Reciprocating type wave making driving frame and wave making device
By setting multiple tracks and independently driven moving parts on the support frame, the problem that existing equipment cannot simultaneously handle frequency and amplitude is solved, resulting in a more natural and continuous wave experience, enhancing equipment stability and reducing maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-03-10
AI Technical Summary
Existing wave-making equipment in water parks cannot simultaneously control wave frequency and amplitude, resulting in a poor experience.
Multiple tracks are set on the support frame, and each track is equipped with an independently driven moving part. Through reciprocating motion, the wave-generating belt is driven to form continuous waves.
It achieves a balance between wave frequency and amplitude, providing a more natural and continuous wave experience, enhancing the visitor experience, while improving equipment stability and reducing maintenance costs.
Smart Images

Figure CN223984303U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of surfing equipment, specifically to a reciprocating wave-making drive frame and a wave-making device. Background Technology
[0002] The wave generators in water parks are designed to provide visitors with a simulated ocean wave experience. Vacuum wave generators use vacuum pumps to pump water to a certain height and then release it, creating waves. This method can produce larger surges, but because it takes time to re-pump and release the water, the wave frequency is relatively low. This wave generation method can simulate more spectacular waves, giving visitors a strong visual and sensory experience.
[0003] Wind-powered wave generators simulate ocean waves by periodically applying and releasing wind pressure through a system installed at the bottom of the wave pool. When wind pressure is applied, the water is pushed forward, forming waves; when the wind pressure is released, the water recedes, and the waves weaken. This method can continuously generate waves, providing surfers with a continuous surfing experience, but due to wind pressure limitations, the resulting surges are relatively small.
[0004] In view of the above, this application is hereby submitted. Utility Model Content
[0005] The purpose of this invention is to provide a reciprocating wave-generating drive frame and wave-generating device. By setting multiple tracks on the support frame and setting a moving part on each track, each moving part independently drives the wave-generating section, thereby solving the problem in the prior art that it is impossible to simultaneously meet the requirements of wave-generating frequency and amplitude.
[0006] This utility model embodiment is achieved through the following technical solution: First, this utility model embodiment provides a reciprocating wave generator drive frame, including:
[0007] The support frame is designed to suspend the wave-generating belt;
[0008] Multiple tracks are set on the support frame, with each track extending along the width of the support frame and the multiple tracks arranged along the length of the support frame;
[0009] Multiple moving parts, with one moving part set in a single track, and each moving part can be driven independently;
[0010] Each moving component is configured to drive the wave-generating belt to reciprocate along a single track.
[0011] Optionally, a single moving part includes a connecting part and a driving part, the connecting part being connected to the wave-making belt, and the driving part being configured to drive the connecting part.
[0012] Optionally, the connecting part includes a support block and a cantilever, and several traveling wheels are provided on both sides of the support block, with the traveling wheels installed in the track;
[0013] The cantilever is suspended on the support block and is configured to connect with the wave-making belt. The drive unit is configured to drive the traveling wheels to reciprocate along the track.
[0014] Optionally, the drive unit includes a hub motor disposed within the traveling wheel, and at least one traveling wheel is provided with a hub motor.
[0015] Optionally, a rack is provided on the support block, and the drive unit includes a drive gear and a motor component;
[0016] The drive gear is mounted on the track;
[0017] The drive gear meshes with the rack, and the motor is configured to drive the drive gear to rotate, thereby causing the traveling wheel to reciprocate along the track.
[0018] Optionally, the support frame includes support columns and a first support platform, the first support platform being disposed above the support columns, multiple tracks being disposed on the first support platform, and the support columns being configured to support the first support platform.
[0019] Optionally, the support column includes multiple inclined columns and vertical columns, which are arranged along both sides of the first support platform, with the vertical columns located inside the inclined columns.
[0020] Optionally, a second support platform is provided above the first support platform, and an isolation net is provided on the outside of the support column;
[0021] Optionally, a sensor is provided on the first support platform, and the sensor is configured to monitor the movement of the moving part.
[0022] Secondly, in order to better solve the above problems, this utility model embodiment also provides a wave-making device, including a wave-making belt and the aforementioned drive frame, wherein the drive frame is configured to suspend and drive the wave-making belt;
[0023] The wave generator consists of multiple wave-pushing plates connected in sequence, with floating connections between adjacent wave-pushing plates. Each wave-pushing plate can be driven individually by a moving part, and multiple wave-pushing plates can form a wave surge when driven separately.
[0024] Compared with the prior art, the embodiments of this utility model have the following advantages and beneficial effects:
[0025] 1. The drive frame provided in this embodiment of the utility model has multiple tracks on a support frame. The support frame provides the necessary support structure for the reciprocating motion of the wave generator, and the tracks provide a motion path for the moving parts, enabling them to reciprocate along the tracks. The moving parts drive specific parts of the wave generator, causing them to reciprocate along the tracks, thereby generating waves. This structure can simulate continuous, natural ocean waves, providing a surfing experience for tourists. Compared with traditional wave generators, this structure can simultaneously consider the frequency and amplitude of wave generation, providing more natural and continuous waves and enhancing the tourist experience.
[0026] 2. The support column of this utility model includes multiple inclined columns and vertical columns. The inclined columns are set at an angle to better resist lateral forces, such as the horizontal thrust generated by waves or other external forces. The vertical columns are set inside the inclined columns, forming a stable triangular support structure together with the inclined columns. The vertical columns ensure the stability of the support frame in the vertical direction, preventing deformation or collapse of the support frame due to the vertical impact of waves. This structure makes the reciprocating wave-generating drive frame more stable when subjected to wave impact, reducing maintenance costs and safety hazards caused by structural deformation or damage.
[0027] In general, the embodiments of this utility model provide a reciprocating wave-generating drive frame and wave-generating device. By setting multiple tracks on the support frame and setting a moving part on each track, each moving part independently drives the wave-generating section, so as to achieve the purpose of taking into account the requirements of wave-generating frequency and amplitude and improving wave-generating efficiency. Attached Figure Description
[0028] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0029] Figure 1 A partial structural schematic diagram of the drive frame provided in Embodiment 1 of this utility model;
[0030] Figure 2 for Figure 1 Enlarged view of the structure at point A in the middle;
[0031] Figure 3 A partial structural schematic diagram of the drive frame provided in Embodiment 2 of this utility model;
[0032] Figure 4 for Figure 3 Enlarged view of the structure at point B in the middle;
[0033] Figure 5 This is a schematic diagram of the support frame structure according to one embodiment of the present utility model;
[0034] Figure 6 This is a schematic diagram of the support frame structure according to another embodiment of the present utility model;
[0035] Figure 7 This is a schematic diagram of the support frame structure in other embodiments of the present invention;
[0036] Figure 8 A partial structural cross-sectional view of the drive frame provided in Embodiment 1 of this utility model;
[0037] Figure 9 A bottom view of the driving device provided in Embodiment 3 of this utility model;
[0038] Figure 10 This is a partial structural schematic diagram of the driving device provided in Embodiment 3 of this utility model.
[0039] The attached diagram shows the markings and corresponding component names:
[0040] 1-Support frame, 2-Rail, 3-Moving component, 4-Wave belt, 5-Support block, 6-Cantilever, 7-Walking wheel, 8-Rack, 9-Drive gear, 11-Motor component, 12-Support column component, 13-First support platform, 14-Inclined column, 15-Vertical column, 16-Second support platform, 17-Wave pusher plate, 18-Small plate, 19-Hinge point, 20-Area between two adjacent tracks. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can typically be arranged and designed in various different configurations.
[0042] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0043] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0044] In the description of this utility model, it should be noted that the terms "first", "second", "third", etc. are used only for distinguishing descriptions and should not be construed as indicating or implying relative importance.
[0045] Example
[0046] like Figure 1 and Figure 8 As shown, this utility model embodiment provides a reciprocating wave generator drive frame, including a support frame 1, multiple tracks 2 and multiple moving parts 3. The support frame 1 is configured to suspend the wave generator belt 4. The multiple tracks 2 are all arranged on the support frame 1. Each track 2 extends along the width direction of the support frame 1, and the multiple tracks 2 are arranged along the length direction of the support frame 1. Each track 2 is provided with a moving part 3, and each moving part 3 can be driven independently. Each moving part 3 is configured to drive the wave generator belt 4 to reciprocate along the single track 2.
[0047] It should be noted that the moving part 3 can be connected to the power source through some mechanical connection. The power source drives the moving part 3 to reciprocate along the track 2. This reciprocating motion drives a specific part of the wave-making belt 4, causing the wave-making belt 4 to ripple in the water, simulating the effect of natural waves. The mechanical connection here can be a gear, chain, or direct connection, and the power source can be a motor or other drive device, which is not limited here. The reciprocating wave-making drive frame provided by this embodiment of the utility model, in conjunction with the wave-making belt 4, can simulate continuous waves similar to natural ocean waves, providing surfing experience for tourists. Compared with traditional wave-making equipment, this structure can simultaneously take into account the frequency and amplitude of wave generation, providing more natural and continuous waves, enhancing the tourist experience.
[0048] It should also be noted that the number of tracks 2 is not limited here, and can be set according to the structure and size of the wave-generating belt 4. Each track 2 contains one moving part 3, and each moving part 3 in each track 2 can be controlled individually. At the same time, the shape and size of each track 2 can be set to be the same, or different shapes and sizes can be set as needed, without restriction here. Similarly, each track 2 is arranged horizontally, and the distance between two adjacent tracks 2 can be set to be the same, or different as needed.
[0049] For example, each track 2 is set to have the same shape and size, and the moving parts 3 are set to have the same shape and size. The distance between two adjacent tracks 2 is equal, and the projections of all tracks 2 in the arrangement direction coincide. Each moving part 3 includes a connecting part and a driving part. The connecting part is connected to the wave-making belt 4, and the driving part drives the connecting part. The connecting part may include a cantilever 6, which suspends the wave-making plate in the water. The connecting part can be driven by a power source such as a motor, and can be adapted to corresponding transmission components, such as a gear and rack mechanism or a crank rocker mechanism. Alternatively, a linear drive part such as a cylinder or electric cylinder can be set on the support frame 1 to achieve reciprocating drive. Taking a cylinder as an example, it can be set at one end of the connecting part or at both ends, depending on the load during drive. Taking a motor as an example, in conjunction with a gear and rack mechanism, the left and right movement of the connecting part is controlled by the forward and reverse rotation of the motor to achieve reciprocating motion. Alternatively, the connecting part can be set as a chassis, and the walking wheel 7 can be set to reciprocate on the track 2. The walking wheel 7 is connected to the chassis, and a hub motor can be set inside the walking wheel 7 to provide its own driving force. Alternatively, a power source can be set on the chassis to drive the walking wheel 7 forward or backward, such as setting a motor in conjunction with a transmission mechanism to drive the walking wheel 7 to move.
[0050] The drive unit can also be a region 20 between two adjacent tracks where an induction plate is placed, and a bracket extends from the connecting part to the top of the induction plate. A magnetic motor is placed on the bracket. The magnetic motor works with the induction plate to drive the bracket to move, thereby providing power for the operation of the connecting part. Of course, the magnetic motor and the induction plate can be interchanged. The induction plate is installed on the connecting part, and the magnetic motor is fixed next to the track 2. This makes it easy to install a cooling water supply structure for the magnetic motor.
[0051] Specifically, Example 1: as Figure 2 As shown in this embodiment of the utility model, the connecting part includes a support block 5 and a cantilever 6. Several traveling wheels 7 are provided on both sides of the support block 5, and the traveling wheels 7 are installed in the track 2. The cantilever 6 is suspended on the support block 5 and is configured to be connected to the wave-making belt 4. The driving part is configured to drive the traveling wheels 7 to reciprocate along the track 2. Optionally, the driving part includes a hub motor installed in the traveling wheel 7, and at least one hub motor is installed in the traveling wheel 7.
[0052] Furthermore, position sensors are installed on the support frame 1 to detect movement, including the travel distance of the connecting parts. The operator can control the system to determine whether the pusher plate 17 has reached the correct travel distance based on the travel distance of the connecting parts, ensuring the desired wave shape is created. If the travel distance is detected as not reaching the preset control travel distance, it indicates that the equipment may need maintenance. In addition, a visual inspection device can be installed to monitor whether the travel distance is correct. Besides position sensors, speed sensors can also be installed to detect speed, which is also a movement indicator, as both the travel distance and speed of the pusher plate affect the wave shape.
[0053] To improve support stability, such as Figure 5 The support frame 1 shown in this embodiment of the present invention includes a support column 12 and a first support platform 13. The first support platform 13 is disposed above the support column 12, and multiple tracks 2 are disposed on the first support platform 13. The support column 12 is configured to support the first support platform 13. The support column 12 includes multiple inclined columns 14. In other embodiments, such as... Figure 6 As shown, the support column 12 also includes multiple vertical columns 15. Exemplarily, the inclined columns 14 and the vertical columns 15 are arranged along both sides of the first support platform 13, with the vertical columns 15 located inside the inclined columns 14. This structure helps to form a robust support structure capable of withstanding lateral and vertical forces from waves.
[0054] It should be noted that, as Figure 10 As shown, the wave-generating belt 4 includes multiple wave-pushing plates 17 connected in sequence. Each wave-pushing plate 17 corresponds to a track 2 and a moving part 3. The wave-pushing plate 17 is connected to the moving part 3. The wave-pushing plates 17 are hinged to each other using a hinged structure. Therefore, the wave-pushing plates 17 will not touch the vertical column 15 during operation, and the hinged structure will not touch the vertical column 15 either. Figure 9 The hinge point 19 shown is configured such that when the hinge structure uses two small plates 18 to hinge a wave pusher 17 respectively, the vertical column 15 can be aligned with the direction of the two small plates 18. When the small plates 18 and the vertical column 15 come into contact, since the small plates 18 are also hinged to each other, they can pivot and unload the force when they come into contact, and will not have a rigid collision with the vertical column 15. This structure can avoid the small plates 18 being damaged by collision.
[0055] Specifically, the purpose of using this structure is twofold: firstly, to expand the stroke range of the pusher plate 17; and secondly, when using the small plate 18, during the reciprocating motion of the pusher plate 17, if the first pusher plate 17 changes direction while the second pusher plate 17 does not, there may be a situation where the two small plates 18 are exactly in a straight line, that is, the included angle between the two small plates 18 is 180°. In this case, the hinge structure may lock. However, with the vertical column 15 supporting the two small plates 18, this locking situation can be avoided, ensuring smooth operation of the equipment.
[0056] Of course, as needed, isolation netting or similar facilities can be installed on the outside of the inclined column 14 to prevent personnel from entering the wave generator working area and causing accidents. As a preferred embodiment of this utility model, such as... Figure 7 As shown, a platform can be further constructed above the support frame 1. Specifically, a platform plate is set in the area between tracks 2 to form the first support platform 13. Above this is the second support platform 16, which can be used to further house the wave-generating equipment's supporting facilities and devices, serving as a machine room. The second support platform 16 facilitates movement and inspection of the wave-generating equipment by operators. The first support platform 13 can communicate with the second support platform 16, allowing personnel to descend from the second support platform 16 to inspect the moving parts and check the condition of the wave-pushing plates 17 below. During maintenance and replacement, it also provides operators with close-range operating space, eliminating the need to enter the water for each operation.
[0057] Example 2: As Figure 3 and Figure 4 As shown, the difference from Embodiment 1 is that the support block 5 is provided with a rack 8, and the driving part includes a drive gear 9 and a motor component 11. The drive gear 9 is set on the track 2; the drive gear 9 meshes with the rack 8, and the motor component 11 is configured to drive the drive gear 9 to rotate and drive the walking wheel 7 to reciprocate along the track 2.
[0058] Example 3: As Figure 9 and Figure 10 As shown, this utility model embodiment also provides a reciprocating wave-making drive device, including a wave-making belt 4 and a drive frame of embodiment 1 or embodiment 2. The drive frame is configured to suspend and drive the wave-making belt 4. The wave-making belt 4 includes multiple wave-pushing plates 17 connected in sequence. Adjacent wave-pushing plates 17 are floatingly connected. A single wave-pushing plate 17 can be driven individually by the moving part 3. After multiple wave-pushing plates 17 are driven separately, the water can form a wave surge.
[0059] In summary, the drive frame provided by this embodiment of the invention provides a power foundation for the movement of the wave-generating belt 4 of the wave-generating equipment, facilitating the driving of the wave-pushing plate 17 in the space above the water. It also ensures that operators can perform maintenance and repairs in the water without needing to place the power unit in the water, eliminating concerns about sealing and reducing the labor intensity of the operators. Furthermore, it can be directly constructed into a machine room as needed, saving space. It should also be noted that when the structure of the wave-generating belt 4 is changed, new moving parts and cantilever 6 can be adapted accordingly, without requiring a complete renovation of the machine room.
[0060] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model. It should be noted that the structures or components illustrated in the accompanying drawings are not necessarily drawn to scale, and descriptions of well-known components, processing techniques, and processes are omitted to avoid unnecessarily limiting the utility model.
Claims
1. A reciprocating wave making drive frame characterized by, The utility model relates to a drive frame for wave making belt, comprising: a support frame (1) arranged to suspend a wave making belt (4); a plurality of tracks (2) arranged on the support frame (1), each track (2) extending along the width direction of the support frame (1), and the plurality of tracks (2) arranged along the length direction of the support frame (1); a plurality of moving parts (3), each track (2) being provided with one moving part (3), and each moving part (3) being independently driven; each moving part (3) being arranged to drive the wave making belt (4) to move back and forth along the corresponding track (2).
2. A reciprocating wave generator drive frame according to claim 1, wherein, Each moving part (3) comprises a connecting part and a driving part, the connecting part being connected with the wave making belt (4), and the driving part being arranged to drive the connecting part.
3. A reciprocating wave generator drive frame according to claim 2, wherein, The connecting part comprises a support block (5) and a cantilever (6), each side of the support block (5) being provided with a plurality of walking wheels (7) arranged in a row, and the walking wheels (7) being installed in the track (2); The cantilever (6) is suspended on the support block (5) and arranged to be connected with the wave making belt (4), and the driving part is arranged to drive the walking wheels (7) to move back and forth along the corresponding track (2).
4. A reciprocating wave generator drive frame according to claim 3, wherein, The driving part comprises a hub motor arranged in the walking wheel (7), and at least one walking wheel (7) is provided with a hub motor.
5. A reciprocating wave generator drive frame according to claim 3, wherein, The support block (5) is provided with a rack (8), and the driving part comprises a driving gear (9) and a motor part (11); The driving gear (9) is arranged on the track (2); The driving gear (9) is engaged with the rack (8), and the motor part (11) is arranged to drive the driving gear (9) to rotate and drive the walking wheels (7) to move back and forth along the corresponding track (2).
6. A reciprocating wave generator drive frame according to claim 1 wherein, The support frame (1) comprises a support column part (12) and a first support table (13), the first support table (13) being arranged above the support column part (12), the plurality of tracks (2) being arranged on the first support table (13), and the support column part (12) being arranged to support the first support table (13).
7. A reciprocating wave generator drive frame according to claim 6, wherein, The support column part (12) comprises a plurality of inclined columns (14) and vertical columns (15), the plurality of inclined columns (14) and vertical columns (15) being arranged along the two sides of the first support table (13), and the vertical columns (15) being arranged on the inner side of the inclined columns (14).
8. A reciprocating wave generator drive frame according to claim 6, wherein, The first support table (13) is provided with a second support table (16) arranged above, and the outer side of the support column part (12) is provided with a partition net.
9. A reciprocating wave generator drive frame according to claim 6, wherein, The first support table (13) is provided with a sensor arranged to monitor the movement of the moving part (3).
10. A wave making device characterized by The utility model relates to a drive frame for wave making belt, comprising: The wave making belt (4) comprises a plurality of wave pushing plates (17) connected in sequence, the adjacent two wave pushing plates (17) being arranged in floating connection, each wave pushing plate (17) being independently driven by the moving part (3), and the plurality of wave pushing plates (17) being driven to form a wave surge.