Wave wall structure with lighting function
By installing colored concrete slabs and lighting components on the wave-breaking wall, the problem of the lack of lighting on the wave-breaking wall has been solved, nighttime lighting and aesthetic improvement have been achieved, and the function and safety of the wave-breaking wall have been enhanced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- POWERCHINA HUADONG ENG CORP LTD
- Filing Date
- 2025-04-23
- Publication Date
- 2026-05-01
AI Technical Summary
The existing seawall lacks lighting, which affects nighttime safety and aesthetic appeal, and its function is limited.
Colored concrete panels and lighting components are installed on the main body of the wave-breaking wall. Lighting functions are provided by light holes and lighting components, and the aesthetics are enhanced by optical fibers and LED light sources. The colored concrete panels are conveniently installed using fixing components.
The project enabled nighttime lighting for the breakwater, improving its safety and aesthetics, and enhancing its functional versatility and social value.
Smart Images

Figure CN224186672U_ABST
Abstract
Description
wave wall structure with lighting function Technical Field
[0001] This utility model relates to the field of wave-breaking wall technology, and in particular to a wave-breaking wall structure with lighting function. Background Technology
[0002] A wave wall is a wall installed at the water-retaining edge of a dam crest to prevent waves from overrunning it. It is commonly used in reservoirs, rivers, and dams, serving to prevent waves, control floods, and impede water flow. A stable, sturdy, and leak-proof wave wall can appropriately reduce the dam's freeboard, saving on dam construction work. The height of a wave wall is generally 1.2 meters, ideally not obstructing the view. Wave walls for earth-rock dams can be constructed using concrete, reinforced concrete, precast reinforced concrete columns with precast concrete slabs, or masonry structures.
[0003] Currently, most seawalls serve a single function of wave protection, focusing on physical protective performance while giving little consideration to additional functions such as lighting. For seawalls located in public areas, the lack of lighting at night can cause numerous inconveniences, affecting not only pedestrian safety but also posing challenges to rescue operations in emergencies. Furthermore, most seawalls are monotonous in color and style, lacking aesthetic appeal. Summary of the Invention
[0004] The technical problem to be solved by this utility model is to provide a wave-breaking wall structure with lighting function in view of the above-mentioned problems.
[0005] The technical solution adopted by this utility model is: a wave-breaking wall structure with lighting function, comprising:
[0006] The body of the anti-wave wall;
[0007] Colored concrete slabs are installed on top of the wave-breaking wall body, and multiple sets of light holes are reserved on the wave-facing side of the colored concrete slabs.
[0008] Fixing components, located on the inner and outer sides of the breakwater body, are used to install the colored concrete panels on the top of the breakwater body.
[0009] Lighting components are located on the inner and outer sides of the breakwater body, with some corresponding to the light holes, and are used to illuminate the perimeter of the breakwater body.
[0010] Through the above-mentioned technical means, in terms of lighting, the lighting components can illuminate the perimeter of the wave-breaking wall body through the light holes on the wall body, meeting the lighting needs of the perimeter area of the wave-breaking wall. The colored concrete panels can also be installed on the top of the wave-breaking wall body using fixing components, which can also improve the aesthetics of the wave-breaking wall to a certain extent.
[0011] In some embodiments, the lighting assembly includes lamps and a power supply assembly. The wave-facing surface of the wave-breaking wall body is equipped with lamps that correspond to the lamp holes along the extension direction. Each lamp is connected to a power supply assembly, which supplies power to the lamps.
[0012] In some embodiments, the lighting assembly further includes optical fibers, couplers, and LED light sources. The back surface of the wave-breaking wall body is equipped with an LED light source, and the back surface of the colored concrete slab is provided with multiple light-transmitting holes. Optical fibers are embedded in the light-transmitting holes. The LED light source is connected to the power supply assembly, and the LED light source guides light into the optical fibers through the coupler.
[0013] In some embodiments, the light-transmitting holes are distributed in a geometric pattern.
[0014] In some embodiments, the fixing assembly includes a mounting base and a locking element. Mounting bases are provided on both the inner and outer sides of the wave-breaking wall body, and the colored concrete slab is mounted on the mounting base via the locking element.
[0015] In some embodiments, the mounting base includes a fixing rod, a mounting plate, and fixing bolts. The fixing rod is connected to the mounting plate at both ends. The inner and outer sides of the wave-breaking wall body are provided with multiple sets of drilled holes along its own extension direction. The mounting plate is provided with fixing holes corresponding to the drilled holes. The fixing bolts pass through the fixing holes and the drilled holes to install the mounting plate on the wall of the wave-breaking wall body. Each set of drilled holes corresponds to a single set of mounting bases, so that multiple sets of mounting bases are arranged along the extension direction of the wave-breaking wall body.
[0016] In some embodiments, the locking element includes an anchor rod, a threaded rod, a hexagonal nut, and a fixing nut. The mounting base has a circular hole, and the colored concrete slab has a mounting hole corresponding to the circular hole. An anchor rod passes through the circular hole and the mounting hole. A threaded rod is movably inserted inside the anchor rod. A snap-fit component that can slide relative to the anchor rod is threadedly connected to the outer wall of the threaded rod. A hexagonal nut is provided at the end of the threaded rod that protrudes from the anchor rod. A threaded groove is formed on the outer wall of the anchor rod. The fixing nut can be threadedly engaged with the threaded groove. The hexagonal nut drives the threaded rod to rotate, causing the snap-fit component to slide to the outside of the anchor rod to abut against one side of the mounting base. The fixing nut can fix the colored concrete slab to the other side of the mounting base.
[0017] In some embodiments, the snap-fit component includes a collar and a fixing claw. The outer wall of the anchor rod is provided with a groove arranged axially. Multiple grooves are arranged circumferentially along the outer wall of the anchor rod. Fixing claws are slidably embedded in each groove. The outer wall of the threaded rod is threadedly connected to a collar. The periphery of the collar is correspondingly snapped with multiple fixing claws, and the collar and multiple fixing claws are slidably connected axially, so that when the collar moves along the threaded rod, it can push the fixing claws out of the anchor rod along the groove.
[0018] In some embodiments, the wave-facing surface of the wave-breaking wall body is provided with a concrete pad layer that can abut against the bottom of the colored concrete slab, and the bottom of the wave-breaking wall body is provided with a base plate.
[0019] The beneficial effects of this utility model are:
[0020] 1. By installing lighting components on both the inner and outer sides of the breakwater, which illuminate the surrounding area at night through light holes in the colored concrete slab, the breakwater provides basic protection while increasing the safety of its perimeter. The introduction of lighting and artistic design elements enhances the breakwater's functional versatility, visual appeal, and social value.
[0021] 2. By embedding optical fibers in colored concrete slabs and arranging the optical fibers according to a specific pattern, the aesthetics and cultural atmosphere of the wave-breaking wall are enhanced under the illumination of the optical fiber light.
[0022] 3. Align the fixing holes of the mounting plate with the mounting holes of the colored concrete slab, insert the anchor rod, and rotate the threaded rod inside the anchor rod. This causes the collar on the threaded rod to move to abut against the fixing claw. The fixing claw then extends from the groove and abuts against the back of the fixing rod. Finally, tighten the fixing nut on the outside of the anchor rod to further strengthen the connection between the colored concrete slab and the fixing rod. This ensures convenient installation between the colored concrete slab and the fixing rod, reduces installation difficulty, and improves work efficiency. Attached Figure Description
[0023] Figure 1 is a schematic diagram of the structure of this application.
[0024] Figure 2 is a structural schematic diagram of the wave-breaking wall body and the installation base in this application.
[0025] Figure 3 is a structural schematic diagram of the colored concrete slab in this application.
[0026] Figure 4 is a schematic diagram of the locking mechanism in this application.
[0027] Figure 5 is a schematic diagram of the card connector in this application.
[0028] Figure 6 is a partial cross-sectional view of the collar before it pushes the fixing claw out of the groove.
[0029] Figure 7 is a partial cross-sectional schematic diagram of the collar pushing the fixed claw out of the groove.
[0030] Explanation of reference numerals in the attached figures:
[0031] 1. Base plate; 2. Wave wall body; 3. Concrete pad; 4. Light fixture; 5. Colored concrete slab; 6. Light hole; 7. Mounting hole; 8. Fixing rod; 9. Mounting plate; 10. Fixing hole; 11. Fixing bolt; 12. Round hole; 13. Anchor rod; 14. Hexagonal nut; 15. Threaded rod; 16. Collar; 17. Fixing claw; 18. Slide groove; 19. Threaded groove; 20. Fixing nut; 21. Light-transmitting hole.
[0032] This specification includes references to "one embodiment" or "implementation". The use of the phrase "in one embodiment" or "in an embodiment" does not necessarily refer to the same embodiment. Specific features, structures, or characteristics may be combined in any suitable manner consistent with this disclosure.
[0033] The term "comprising" is open-ended. As used in the appended claims, it does not exclude additional structures or steps. Detailed Implementation
[0034] To enable those skilled in the art to better understand the present invention, the technical solution of the present invention will be further described below with reference to specific embodiments.
[0035] Referring to Figures 1 to 7, this embodiment is a wave-breaking wall structure with lighting function, including a wave-breaking wall body 2, a colored concrete slab 5, fixing components, and lighting components. The colored concrete slab 5 is fitted on the top of the wave-breaking wall body 2. Fixing components are provided on both the inner and outer sides of the wave-breaking wall body 2. The fixing components are used to install the colored concrete slab 5 on the top of the wave-breaking wall body 2. Multiple sets of lamp holes 6 are reserved on the wave-facing side of the colored concrete slab 5. Lighting components are provided on both the inner and outer sides of the wave-breaking wall body 2. The lighting components on the wave-facing side correspond to the lamp holes 6. The lighting components are used to illuminate the perimeter of the wave-breaking wall body 2.
[0036] In some implementation schemes, as shown in Figures 1, 2 and 3, the lighting components include lamps 4 and power supply components. The wave-facing surface of the wave-breaking wall body 2 is equipped with lamps 4 that correspond to the lamp holes 6 along the extension direction. Each lamp 4 is connected to a power supply component, which is used to supply power to the lamps 4.
[0037] Furthermore, the lighting components also include optical fibers, couplers, and LED light sources. The back surface of the colored concrete slab 5 has multiple light-transmitting holes 21, and optical fibers are embedded in the corresponding light-transmitting holes 21. The LED light source is installed on one side of the back surface of the wave-breaking wall body 2. The LED light source is connected to the power supply component. The light generated by the LED light source is guided into the optical fibers through the coupler, thereby forming a decorative lighting effect.
[0038] Furthermore, the light-transmitting holes 21 are distributed in geometric patterns, such as circles, squares, triangles, or more complex shapes such as spirals and waves. The light-transmitting holes 21 can also incorporate symbols with local characteristics or cultural significance, making the colored concrete slab 5 more aesthetically pleasing and culturally rich under the illumination of lights, thus enhancing the landscape effect of the wave-breaking wall.
[0039] Furthermore, considering that some of the wave-breaking walls may be affected by severe weather, all lamps 4 are equipped with waterproof covers. The waterproof covers can waterproof the lamps 4 without affecting their luminous effect, thereby effectively improving the service life of the lamps 4.
[0040] Furthermore, in this embodiment, the power supply component is combined with the actual power grid layout around the wave-breaking wall. If there is a power supply network near the wave-breaking wall, the lamp 4 will be connected to the mains power by reasonably planning the wire laying path; if there is no relevant power network near the wave-breaking wall, the power supply component adopts photovoltaic components to collect solar energy and convert it into electrical energy for the lamp 4 to be used at night.
[0041] In some implementations, the fixing components include mounting bases and locking elements. Mounting bases are provided on both the inner and outer sides of the wave-breaking wall body 2, and the colored concrete slab 5 is installed on the mounting bases via locking elements.
[0042] Furthermore, as shown in Figure 2, the mounting base includes a fixing rod 8, a mounting plate 9, and fixing bolts 11. Both ends of the fixing rod 8 are connected to the mounting plate 9. Multiple sets of drilled holes are provided on the inner and outer sides of the wave-breaking wall body 2 along its own extension direction. The mounting plate 9 is provided with fixing holes 10 corresponding to the drilled holes. The fixing bolts 11 pass through the fixing holes 10 and the drilled holes to install the mounting plate 9 on the wall of the wave-breaking wall body 2. Each set of drilled holes corresponds to a single set of mounting bases, so that multiple sets of mounting bases are arranged along the extension direction of the wave-breaking wall body 2.
[0043] Further, as shown in Figure 4, the locking mechanism includes an anchor rod 13, a threaded rod 15, a hexagonal nut 14, and a fixing nut 20. The fixing rod 8 has two circular holes 12, and the colored concrete slab 5 has mounting holes 7 corresponding to the circular holes 12. The anchor rod 13 passes through the circular holes 12 and mounting holes 7, and the threaded rod 15 moves through the anchor rod 13. The outer wall of the threaded rod 15 is threaded with a snap-fit component that can slide relative to the anchor rod 13. The end of the threaded rod 15 exposed above the anchor rod 13 has a hexagonal nut 14, and the outer wall of the anchor rod 13 has a threaded groove 19. The fixing nut 20 is threadedly engaged with the threaded groove 19. The hexagonal nut 14 drives the threaded rod 15 to rotate, causing the snap-fit component to slide to the outside of the anchor rod 13 and abut against one side of the fixing rod 8. The fixing nut 20 then fixes the colored concrete slab 5 to the other side of the fixing rod 8.
[0044] Further, as shown in Figures 5, 6, and 7, the snap-fit component includes a collar 16 and fixing claws 17. The outer wall of the anchor rod 13 has axially arranged grooves 18, with multiple grooves 18 spaced circumferentially along the outer wall of the anchor rod 13. Fixing claws 17 are slidably embedded within each groove 18, allowing the fixing claws 17 to move within the grooves without dislodging. The outer wall of the threaded rod 15 is threadedly connected to a collar 16. The periphery of the collar 16 engages with multiple fixing claws 17, allowing the fixing claws 17 to circumferentially limit the collar 16. The collar 16 and the fixing claws 17 are axially slidably connected. The fixing claws 17 have guide slopes at both ends facing the inner wall of the threaded rod 15. The collar 16 has corresponding guide slopes at the engagement points with the fixing claws 17, allowing the collar 16 to push the fixing claws 17 out of the anchor rod 13 along the grooves 18 when moving along the threaded rod 15. Specifically, this embodiment uses two fixing claws 17.
[0045] In some implementations, the wave-facing side of the wave-breaking wall body 2 is provided with a concrete pad 3 that can abut against the bottom of the colored concrete slab 5, and the bottom of the wave-breaking wall body 2 is provided with a base plate 1.
[0046] The implementation principle of a wave-breaking wall structure with lighting function is as follows:
[0047] When installing the colored concrete slab 5 onto the top of the wave-breaking wall body 2, first install the light fixture 4 on the wave-breaking wall body 2, then fix the mounting plates 9 at both ends of the fixing rod 8 to both sides of the wave-breaking wall body 2 with fixing bolts 11, and then put the colored concrete slab 5 on the top of the wave-breaking wall body 2.
[0048] Adjust the round holes 12 on the two fixing rods 8 on both sides of the wave-breaking wall body 2 to coincide with the mounting holes 7 on both sides of the colored concrete slab 5, and then insert the anchor rod 13 into the mounting holes 7 and the round holes 12. After the anchor rod 13 is inserted, use a hexagonal wrench to insert into the hexagonal nut 14 on one side of the anchor rod 13 and rotate it. The hexagonal nut 14 drives the threaded rod 15 inside the anchor rod 13 to rotate. Due to the threaded connection between the threaded rod 15 and the collar 16, and the circumferential limitation of the collar 16 by multiple fixing claws 17 on the periphery, the collar 16 moves along the axial direction of the threaded rod 15 towards the hexagonal nut 14 end, so that the collar 16 and the fixing claws 17 slide relative to each other. The collar 16 pushes out the multiple fixing claws 17 on the periphery along the sliding groove 18 until the fixing claws 17 are at least partially exposed outside the anchor rod 13, so that the fixing claws 17 can abut against the inner side of the fixing rod 8, and the outer side of the fixing rod 8 abuts against the colored concrete slab 5. Then, by tightening the fixing nut 20 with a wrench, it is installed on the outside of the anchor rod 13. The fixing nut 20 moves along the anchor rod 13 toward the colored concrete slab 5 until the fixing nut 20 locks the colored concrete slab 5. The fixing claw 17 cooperates with the fixing nut 20 to achieve quick installation between the colored concrete slab 5 and the fixing rod 8.
[0049] The above are all preferred embodiments of this utility model, and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape and principle of this utility model should be covered within the scope of protection of this utility model.
Claims
1. A wave-breaking wall structure with lighting function, characterized in that, include: The wave-breaking wall body (2); the colored concrete slab (5), which is fitted on the top of the wave-breaking wall body (2), with multiple sets of lamp holes (6) reserved on the wave-facing side of the colored concrete slab (5); the fixing components, which are located on the inner and outer sides of the wave-breaking wall body (2), and are used to install the colored concrete slab (5) on the top of the wave-breaking wall body (2); the lighting components, which are located on the inner and outer sides of the wave-breaking wall body (2), and are partially corresponding to the lamp holes (6), and are used to illuminate the periphery of the wave-breaking wall body (2).
2. The wave-breaking wall structure with lighting function according to claim 1, characterized in that: The lighting components include lamps (4) and power supply components. The wave-facing surface of the wave-breaking wall body (2) is equipped with lamps (4) that correspond to the lamp holes (6) along the extension direction. Each lamp (4) is connected to a power supply component, which is used to supply power to the lamps (4).
3. A wave-breaking wall structure with lighting function according to claim 2, characterized in that: The lighting assembly also includes optical fibers, couplers and LED light sources. The back wave surface of the wave-breaking wall body (2) is equipped with LED light sources. The back wave surface of the colored concrete slab (5) is provided with multiple light-transmitting holes (21). Optical fibers are embedded in the light-transmitting holes (21). The LED light source is connected to the power supply assembly. The LED light source guides the light into the optical fibers through the coupler.
4. A wave-breaking wall structure with lighting function according to claim 3, characterized in that: The light-transmitting holes (21) are distributed in a geometric pattern.
5. A wave-breaking wall structure with lighting function according to claim 1, characterized in that: The fixing components include mounting bases and locking components. Mounting bases are provided on both the inner and outer sides of the wave-breaking wall body (2). The colored concrete slab (5) is installed on the mounting bases via the locking components.
6. A wave-breaking wall structure with lighting function according to claim 5, characterized in that: The mounting base includes a fixing rod (8), a mounting plate (9), and a fixing bolt (11). The mounting plate (9) is connected to both ends of the fixing rod (8). Multiple sets of drill holes are provided on the inner and outer sides of the wave wall body (2) along its own extension direction. The mounting plate (9) is provided with fixing holes (10) corresponding to the drill holes. The fixing bolt (11) passes through the fixing holes (10) and the drill holes to install the mounting plate (9) on the wall of the wave wall body (2). Each set of drill holes corresponds to a single set of mounting bases, so that multiple sets of mounting bases are arranged along the extension direction of the wave wall body (2).
7. A wave-breaking wall structure with lighting function according to claim 5, characterized in that: The locking components include an anchor rod (13), a threaded rod (15), a hexagonal nut (14), and a fixing nut (20). The mounting base has a circular hole (12), and the colored concrete slab (5) has mounting holes (7) corresponding to the circular hole (12). The anchor rod (13) passes through the circular hole (12) and the mounting hole (7). The threaded rod (15) moves through the anchor rod (13), and the outer wall of the threaded rod (15) is threaded to allow it to slide relative to the anchor rod (13). The snap-fit component has a hexagonal nut (14) at the end of the threaded rod (15) that protrudes from the anchor rod (13). The outer wall of the anchor rod (13) has a threaded groove (19). The fixing nut (20) can be threadedly engaged with the threaded groove (19). The hexagonal nut (14) drives the threaded rod (15) to rotate, so that the snap-fit component slides to the outside of the anchor rod (13) to abut against one side of the mounting base. The fixing nut (20) can fix the colored concrete slab (5) to the other side of the mounting base.
8. A wave-breaking wall structure with lighting function according to claim 7, characterized in that: The snap-fit component includes a collar (16) and a fixing claw (17). The outer wall of the anchor rod (13) is provided with a sliding groove (18) arranged along the axial direction. Multiple sliding grooves (18) are arranged circumferentially along the outer wall of the anchor rod (13). The fixing claw (17) is slidably embedded in each sliding groove (18). The outer wall of the threaded rod (15) is threadedly connected to the collar (16). The periphery of the collar (16) is correspondingly snapped with multiple fixing claws (17). The collar (16) and the multiple fixing claws (17) are slidably connected along the axial direction, so that when the collar (16) moves along the threaded rod (15), it can push the fixing claw (17) out of the anchor rod (13) along the sliding groove (18).
9. A wave-breaking wall structure with lighting function according to claim 1, characterized in that: The wave-facing surface of the wave-breaking wall body (2) is provided with a concrete pad (3) that can abut against the bottom of the colored concrete slab (5), and the bottom of the wave-breaking wall body (2) is provided with a base plate (1).