A towed hydroelectric power plant
Patent Information
- Application Number
- CN202521562444.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-07-25
AI Technical Summary
[0003]目前的发电设备通常投放在指定作业区域,浮船会随着水流流动,卡在河道处,影响正运行,打捞并不方便,维护较为麻烦,影响正常使用
本实用新型所述的一种拖曳式水力发电设备,将绳索套扣在手杆内,人工或者使用机械船顺流或者逆流拖拽浮船,可以根据水流的大小调节拖拽设备的角度,使得水流冲刷叶轮,并且不易出现卡塞的现象,便于及时进行调整和维护,有利于进行高效发电。
Smart Images

Figure CN224770351U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of generator technology, specifically to a towed hydroelectric power generation device. Background Technology
[0002] A generator is a mechanical device that converts other forms of energy into electrical energy. It is driven by a water turbine, steam turbine, diesel engine or other power machinery, which converts the energy generated by water flow, air flow, fuel combustion or nuclear fission into mechanical energy and then transmits it to the generator, which in turn converts it into electrical energy. Generators have a wide range of uses in industrial and agricultural production, national defense, science and technology and daily life.
[0003] Current power generation equipment is typically deployed in designated operating areas. Floating vessels can drift with the water flow, becoming stuck in the riverbed, disrupting operation, making salvage inconvenient, and causing maintenance difficulties, thus affecting normal use. Therefore, a towed hydroelectric power generation device is proposed to facilitate manual or mechanical towing of the floating vessel. The angle of the towing device can be adjusted according to the water flow, allowing the water to scour the impeller, improving power generation efficiency. Furthermore, it allows for convenient and timely adjustments and maintenance, making it easy to use. Utility Model Content
[0004] To address the problems in the existing technology, this utility model provides a towed hydroelectric power generation device that facilitates manual or mechanical towing of a floating vessel. The angle of the towing device can be adjusted according to the size of the water flow, allowing the water flow to scour the impeller, thereby improving power generation efficiency. It is also convenient for timely adjustment and maintenance, and easy to use.
[0005] The technical solution adopted by this utility model to solve its technical problem is a towed hydroelectric power generation device, including a floating boat, a control panel and a waterproof cable. A horizontal plate and a floating plate are respectively provided between the two sets of floating boats. A tie rod is installed on one side of the horizontal plate by bolts. A battery box is provided on the top of the horizontal plate. A float and a counterweight are respectively provided at the bottom of the two sets of floating boats. The bottom of the horizontal plate is bolted to the outer tube, the bottom of the outer tube is provided with a mesh filter tube, the inner walls of the outer tube are bolted to the generator, and the bottom of the generator is provided with an impeller.
[0006] Specifically, a connecting sleeve is fitted around the outer periphery of the pull rod, and one end of the connecting sleeve is connected to the handle by a screw.
[0007] Specifically, a protective box is installed on one side of the battery box with screws, and a control panel is provided inside the protective box. The power output port is installed on the top of the battery box through a reserved opening and bolts, and sealing strips are provided in the gaps at the connection points.
[0008] Specifically, the generator is provided with waterproof connectors at the top and bottom, and waterproof cables are provided inside the waterproof connectors. The top of the waterproof cables passes through a reserved opening on the surface of the horizontal plate and is electrically connected to the battery box through a wire.
[0009] Specifically, the waterproof cable is electrically connected to the generator via a conductor.
[0010] Specifically, the output terminal of the control panel and the input terminal of the battery box are electrically connected by wires.
[0011] The beneficial effects of this utility model are: The present invention describes a towed hydroelectric power generation device in which a rope is secured inside a hand rod, and a floating vessel is towed manually or by a mechanical boat with or against the current. The angle of the towing device can be adjusted according to the size of the water flow, so that the water flow can scour the impeller and prevent jamming. This facilitates timely adjustment and maintenance and is conducive to efficient power generation. The towed hydroelectric power generation device described in this utility model can improve the buoyancy of the floating vessel to a certain extent by setting up floats and counterweights, so that the device can maintain a certain balance on the water surface, have high stability, and prevent the device from capsizing and sinking into the water. By setting up a mesh filter pipe, larger debris or algae can be blocked and prevented from being rolled into the surface of the impeller. Attached Figure Description
[0012] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0013] Figure 1 This is a schematic diagram of the overall design of this utility model; Figure 2 This is a schematic diagram of the floating vessel of this utility model; Figure 3 This is a schematic diagram of the outer tube of this utility model; In the diagram: 1. Float; 2. Horizontal plate; 3. Tie rod; 4. Connecting sleeve; 5. Hand rod; 6. Float; 7. Battery box; 8. Protective box; 9. Control panel; 10. Power output port; 11. Tightening bolt; 12. Float; 13. Counterweight; 14. Outer tube; 15. Mesh filter tube; 16. Waterproof cable; 17. Waterproof connector; 18. Generator; 19. Impeller. Detailed Implementation
[0014] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0015] To facilitate manual or mechanical towing of the floating vessel, the angle of the towing equipment is adjusted according to the water flow, allowing the water to scour the impeller, improving power generation efficiency, and facilitating timely adjustments and maintenance. It is also easy to use. Figure 1-3 As shown, the towed hydroelectric power generation device of this utility model includes a floating boat 1, a control panel 9 and a waterproof cable 16. A horizontal plate 2 and a floating plate 6 are respectively provided between the two sets of floating boats 1. A tie rod 3 is installed on one side of the horizontal plate 2 by bolts. A battery box 7 is provided on the top of the horizontal plate 2. A float 12 and a counterweight 13 are respectively provided at the bottom of the two sets of floating boats 1. The bottom of the horizontal plate 2 is bolted to the outer tube 14, the bottom of the outer tube 14 is provided with a mesh filter tube 15, the inner walls of the outer tube 14 are bolted to the generator 18, and the bottom of the generator 18 is provided with an impeller 19.
[0016] When in use, the floating boat 1 is placed in a suitable water surface position. The buoyancy of the floating boat 1 can be increased to a certain extent by the set float 12 and counterweight 13, so that the equipment can maintain a certain balance on the water surface and has high stability. Then, the rope is secured to the hand rod 5, and the floating vessel 1 is towed manually or by a mechanical boat with or against the current, so that the water flow washes the impeller 19 to complete the power generation operation. The impeller 19 is positioned parallel to the mesh filter tube 15. When the outer tube 14 is submerged in water, the mesh filter tube 15 can block larger debris or algae, preventing them from being rolled into the surface of the impeller 19. When the water flows through the mesh of the mesh filter tube 15 and comes into contact with the impeller 19, the water flow drives the impeller 19 to rotate. The rotation of the impeller 19 causes the generator 18 to generate electricity, converting mechanical energy into electrical energy. The generated electricity is input into the battery box 7 via the waterproof cable 16 for storage. When people need electricity, they can connect the power output port 10 and output it to the external power supply equipment through the control panel 9.
[0017] For ease of dragging and dropping, for example, such as Figure 1 , Figure 2 As shown, the present invention also includes a connecting sleeve 4 sleeved around the outer periphery of the pull rod 3, and one end of the connecting sleeve 4 is connected to the handle 5 by a screw.
[0018] When in use, the operator can attach a rope to the handle 5 and manually or mechanically drag the floating vessel 1 with or against the current, so that the water flow washes the impeller 19 to complete the power generation operation.
[0019] For example, such as Figure 1 , Figure 2 As shown, the present invention also includes a protective box 8 installed on one side of the battery box 7 by screws, a control panel 9 inside the protective box 8, and a power output port 10 installed on the top of the battery box 7 by a reserved opening and bolts, and sealing strips are provided in the gaps at the connection points.
[0020] When in use, the protective box 8 can prevent water from washing over the control panel 9, thus avoiding damage.
[0021] For example, such as Figure 1 , Figure 3 As shown, the present invention also includes waterproof connectors 17 at the top and bottom of the generator 18, waterproof cables 16 inside the waterproof connectors 17, and the top of the waterproof cables 16 passing through a reserved opening on the surface of the horizontal plate 2 and forming an electrical connection with the battery box 7 through a wire.
[0022] For example, such as Figure 3 As shown, the present invention also includes an electrical connection between the waterproof cable 16 and the generator 18 via a conductor.
[0023] When in use, when the water flows into contact with the impeller 19, the water flows and drives the impeller 19 to rotate. The rotation of the impeller 19 causes the generator 18 to generate electricity, which is then input into the battery box 7 for storage via the waterproof cable 16.
[0024] For example, such as Figure 1 As shown, this utility model also includes an electrical connection between the output terminal of the control panel 9 and the input terminal of the battery box 7 via wires.
[0025] When in use, the mechanical energy generated by the rotation of the impeller 19 is input into the generator 18 and then converted into electrical energy. When people need electricity, they can connect the power output port 10 and output it to the external power supply equipment through the control panel 9.
[0026] When this utility model is in use, the floating boat 1 is placed at a suitable water surface position. The buoyancy of the floating boat 1 can be increased to a certain extent by the set float 12 and counterweight 13, so that the equipment maintains a certain balance on the water surface and has high stability. The rope is secured to the hand rod 5, and the floating vessel 1 is towed manually or by a mechanical boat with or against the current. The angle of the towing equipment can be adjusted according to the size of the water flow, so that the water flow can scour the impeller 19 and prevent jamming. This facilitates timely adjustment and maintenance, and is conducive to efficient power generation.
[0027] The impeller 19 is positioned parallel to the mesh filter tube 15. When the outer tube 14 is submerged in water, the mesh filter tube 15 can block larger debris or algae, preventing them from being rolled into the surface of the impeller 19. When the water flows through the mesh of the mesh filter tube 15 and comes into contact with the impeller 19, the water flow drives the impeller 19 to rotate. The rotation of the impeller 19 causes the generator 18 to generate electricity, converting mechanical energy into electrical energy. The generated electricity is input into the battery box 7 via the waterproof cable 16 for storage. When people need electricity, they can connect the power output port 10 and output it to the external power supply equipment through the control panel 9.
[0028] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A towed hydroelectric power generation device, characterized in that, Includes a floating boat (1), a control panel (9) and a waterproof cable (16). A horizontal plate (2) and a floating plate (6) are respectively provided between the two sets of floating boats (1). A tie rod (3) is installed on one side of the horizontal plate (2) by bolts. A battery box (7) is provided on the top of the horizontal plate (2). A float (12) and a counterweight (13) are respectively provided at the bottom of the two sets of floating boats (1). The bottom of the horizontal plate (2) is fitted with an outer tube (14) by bolts. The bottom of the outer tube (14) is provided with a mesh filter tube (15). The inner walls of the outer tube (14) are connected to the generator (18) by bolts on both sides. The bottom of the generator (18) is provided with an impeller (19).
2. The towed hydroelectric power generation device according to claim 1, characterized in that, A connecting sleeve (4) is fitted around the outer periphery of the pull rod (3), and one end of the connecting sleeve (4) is connected to the hand rod (5) by a screw.
3. The towed hydroelectric power generation device according to claim 1, characterized in that, The battery box (7) is fitted with a protective box (8) by screws on one side. The protective box (8) is equipped with a control panel (9). The battery box (7) is fitted with a power output port (10) by a reserved opening and bolts on the top. Sealing strips are provided in the gaps at the connection points.
4. A towed hydroelectric power generation device according to claim 1, characterized in that, The generator (18) is provided with waterproof connectors (17) at the top and bottom respectively. A waterproof cable (16) is provided inside the waterproof connector (17). The top of the waterproof cable (16) passes through the reserved opening on the surface of the horizontal plate (2) and is electrically connected to the battery box (7) through a wire.
5. A towed hydroelectric power generation device according to claim 1, characterized in that, The waterproof cable (16) and the generator (18) are electrically connected by a conductor.
6. A towed hydroelectric power generation device according to claim 1, characterized in that, The output terminal of the control panel (9) and the input terminal of the battery box (7) are electrically connected by wires.