.
Smart Images

Figure CN120312466A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy, and particularly relates to an integrated green power generation device. Background Art
[0002] In recent years, with the continuous depletion of conventional fossil energy and the increasingly prominent environmental problems, the large-scale development and utilization of green and renewable energy have become the trend of energy development in various countries;
[0003] Currently, common renewable energies include wind energy, water energy, light energy, etc. In order to utilize wind energy, water energy, and light energy, energy conversion devices such as wind turbines, hydroelectric generators, and photovoltaic panels have been developed. The existing wind turbines drive the blades to rotate by wind, so that the power generation device generates electric energy. However, the driving force of wind power generation is uncontrollable, the output electric energy has strong randomness, and it cannot work when the wind is small;
[0004] Common hydroelectric generators drive the water turbine to generate electricity by the gravitational potential energy generated by the height difference of water. Most of the existing hydroelectric generators need to be installed at the water source when in use, which has great limitations on the installation location;
[0005] Photovoltaic power generation requires a large area of laying photovoltaic panels, which has a large floor area and cannot work on rainy and cloudy days;
[0006] Currently, the three technologies of using wind turbines, hydroelectric generators, and photovoltaic power generation for separate construction all have the characteristics of wasting land resources and low and unstable power generation. Summary of the Invention
[0007] The technical problem to be solved by the present invention is to overcome the defects of the above technologies and provide an integrated green power generation device.
[0008] To solve the above technical problem, the technical solution provided by the present invention is an integrated green power generation device, including a cement dam arranged on the upper part of the river bank. A support column is fixedly arranged on the upper part of the cement dam. A plurality of layers of support frames are installed between the columns of the support column. A solar panel is installed on the top of the uppermost support frame. A plurality of groups of micro-wind turbines are installed between adjacent support frames. The upper end and the lower side of the side of the micro-wind turbine are provided with pressurized blowing pipes. As the wind force changes, the pressure of the pressurized blowing pipes increases or decreases synchronously;
[0009] The side wall of the column of the support column is fixedly connected with a water storage tank. The water storage tank is provided with a sloping U-shaped water storage tank near the river bed. The bottom of the water storage tank is communicated with the sloping U-shaped water storage tank through a water storage tank conveying water pipe. A water tank partition board is arranged in the sloping U-shaped water storage tank, dividing it into upper and lower regions;
[0010] A turbine generator is provided near the bottom of the slope U-shaped water storage tank. The bottom of the round rod at the lower end of the turbine generator is connected to the round roof equipped with a turbine. Below the water outlet of the round roof, there is a conical chamber. The bottom water outlet of the conical chamber is connected to the water pipe of the Archimedes hydraulic generator, and the Archimedes hydraulic generator is arranged inside the pipe body of the water pipe of the Archimedes hydraulic generator;
[0011] A plurality of river pumping pipes are installed along the axis of the outer wall of the water storage tank. The bottom of the river pumping pipe extends into the river water. A filter screen is provided at the water inlet of the river pumping pipe. A suction pipe is provided at the top of the river pumping pipe, and a valve is arranged inside the suction pipe. A bent pipe is provided on the middle side below the top of the river pumping pipe. A floating vane generator is arranged inside the bent pipe. A pull valve is arranged at the joint of the bent pipe and the river pumping pipe. Discharge inclined pipes for draining water into the water storage tank and the slope U-shaped water storage tank respectively are arranged at the connection between the front side of the pull valve and the bent pipe.
[0012] Further, booster blowing pipes are provided at the upper and lower ends on the side of the gentle breeze wind turbine to enable the gentle breeze wind turbine to generate electricity at a stable speed.
[0013] Further, a pull valve is arranged at the joint of the river pumping pipe and the bent pipe.
[0014] Further, a debris flushing air pipe is provided at the filter screen, and the air inlet of the pipe body of the debris flushing air pipe extends upward above the water surface.
[0015] Further, a plurality of river pumping pipes are installed along the outer wall of the slope U-shaped water storage tank in the axial direction of the outer wall of the slope U-shaped water storage tank. Its drainage inclined pipe drains water into the slope U-shaped water storage tank. The water flow of the pumped-up river water utilizes the height difference of the water flow formed by the slope to generate water energy power for power generation.
[0016] Further, a plurality of river pumping pipes are installed along the axis of the outer wall of the water storage tank, and its drainage inclined pipe discharges river water into the water storage tank to achieve the purpose of storing water energy.
[0017] Further, the inside of the slope U-shaped water storage tank is separated into upper and lower areas by a water tank partition board.
[0018] Further, a plurality of circular ring grooves connected end to end are provided in the upper area inside the slope U-shaped water storage tank. A vane generator is arranged between the openings of adjacent circular ring grooves.
[0019] Further, the round rod below the lower end of the turbine generator is connected to the turbine. The turbine generator is installed in the round roof. The river water outlet of the round roof is connected to the conical chamber, and the water outlet of the conical chamber extends into the river water.
[0020] The advantages of the present invention compared with the prior art are as follows:
[0021] A combined wind, water, and photovoltaic power generation device provided by the present invention, through the combination of photovoltaic panels, wind turbines, and water turbines, can reduce the impact on the power grid caused by the randomness of wind, ensure the normal operation of the power grid, improve the stability of the system, and at the same time, the combination of light, wind, and water energy can efficiently collect clean energy while greatly reducing the floor area. It is an ideal combined wind, water, and photovoltaic power generation device. Brief Description of the Drawings
[0022] Figure 1 It is a schematic structural diagram of an integrated green power generation device;
[0023] Figure 2 It is a schematic internal structure diagram of the ramp U-shaped water storage tank of an integrated green power generation device.
[0024] Figure 3 It is a schematic structural diagram of the generator set of an integrated green power generation device.
[0025] Figure 4 It is a schematic structural diagram of the river water extraction pipe of an integrated green power generation device.
[0026] As shown in the drawings: 1. Cement dam, 2. Support column, 3. Support frame, 4. Micro-wind turbine, 5. Solar panel, 6. Water storage tank, 7. Turbine generator, 8. Archimedes water turbine, 9. Archimedes water turbine pipe, 10. Ramp U-shaped water storage tank, 1001. Debris flushing air pipe, 1002. Water tank partition board, 1003. Circular ring groove, 1004. Pressurized blowing air pipe, 11. River water extraction pipe, 1101. Pull valve, 12. Discharge inclined pipe, 13. Water storage tank delivery pipe, 14. Blade generator, 15. Conical chamber, 16. Round roof, 17. Filter screen, 18. Extraction air pipe, 19. Valve, 20. Elbow pipe, 21. Floating blade generator. Detailed Embodiments
[0027] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Usually, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations.
[0028] In the description of the embodiments of the present invention, it should be noted that if terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the invention product is usually placed during use, it is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation on the present invention. In addition, terms such as "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0029] In addition, if terms such as "horizontal", "vertical", "hanging" and other terms do not mean that the components are required to be absolutely horizontal or hanging, but can be slightly inclined. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0030] In the description of the embodiments of the present invention, "a plurality" represents at least two.
[0031] In the description of the embodiments of the present invention, it should also be noted that unless otherwise clearly specified and limited, if terms such as "set", "installed", "connected", "connected" are understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0032] The following further details an integrated green power generation device of the present invention with reference to the drawings.
[0033] Combined with the drawings, an integrated green power generation device includes a cement dam 1 arranged on the upper part of the river bank. A support column 2 is fixedly arranged on the upper part of the cement dam 1. Multiple layers of support frames 3 are installed between the columns of the support column 2. A solar panel 5 is installed on the top of the uppermost support frame 3. Multiple groups of gentle breeze wind turbines 4 are installed between adjacent support frames 3. Pressure-increasing blowing pipes 1004 are arranged on the upper and lower sides of the side of the gentle breeze wind turbine 4. With the change of wind force, the pressure of the pressure-increasing blowing pipes 1004 increases or decreases synchronously.
[0034] The side wall of the column of the support column 2 is fixedly connected to a water storage tank 6. A slope U-shaped water storage tank 10 is arranged on the side of the water storage tank 6 close to the river bed. The bottom of the water storage tank 6 is communicated with the slope U-shaped water storage tank 10 through a water storage tank conveying pipe 13. A water tank partition plate 1002 is arranged in the slope U-shaped water storage tank to divide it into upper and lower areas.
[0035] A turbine generator 7 is provided near the bottom of the slope of the slope U-shaped water storage tank 10. The bottom of the lower end of the turbine generator 7 is provided with a round rod, and the bottom of the round rod is connected to the round roof 16 equipped with a turbine. Below the water outlet of the round roof 16, there is a conical chamber 15. The bottom water outlet of the conical chamber 15 is connected to the water pipe 9 of the Archimedes hydraulic generator. Inside the pipe body of the water pipe 9 of the Archimedes hydraulic generator, there is an Archimedes hydraulic generator 8;
[0036] A plurality of river pumping pipes 11 are installed along the axis of the outer wall of the water storage tank 6. The bottom of the river pumping pipe 11 extends into the river water. A filter screen 17 is provided at the bottom water inlet of the river pumping pipe 11. A gas extraction pipe 18 is provided at the top of the river pumping pipe 11, and a valve 19 is provided inside the gas extraction pipe. A bent pipe 20 is provided on the middle side below the top of the river pumping pipe 11. A floating blade generator 21 is provided inside the bent pipe 20. A pull valve 1101 is provided at the joint of the bent pipe 20 and the river pumping pipe 11. A discharge inclined pipe 12 for draining water into the water storage tank 6 and the slope U-shaped water storage tank 10 respectively is provided at the connection between the front side of the pull valve 1101 and the bent pipe 20.
[0037] As a preferred implementation of this embodiment, booster blowing pipes 1004 are provided at the upper and lower ends of the side of the micro wind turbine generator 4 to make the micro wind turbine generator generate electricity at a stable speed.
[0038] As a preferred implementation of this embodiment, a pull valve 1101 is provided at the joint of the upper part of the river pumping pipe 11 and the bent pipe.
[0039] As a preferred implementation of this embodiment, a debris flushing air pipe 1001 is provided at the filter screen 17, and the air inlet of the pipe body of the debris flushing air pipe 1001 extends upward above the water surface.
[0040] As a preferred implementation of this embodiment, a plurality of river pumping pipes 11 are installed along the axis of the outer wall of the slope U-shaped water storage tank 10 around the outer wall. Its drainage inclined pipe 12 drains water into the slope U-shaped water storage tank 10. The flowing water of the pumped-up river water uses the slope to form a height difference of the water flow to generate water energy power for power generation.
[0041] As a preferred implementation of this embodiment, a plurality of river pumping pipes 11 are installed along the axis of the outer wall of the water storage tank 6, and its drainage inclined pipe 12 discharges river water into the water storage tank 6 to achieve the purpose of storing water energy.
[0042] As a preferred implementation of this embodiment, the inside of the slope U-shaped water storage tank 10 is separated into upper and lower areas by a water tank partition board 1002.
[0043] Preferably, in this embodiment, a plurality of circular ring grooves 1003 connected end to end are provided in the upper region 1002 inside the ramp U-shaped water storage tank 10, and a vane generator 14 is provided between the openings of adjacent circular ring grooves 1003.
[0044] Preferably, in this embodiment, the lower end of the round rod of the turbine generator 7 is connected to the turbine, the turbine generator 7 is installed in the round roof 16, the river water outlet of the round roof 16 is connected to the conical chamber 15, and the water outlet of the conical chamber 15 extends into the river water.
[0045] During the specific implementation of the device, a plurality of micro-wind turbines 4 are installed between adjacent support frames 3. Pressure-increasing blow pipes 1004 are provided on the upper and lower sides of the side of the micro-wind turbines 4. As the wind force changes, the pressure-increasing blow pipes 1004 synchronously increase or decrease the pressure, and the wind energy can be used for power generation.
[0046] A solar panel 5 is installed on the top of the uppermost support frame 3 for photovoltaic power generation.
[0047] At the same time, the device also has a water power generation function. A turbine generator 7 is provided near the bottom of the slope of the ramp U-shaped water storage tank 10. The lower end of the turbine generator 7 is provided with a round rod at the bottom of the round rod, which is connected to the round roof 16 equipped with a turbine. A conical chamber 15 is provided below the water outlet of the round roof 16. The bottom water outlet of the conical chamber 15 is connected to the pipe of the Archimedes water turbine generator 9. An Archimedes water turbine generator 8 is provided inside the pipe body of the Archimedes water turbine generator pipe 9. Together with the floating vane generator 21 in the elbow 20 of the river pumping pipe 11, together with the vane generator 14 at the circular ring groove 1003, together with the turbine generator 7, it fully utilizes the water energy for power generation.
[0048] With the combination of the photovoltaic panel, wind turbine and water turbine in this device, the impact on the power grid caused by the randomness of light and wind can be reduced. It can not only ensure the normal operation of the power grid, but also improve the stability of the system. At the same time, the combination of light, wind and water energy can efficiently collect clean energy while greatly reducing the floor area. It is an ideal green power generation device integrating wind power, water power and photovoltaic power.
[0049] The above describes the present invention and its implementation manners. This description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present invention, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments without creative work without departing from the spirit of the present invention, they shall fall within the protection scope of the present invention.
Claims
1. An integrated green power generation device, characterized in that: It includes a cement dam (1) arranged on the upper part of the river bank. A support column (2) is fixedly arranged on the upper part of the cement dam (1). A plurality of layers of support frames (3) are installed between the columns of the support column (2). A solar panel (5) is installed on the top of the uppermost support frame (3). A plurality of micro-wind turbines (4) are installed between adjacent support frames (3). At the upper end and the lower side of the side of the micro-wind turbine (4), there are pressure-boosting blow pipes (1004). As the wind force changes, the pressure-boosting blow pipes (1004) increase or decrease the pressure synchronously. The side wall of the column of the support column (2) is fixedly connected to a water storage tank (6). The water storage tank (6) is provided with a sloped U-shaped water storage trough (10) on the side close to the river bed. The bottom of the water storage tank (6) is communicated with the sloped U-shaped water storage trough (10) through a water storage tank delivery water pipe (13). A water trough partition plate (1002) is arranged in the sloped U-shaped water storage trough, dividing it into upper and lower areas. A turbine generator (7) is arranged at a position close to the bottom of the slope of the sloped U-shaped water storage trough (10). The bottom of the lower end of the turbine generator (7) is a round rod, which is connected to a round roof (16) equipped with a turbine. Below the water outlet of the round roof (16), there is a conical chamber (15). The bottom water outlet of the conical chamber (15) is connected to an Archimedes hydraulic generator water pipe (9). An Archimedes hydraulic generator (8) is arranged inside the pipe body of the Archimedes hydraulic generator water pipe (9). A plurality of river water extraction pipes (11) are installed on the outer side of the water storage tank (6) along the axis of the tank wall. The bottom of the river water extraction pipe (11) extends into the river water. A filter screen (17) is arranged at the water inlet of the river water extraction pipe (11). A suction pipe (18) is arranged at the top of the river water extraction pipe (11). A valve (19) is arranged inside the suction pipe (18). A bent pipe (20) is arranged on the middle side below the top of the river water extraction pipe (11). A floating vane generator (21) is arranged inside the bent pipe (20). A pull valve (1101) is arranged at the joint of the bent pipe (20) and the river water extraction pipe (11). A discharge inclined pipe (12) for draining water into the water storage tank (6) and the sloped U-shaped water storage trough (10) respectively is arranged at the connection between the front side of the pull valve (1101) and the bent pipe (20).
2. The integrated green power generation device according to claim 1, characterized in that: Pressure-boosting blow pipes (1004) are arranged at the upper end and the lower side of the side of the micro-wind turbine (4) to enable the micro-wind turbine (4) to generate electricity at a stable speed.
3. An integrated green power generation device according to claim 1, characterized in that: A pull valve (1101) is arranged at the joint of the bent pipe (20) and the river water extraction pipe (11) at the upper part of the river water extraction pipe (11).
4. An integrated green power generation device according to claim 2, characterized in that: An impurity flushing air pipe (1001) is arranged on the side of the filter screen (17). The air inlet of the pipe body of the impurity flushing air pipe (1001) extends upward above the water surface.
5. An integrated green power generation device according to claim 1, characterized in that: A plurality of river water extraction pipes (11) are installed along the outer wall of the sloped U-shaped water storage trough (10) along the axial direction of the outer wall of the sloped U-shaped water storage trough. Its drainage inclined pipe (12) drains water into the sloped U-shaped water storage trough (10). The flowing water of the pumped-up river water utilizes the height difference formed by the slope to generate water energy power for power generation.
6. The integrated green power generation device according to claim 1, characterized in that: A plurality of river pumping pipes (11) and their drainage inclined pipes are installed along the outer wall circumference axis of the water storage tank (6) to discharge river water into the water storage tank (6) to achieve the purpose of water storage.
7. An integrated green power generation device according to claim 1, wherein: The inside of the sloped U-shaped water storage tank (10) is partitioned into upper and lower areas by a water tank partition plate (1002).
8. An integrated green power generation device according to claim 1, characterized in that: A plurality of circular ring grooves (1003) connected end to end are provided in the upper area of the inside of the sloped U-shaped water storage tank (10) through the (1002), and a vane generator (14) is provided between the openings of adjacent circular ring grooves (1003).
9. An integrated green power generation device according to claim 1, characterized in that: The lower end of the round rod of the turbine generator (7) is connected to the turbine, the turbine generator (7) is installed in the round roof (16), the river water outlet of the round roof (16) is connected to the conical chamber (15), and the water outlet of the conical chamber (15) extends into the river water.