Maritime work wave wall with warning and lighting functions
By installing anti-interference lighting components on the wave-breaking wall, and utilizing adsorption and cleaning components, the problem of insects swarming and affecting the light was solved, achieving an effective lighting warning effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CCCC GUANGZHOU DREDGING CO LTD
- Filing Date
- 2026-01-21
- Publication Date
- 2026-04-21
AI Technical Summary
The area in front of the existing warning lights on the wave-breaking wall tends to swarm with insects, which obstructs the spread of light and results in poor warning illumination.
An anti-interference lighting component was designed, including a light source component, an outer cover, an electric grid, a lens, an adsorption component, and a cleaning component. The adsorption component attracts insects to the electric grid, and the cleaning component removes the insect corpses to maintain the continuous operation of the electric grid.
This effectively reduces the obstruction of light by insects, ensuring that the light source components can better provide illumination and warning, and keeps the power grid clean, thus avoiding the impact of insects on the light.
Smart Images

Figure CN121896933A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of wave barrier technology, and specifically relates to a marine wave barrier with warning lighting function. Background Technology
[0002] A wave wall is a water-retaining wall installed to prevent waves from overturning the top of the dam. A stable, sturdy, and leak-proof wave wall can appropriately reduce the dam's freeboard and save on dam construction work.
[0003] The existing wave-breaking walls are equipped with warning lights, but in actual use, a large number of light-loving insects gather in the area in front of the warning lights, which greatly affects the propagation of the light and the effectiveness of the warning lights.
[0004] Therefore, it is necessary to invent a marine wave barrier with warning lighting function to solve the above problems. Summary of the Invention
[0005] To address the aforementioned problems, this invention provides a marine wave barrier with warning lighting function, thereby resolving the issues raised in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: A marine wave barrier with warning lighting function includes: a wall body, with mounting frames equidistantly arranged on the top of the wall body, and anti-interference lighting components provided on the mounting frames, which can reduce the impact of insects on the lighting during illumination; The anti-interference lighting component includes: a light source component, an outer cover, an electric grid, a lens, an adsorption component, and a cleaning component; The light source assembly is connected to the mounting bracket via a first bracket. The outer cover is disposed outside the light source assembly. The electric grid is disposed inside the outer cover. The lens is disposed inside the outer cover. The adsorption assembly is disposed on the outer cover for attracting insects to the electric grid. The cleaning assembly is disposed outside the outer cover for cleaning insect carcasses located on the electric grid.
[0007] Furthermore, the adsorption assembly includes: a first cavity, a second cavity, a channel, a connecting pipe, and a vacuum pump; The first cavity is located inside the outer cover, and the inner side of the outer cover is provided with a plurality of suction holes communicating with the first cavity. The second cavity is located inside the outer cover, and the channel is arranged around the outer cover, connecting the second cavity and the first cavity. One end of the connecting pipe is connected to the second cavity, and the extraction end of the air pump is connected to one end of the plurality of connecting pipes.
[0008] Furthermore, the cleaning assembly includes: a slide bar, a first spring, a first closed structure, a ring frame, a second closed structure, and a pulling assembly; The ring frame is connected to the mounting bracket via a second support. The ring frame has equidistant sliding cavities arranged around its interior. A sliding rod is slidably disposed within each sliding cavity, with one end extending outside the cavity and fixedly connected to the outer cover. A first spring connects one end of the sliding rod to the inner wall of the sliding cavity. A first sealing structure connects the outer cover to the ring frame. A second sealing structure connects the light source assembly to the ring frame. A pulling component is disposed on the ring frame and is used to pull the outer cover towards the ring frame.
[0009] Furthermore, the pulling assembly includes: an iron plate and an electromagnet; The iron plate is fixedly installed on the outer cover, and the electromagnet is fixedly installed on the ring frame.
[0010] Furthermore, a ring tube is fixedly installed on the inner side of the outer cover, and an air inlet is provided around the upper outer side of the ring tube. An air injection component is provided on the ring frame to inject airflow into the ring tube, and the position of the air inlet corresponds to the position of the first sealing structure.
[0011] Furthermore, the air injection assembly includes: a cylinder, an air pipe, and an extrusion assembly; The cylinder is fixedly installed on the inner side of the ring frame, the air pipe connects the ring pipe to the cylinder, and the extrusion assembly is disposed on the cylinder to expel the air inside the cylinder outward.
[0012] Furthermore, the extrusion assembly includes: a stopper plate, a second spring, and a push rod; The plug plate is disposed in the cylinder body, and the second spring connects the side of the plug plate away from the annular tube to the inner wall of the cylinder body. The push rod is fixedly installed on the side of the plug plate close to the annular tube, and one end of the push rod extends out of the cylinder body and abuts against the annular tube.
[0013] Furthermore, both the trachea and the connecting tube are telescopic flexible hoses.
[0014] Furthermore, both the first and second closed structures are configured as ring-shaped components made of rubber.
[0015] Furthermore, the slide rod has a T-shaped cross-section, and one side of the slide rod abuts against the inner wall of the sliding cavity.
[0016] The technical effects and advantages of this invention are as follows: 1. This invention, through the cooperation of the outer casing and the electric grid, can remove insects clustered near the light source component, thereby reducing the number of insects and greatly reducing the degree of insect obstruction of light, so that the light source component can better provide illumination and warning, and can also achieve vibration of the outer casing to clean the electric grid, so as to ensure that the electric grid can continue to work. 2. By supporting the first closed structure, the present invention prevents the first closed structure from getting stuck between the outer cover and the ring frame, thus avoiding the first closed structure from hindering the movement of the outer cover and thus avoiding affecting the cleaning effect on the power grid. Attached Figure Description
[0017] Figure 1 A schematic diagram of the structure of a marine wave-breaking wall with warning lighting function according to an embodiment of the present invention is shown; Figure 2 A schematic diagram of the anti-interference lighting assembly according to an embodiment of the present invention is shown; Figure 3 A cross-sectional view of an anti-interference lighting assembly according to an embodiment of the present invention is shown. Figure 4 An embodiment of the present invention is shown. Figure 3 Enlarged structural diagram at point A in the middle; Figure 5 A schematic diagram of the structure of the outer cover according to an embodiment of the present invention is shown. Figure 1 ; Figure 6 A schematic diagram of the structure of the outer cover according to an embodiment of the present invention is shown. Figure 2 ; In the diagram: 1. Wall; 2. Mounting bracket; 3. Light source assembly; 4. Outer cover; 5. Electric grid; 6. Lens; 7. First cavity; 8. Second cavity; 9. Connecting pipe; 10. Slide rod; 11. First spring; 12. First enclosed structure; 13. Iron plate; 14. Electromagnet; 15. Second enclosed structure; 16. Ring pipe; 17. Air inlet; 18. Cylinder; 19. Air pipe; 20. Plug plate; 21. Second spring; 22. Push rod; 23. Ring frame. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0019] This invention provides a marine wave barrier with warning lighting function, such as... Figures 1 to 6 As shown, it includes: a wall 1, with mounting brackets 2 equidistantly arranged on the top of the wall 1. The wall 1 is a wave-blocking wall, and the mounting brackets 2 are equipped with anti-interference lighting components. The anti-interference lighting components can reduce the impact of insects on the lighting during lighting. The anti-interference lighting components include: light source component 3, outer cover 4, electric grid 5, lens 6, adsorption component, and cleaning component; The light source assembly 3 is connected to the mounting bracket 2 via the first bracket, which is a ball-head camera mounting bracket in the prior art. The light source assembly 3 is a spotlight in the prior art that can provide illumination. The outer cover 4 is set outside the light source assembly 3. The electric grid 5 is set inside the outer cover 4. The electric grid 5 is the same as the electric grid on the electric mosquito swatter in the prior art. The lens 6 is set inside the outer cover 4. The adsorption assembly is set on the outer cover 4 and is used to attract insects to the electric grid 5. The cleaning assembly is set outside the outer cover 4 and is used to clean the insect corpses located on the electric grid 5.
[0020] In use, the light source component 3 emits light for warning illumination. When insects gather near the light source component 3, the adsorption component attracts the insects to the electric grid 5, and the electric grid 5 is activated, causing the insects to be adsorbed onto the electric grid 5 and removed by it. The cleaning component can clean up the dead insects on the electric grid 5, ensuring that the electric grid 5 can continue to work. By cleaning the insects near the light source component 3, the number of insects is reduced, greatly reducing the degree to which insects block the light, allowing the light source component 3 to provide better illumination and warning.
[0021] like Figures 3 to 4 As shown, the adsorption assembly includes: a first cavity 7, a second cavity 8, a channel, a connecting pipe 9, and a vacuum pump (not shown in the figure). The first cavity 7 is located inside the outer cover 4. Multiple suction holes communicating with the first cavity 7 are opened on the inner side of the outer cover 4. The second cavity 8 is located inside the outer cover 4. A channel is arranged around the outer cover 4, and the channel connects the second cavity 8 and the first cavity 7. One end of the connecting pipe 9 is connected to the second cavity 8. The extraction end of the air pump is connected to one end of multiple connecting pipes 9. Specifically, the extraction end of the air pump is connected to one end of multiple connecting pipes 9 through a diverter pipe.
[0022] Start the air pump to work with the connecting pipe 9 to draw air out of the outside through the grid 5, suction hole, first cavity 7, channel, second cavity 8 and connecting pipe 9, so that an adsorption force is generated at the grid 5, thereby attracting insects to the grid 5.
[0023] like Figures 3 to 4 As shown, the cleaning assembly includes: a slide bar 10, a first spring 11, a first enclosed structure 12, a ring frame 23, a second enclosed structure 15, and a pulling assembly; The ring frame 23 is connected to the mounting bracket 2 via a second bracket, which is an adjustable spotlight bracket in the prior art. The ring frame 23 has equidistant sliding cavities arranged around its interior. A sliding rod 10 is slidably disposed within each sliding cavity, with one end extending outside the cavity and fixedly connected to the outer cover 4. A first spring 11 connects one end of the sliding rod 10 to the inner wall of the sliding cavity. A first sealing structure 12 connects the outer cover 4 to the ring frame 23, and a second sealing structure 15 connects the light source assembly 3 to the ring frame 23. A pulling component is mounted on the ring frame 23 to pull the outer cover 4 towards the ring frame 23. The first sealing structure 12 seals the gap between the outer cover 4 and the ring frame 23, preventing external moisture from entering and damaging the light source assembly 3. The second sealing structure 15 also seals the gap between the ring frame 23 and the light source assembly 3, preventing external moisture from entering and damaging the light source assembly 3.
[0024] The outer cover 4 is pulled by the pulling component to move closer to the ring frame 23. The outer cover 4, along with the slide rod 10, moves and compresses the first spring 11. The pulling component is then released from its pulling position on the outer cover 4. The first spring 11 returns to its original position, and the slide rod 10 and the outer cover 4 quickly return to their original positions. The slide rod 10 vibrates when it hits the inner wall of the sliding cavity, and the vibration is transmitted to the outer cover 4. This vibrates the insect carcasses on the electric grid 5 inside the outer cover 4 and shakes them off to the outside. The opening diameter on the side of the outer cover 4 closest to the lens 6 is smaller than the opening diameter on the side furthest from the lens 6. The shape of the electric grid 5 is adapted to the outer cover 4, allowing the insect carcasses to slide outward along the electric grid 5 and thus leave the electric grid 5. By separating the light source assembly 3 from the outer casing 4, vibration can be prevented from being transmitted to the light source assembly 3, thereby protecting the light source assembly 3.
[0025] like Figure 4 As shown, the pulling assembly includes: iron plate 13 and electromagnet 14; The iron plate 13 is fixedly installed on the outer cover 4, and the electromagnet 14 is fixedly installed on the ring frame 23.
[0026] When the electromagnet 14 is energized, it becomes magnetic, thereby attracting the iron plate 13 and the outer cover 4 to move towards the ring frame 23, thus driving the outer cover 4.
[0027] like Figure 4 As shown, an annular tube 16 is fixedly installed on the inner side of the outer cover 4. An air inlet 17 is provided around the upper outer side of the annular tube 16. The air inlet 17 is distributed in the upper middle area of the annular tube 16. An air injection component that can inject airflow into the annular tube 16 is provided on the ring frame 23. The position of the air inlet 17 corresponds to the position of the first closed structure 12.
[0028] With prolonged use, external dust particles accumulate above the first enclosed structure 12, causing it to be pressed down and fall. This causes the top part of the first enclosed structure 12 to enter between the outer cover 4 and the ring frame 23, thereby hindering the movement of the outer cover 4 and affecting the vibration effect of the outer cover 4, thus affecting the cleaning effect on the power grid 5. Therefore, when the outer cover 4 moves toward the ring frame 23, the outer cover 4 moves along with the ring tube 16. In conjunction with the air injection component, airflow is injected into the ring tube 16. The airflow is blown out through the air outlet 17, which supports the first sealing structure 12, so that the first sealing structure 12 will not get stuck between the outer cover 4 and the ring frame 23. This avoids the first sealing structure 12 from hindering the movement of the outer cover 4, thereby avoiding affecting the cleaning effect on the power grid 5.
[0029] like Figure 4 As shown, the air injection assembly includes: cylinder 18, air pipe 19, and extrusion assembly; The cylinder body 18 is fixedly installed on the inner side of the ring frame 23. The air pipe 19 connects the ring pipe 16 to the cylinder body 18. The extrusion assembly is set on the cylinder body 18 and is used to extrude the air in the cylinder body 18 to the outside. The extrusion assembly includes: a plug plate 20, a second spring 21, and a push rod 22. The plug plate 20 is set inside the cylinder body 18. The second spring 21 connects the side of the plug plate 20 away from the annular tube 16 to the inner wall of the cylinder body 18. The push rod 22 is fixedly installed on the side of the plug plate 20 near the annular tube 16. One end of the push rod 22 extends to the outside of the cylinder body 18 and abuts against the annular tube 16. The cylinder body 18 is set as annular, and multiple air pipes 19 are provided.
[0030] When the outer cover 4 moves towards the ring frame 23 with the ring tube 16, the ring tube 16 squeezes the push rod 22, causing the push plate 20 to move accordingly. The push plate 20 compresses the second spring 21. As the push plate 20 moves, it squeezes the air in the cylinder 18 outward. The air enters the ring tube 16 through the air pipe 19. The air is blown through the air outlet 17 to the first closed structure 12 to support it. When the outer cover 4 returns to its original position, the second spring 21 returns to its original position and pushes the push plate 20 to its original position. Conversely, the outside air is drawn back into the cylinder 18.
[0031] Both the trachea 19 and the connecting pipe 9 are telescopic hoses, which allow the trachea 19 and the connecting pipe 9 to be stretched and deformed to meet the requirements of use.
[0032] like Figure 4 As shown, both the first closed structure 12 and the second closed structure 15 are configured as ring-shaped components made of rubber.
[0033] This allows the first closed structure 12 and the second closed structure 15 to deform to meet the requirements of use.
[0034] like Figure 4As shown, the cross-sectional shape of the slide rod 10 is T-shaped, and one side of the slide rod 10 abuts against the inner wall of the slide cavity.
[0035] This allows the slide rod 10 to collide with the inner wall of the slide cavity and generate vibration when it is reset.
[0036] Working principle: In use, the light source assembly 3 emits a light source for warning illumination. When insects swarm near the light source assembly 3, the air pump is activated to work with the connecting pipe 9 to draw air out, causing outside air to be drawn out through the grid 5, suction hole, first cavity 7, channel, second cavity 8, and connecting pipe 9. This creates an adsorption force at the grid 5, attracting insects to it. The electromagnet 14 is energized, making it magnetic, which attracts the iron plate 13, carrying the outer cover 4, towards the ring frame 23. The outer cover 4, along with the sliding rod 10, moves and compresses the first spring 11. When the outer cover 4 can no longer move, the air pump and grid 5 are turned off, and the insect attraction ceases. Then, the electromagnet 14 is de-energized to demagnetize it. The first spring 11 resets, causing the slide rod 10 and outer cover 4 to quickly reset. The slide rod 10 vibrates by colliding with the inner wall of the sliding cavity, which is transmitted to the outer cover 4. This vibrates the insect carcasses on the electric grid 5 inside the outer cover 4 and shakes them off to the outside. After the outer cover 4 resets, the air pump and electric grid 5 are turned on again, and the above operation is repeated. This can remove insects and clean the electric grid 5. By cleaning the electric grid 5, the electric grid 5 can continue to work. By cleaning the insects near the light source component 3, the number of insects can be reduced, greatly reducing the degree of insect obstruction of light, so that the light source component 3 can better provide illumination and warning. With prolonged use, external dust particles accumulate above the first enclosed structure 12, causing it to be pressed down and fall. This causes the top part of the first enclosed structure 12 to enter between the outer cover 4 and the ring frame 23, thereby hindering the movement of the outer cover 4 and affecting the vibration effect of the outer cover 4, thus affecting the cleaning effect on the power grid 5. Therefore, when the outer cover 4 moves towards the ring frame 23, the outer cover 4 moves along with the ring tube 16. The ring tube 16 squeezes the push rod 22, causing the plug plate 20 to move along with it. The plug plate 20 compresses the second spring 21. As the plug plate 20 moves, it forces the air in the cylinder 18 outward. The air enters the ring tube 16 through the air pipe 19 and is blown through the air outlet 17 to support the first sealing structure 12. When the outer cover 4 returns to its original position, the second spring 21 returns to its original position and pushes the plug plate 20 back to its original position. Conversely, the outside air is drawn back into the cylinder 18. By supporting the first sealing structure 12, the first sealing structure 12 will not get stuck between the outer cover 4 and the ring frame 23, thus preventing the first sealing structure 12 from obstructing the movement of the outer cover 4 and thus avoiding affecting the cleaning effect on the power grid 5.
[0037] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it.
Claims
1. A marine wave barrier with warning lighting function, characterized in that, include: A wall (1) is provided with mounting brackets (2) at equal intervals on the top of the wall (1). The mounting brackets (2) are provided with anti-interference lighting components. The anti-interference lighting components can reduce the impact of insects on the lighting when lighting. The anti-interference lighting components include: a light source component (3), an outer cover (4), an electric grid (5), a lens (6), an adsorption component, and a cleaning component. The light source component (3) is connected to the mounting bracket (2) through a first bracket. The outer cover (4) is set outside the light source component (3). The electric grid (5) is set inside the outer cover (4). The lens (6) is set inside the outer cover (4). The adsorption component is set on the outer cover (4) and is used to attract insects to the electric grid (5). The cleaning component is set outside the outer cover (4) and is used to clean the insect corpses located on the electric grid (5).
2. The marine wave-breaking wall with warning lighting function according to claim 1, characterized in that: The adsorption assembly includes: a first cavity (7), a second cavity (8), a channel, a connecting pipe (9), and a vacuum pump; the first cavity (7) is disposed inside the outer cover (4), and the inner side of the outer cover (4) is provided with a plurality of suction holes communicating with the first cavity (7); the second cavity (8) is disposed inside the outer cover (4); the channel is disposed around the outer cover (4); the channel connects the second cavity (8) and the first cavity (7); one end of the connecting pipe (9) is connected to the second cavity (8); and the extraction end of the vacuum pump is connected to one end of the plurality of connecting pipes (9).
3. The marine wave-breaking wall with warning lighting function according to claim 2, characterized in that: The cleaning assembly includes: a slide rod (10), a first spring (11), a first closed structure (12), a ring frame (23), a second closed structure (15), and a pulling assembly; the ring frame (23) is connected to the mounting frame (2) through a second bracket, and the ring frame (23) is provided with equidistant sliding cavities inside. The slide rod (10) is slidably disposed in the sliding cavity, and one end of the slide rod (10) extends to the outside of the sliding cavity and is fixedly connected to the outer cover (4). The first spring (11) connects one end of the slide rod (10) to the inner wall of the sliding cavity. The first closed structure (12) connects the outer cover (4) and the ring frame (23). The second closed structure (15) connects the light source assembly (3) and the ring frame (23). The pulling assembly is disposed on the ring frame (23) and is used to pull the outer cover (4) to move it closer to the ring frame (23).
4. The marine wave-breaking wall with warning lighting function according to claim 3, characterized in that: The pulling assembly includes: an iron plate (13) and an electromagnet (14); the iron plate (13) is fixedly installed on the outer cover (4), and the electromagnet (14) is fixedly installed on the ring frame (23).
5. The marine wave-breaking wall with warning lighting function according to claim 4, characterized in that: An annular tube (16) is fixedly installed on the inner side of the outer cover (4). An air inlet (17) is provided around the upper outer side of the annular tube (16). An air injection component that can inject airflow into the annular tube (16) is provided on the ring frame (23). The position of the air inlet (17) corresponds to the position of the first closed structure (12).
6. The marine wave-breaking wall with warning lighting function according to claim 5, characterized in that: The air injection assembly includes: a cylinder (18), an air pipe (19), and an extrusion assembly; the cylinder (18) is fixedly installed on the inner side of the ring frame (23), the air pipe (19) connects the ring pipe (16) to the cylinder (18), and the extrusion assembly is disposed on the cylinder (18) for extruding the air in the cylinder (18) outward.
7. The marine wave-breaking wall with warning lighting function according to claim 6, characterized in that: The extrusion assembly includes: a stopper plate (20), a second spring (21), and a push rod (22); the stopper plate (20) is disposed inside the cylinder (18), the second spring (21) connects the side of the stopper plate (20) away from the annular tube (16) to the inner wall of the cylinder (18), the push rod (22) is fixedly installed on the side of the stopper plate (20) close to the annular tube (16), and one end of the push rod (22) extends to the outside of the cylinder (18) and abuts against the annular tube (16).
8. The marine wave-breaking wall with warning lighting function according to claim 7, characterized in that: Both the air tube (19) and the connecting tube (9) are telescopic flexible tubes.
9. The marine wave-breaking wall with warning lighting function according to claim 8, characterized in that: Both the first closed structure (12) and the second closed structure (15) are configured as ring-shaped components made of rubber.
10. The marine wave-breaking wall with warning lighting function according to claim 9, characterized in that: The slide rod (10) has a T-shaped cross-section, and one side of the slide rod (10) abuts against the inner wall of the sliding cavity.