Magnetomotive wave making equipment and surfing pool

By using a magnetic drive system, which utilizes magnetic tracks and magnetic actuators to drive the wave-pushing plate, the problems of high noise and high cost of existing wave-making equipment are solved, achieving a diverse wave simulation experience with low noise and low cost.

CN223805902UActive Publication Date: 2026-01-16CHENGDU TAILONG RECREATION IND CO LTD
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Patent Information

Application Number
CN202423302739.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing artificial wave generators are noisy, expensive, and fail to meet the needs of surfing enthusiasts for a marine experience. Traditional mechanical drive methods also negatively impact the environment and the visitor experience.

Method used

A magnetic drive system is adopted, which drives the wave pusher to move through a magnetic track and a magnetic actuator to simulate ocean waves. The non-contact nature of magnetic force reduces noise and improves control accuracy.

Benefits of technology

It significantly reduces equipment operating noise, improves the visitor experience, reduces environmental impact, and meets the needs of different visitors by precisely controlling wave patterns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses magnetomotive force wave making equipment and a surfing pool, and relates to the field of wave making equipment. The support part is provided with a moving part, the moving part is arranged on the magnetic rail, and the magnetic starting part is arranged to drive the moving part to move along the magnetic rail so as to drive the support part to move along the magnetic rail; the wave pushing plate is connected with the support part and can move along with the support part. According to the utility model, the magnetic member, the magnetic track and the magnetic starting member are arranged, and the support member is driven to drive the wave pushing plate to move to simulate surges, so that the purposes of reducing noise and improving customer experience are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a wave making equipment field, concretely relates to a magnetic power wave making equipment and surfing pool. BACKGROUND

[0002] Artificial wave making equipment is widely used in many fields such as marine engineering, water sports and tourist attractions by simulating sea wave environment. They can control wave height, wave frequency, wave speed and other parameters to meet the needs of different scenes, and simulate a variety of sea wave environment to provide diversified wave condition experience. These devices can also be remotely operated through software control, which is convenient and flexible, and can be adjusted as needed to effectively utilize resources.

[0003] However, the wave type of artificial wave making in the prior art is relatively single, the challenge and stimulation are relatively weak, and it cannot well meet the needs of surfers who yearn for the sea. In addition, from the perspective of construction and operation, the investment and operation cost of artificial surfing pool is high, and the single experience cost is also high, which limits the scope of the customer group and makes the coverage relatively limited. In the technical aspect, the vacuum type and air blowing type wave making equipment will produce a large noise problem in the running process, which not only affects the surrounding environment, but also may have a negative impact on the experience of tourists, and a large amount of energy supply is needed to maintain.

[0004] Therefore, the present application is proposed. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a magnetic power wave making equipment and surfing pool, which provides a magnetic force track and a magnetic force driving part by setting a magnetic part, drives a support part to move to simulate a wave surge, so as to solve the problem of a large noise problem in the running process of the vacuum type and air blowing type wave making equipment in the prior art.

[0006] The utility model embodiment realizes the following technical scheme: first, the utility model embodiment provides a magnetic power wave making equipment, which comprises:

[0007] The magnetic part comprises a magnetic force track and a magnetic force driving part;

[0008] The support part is provided with a moving part, the moving part is arranged on the magnetic force track, and the magnetic force driving part is arranged to drive the moving part to move along the magnetic force track to drive the support part to move along the magnetic force track;

[0009] The wave pushing plate is connected with the support part and can move with the support part.

[0010] Optionally, the magnetic force track comprises a guide rail and an inductor, the inductor is laid along the extension direction of the guide rail, the moving part is a plurality of rollers, and the magnetic force driving part drives the rollers to move on the guide rail.

[0011] Optionally, the magnetic power driving element comprises a plurality of magnetic power driving engines, and each magnetic power driving engine is arranged on the support element.

[0012] Optionally, the surfboard is provided with a rotating shaft element, and the rotating shaft element is connected with the support element and can rotate relative to the support element.

[0013] Optionally, the upper end of the support element is provided with an upper through hole, and the lower end of the support element is provided with a lower through hole, and the rotating shaft element penetrates through the upper through hole and the lower through hole and can rotate in the upper through hole and the lower through hole.

[0014] Optionally, the surfboard has a multi-curved surface structure, and the cross section of the surfboard has a sharp structure.

[0015] Optionally, the arc-shaped limiting groove comprises a first through groove and a second through groove, and the rotating driven element is provided with two rotating driven elements, and each rotating driven element penetrates through the first through groove and the second through groove, and the first through groove and the second through groove are concentrically arranged.

[0016] Optionally, the cross section of the surfboard has a shuttle shape, and comprises a central curved surface portion arranged in the middle, and a first concave-convex curved surface portion and a second concave-convex curved surface portion are arranged on both sides of the central curved surface portion, the central curved surface portion is convex outward, the first concave-convex curved surface portion and the second concave-convex curved surface portion are concave inward, the outer side of the first concave-convex curved surface portion is provided with a first flat surface portion, and the outer side of the second concave-convex curved surface portion is provided with a second flat surface portion.

[0017] Optionally, the surfboard further comprises a photovoltaic power supply mechanism, and the photovoltaic power supply mechanism is arranged to supply power to the magnetic element.

[0018] Secondly, in order to better solve the above problems, the utility model embodiment further provides a surfing pool, comprising the above-mentioned magnetic power wave making equipment, and the magnetic power wave making equipment is used for simulating a surge in the surfing pool.

[0019] Compared with the prior art, the utility model embodiment has the following advantages and beneficial effects:

[0020] 1. The utility model embodiment provides a magnetic power wave making equipment and a surfing pool, the magnetic element utilizes the non-contact characteristic of magnetic force, reduces mechanical friction and noise, simultaneously provides stable power output, the magnetic power driving element controls the size and direction of thrust by changing the magnetic field intensity or magnetic pole configuration, realizes accurate control of the moving element, the support element is connected with the surfboard through the connecting structure, can convert the movement of the moving element into the movement of the surfboard, thereby simulating a surge, the magnetic power wave making equipment is driven by magnetic force instead of traditional mechanical driving, significantly reduces the noise during equipment operation, improves the experience of tourists, and reduces the influence on the surrounding environment.

[0021] 2. The embodiment of the utility model discloses a magnetic engine is dragged to let the surfboard can move along the magnetic track, the surfboard and the direction of travel keep the inclination, can promote the water movement, thereby manufacture the artificial simulation wave. The noise of magnetic engine is far less than the noise of the existing vacuum wave making equipment when working, and the speed and the direction of motion of the surfboard can be accurately controlled through the control power and the current direction, and the controllability is good. The height, width and persistence of the wave can be regulated through the control of the inclination angle of the surfboard, so that the wave type is different, and the demand of different play crowd is satisfied. When cooperating with the slope of the bottom of the pool, the surge can be rolled up, so that some people who love surfing can also experience the feeling of surfing in the sea.

[0022] Overall, the embodiment of the utility model provides magnetic power wave making equipment and surfing pool, through setting up magnetic element, providing magnetic track and magnetic drive element, drive support member drives surfboard to move to simulate surge, to reduce noise, improve the purpose of customer experience. ACCURACY

[0023] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will briefly introduce the drawing needed to be used in the embodiment, it should be understood that the following drawing only shows some embodiments of the utility model, therefore should not be regarded as the limitation to the range, for ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other related drawings according to these drawings.

[0024] Figure 1 The magnetic power wave making equipment part structural diagram provided by the embodiment of the utility model is shown in the drawing;

[0025] Figure 2 The Figure 1 The structure of A in the drawing is enlarged;

[0026] Figure 3 The structural diagram of the magnetic power wave making equipment provided by the embodiment of the utility model is shown in the drawing;

[0027] Figure 4 The Figure 3 The structure of B in the drawing is enlarged;

[0028] Figure 5 The structural diagram of the support member provided by the embodiment of the utility model is shown in the drawing;

[0029] Figure 6 The cross section structural diagram of the magnetic power wave making equipment provided by the embodiment of the utility model is shown in the drawing;

[0030] Figure 7 The overhead view of the magnetic power wave making equipment provided by the embodiment of the utility model is shown in the drawing;

[0031] Figure 8 The magnetic power wave making equipment provided by the embodiment of the utility model is viewed from below;

[0032] Figure 9 The structure schematic diagram of the push wave board and the pool state position is provided for the embodiment of the utility model;

[0033] Figure 10 The schematic diagram of the principle that the push wave board pushes the water body to generate surge.

[0034] The marks and corresponding component names in the drawings are as follows:

[0035] 1-magnetic track, 2-bracket piece, 3-push wave board, 4-guide rail, 5-sensing piece, 6-roller, 7-magnetic motor, 8-rotating shaft piece, 9-rotating driving piece, 10-rotating driven piece, 11-rotating limiting piece, 12-first through groove, 13-second through groove, 14-central curved surface part, 15-first concave curved surface part, 16-second concave curved surface part, 17-first plane part, 18-second plane part, 19-pool bottom, 20-ceiling bracket, 21-water body, 22-upper through hole, 23-lower through hole. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model clearer, the technical scheme in the embodiment of the utility model will be described clearly and completely below in combination with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiments of the utility model, rather than all the embodiments. The components of the embodiment of the utility model described and shown in the drawings can be arranged and designed in various different configurations.

[0037] Therefore, the following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the claimed utility model, but only represents selected embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of protection of the utility model.

[0038] It should be noted that: similar marks and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.

[0039] In the description of the utility model, it should be explained that the terms "first", "second", "third" and the like are only used for differentiation, and cannot be understood as indicating or implying relative importance.

[0040] EMBODIMENT

[0041] Embodiment 1: as Figures 1-2As shown, the magnetic power wave making equipment provided by the embodiment of the utility model, including: magnetic force spare, support spare 2 and push wave board, wherein the magnetic force spare includes magnetic force track 1 and magnetic force driving part, the magnetic force track 1 provides stable guiding path, and the magnetic force driving part is responsible for generating driving force, and the moving part is directly or indirectly driven to move along the magnetic force track 1 by magnetic force effect. The moving part is arranged on the magnetic force track 1, and the magnetic force driving part is arranged to drive the moving part to move along the magnetic force track 1, so as to drive the support spare 2 to move along the magnetic force track 1. The support spare 2 is connected with the push wave board 3 through the connecting structure, can convert the movement of the moving part into the movement of the push wave board 3, thereby simulating the surge. In the embodiment of the utility model, the magnetic power wave making equipment is driven by magnetic force instead of traditional mechanical drive, which significantly reduces the noise during equipment operation, improves the experience of tourists, and reduces the influence on the surrounding environment. Compared with the traditional wave making equipment, the magnetic power wave making equipment can more accurately control the movement of the push wave board 3, thereby simulating more realistic and diverse surge effects to meet the needs of different scenes. The magnetic power wave making equipment provided by the embodiment of the utility model can realize remote operation through software control, is convenient and flexible, and can be adjusted according to needs, and effectively utilizes resources.

[0042] As a preferred embodiment of the utility model, it further includes a photovoltaic power supply mechanism, which is arranged to supply power to the magnetic force part. Specifically, the magnetic force track 1 includes a guide rail 4 and an inductor 5, the inductor 5 is laid along the extension direction of the guide rail 4, the magnetic force driving part is a magnetic force motor 7, and is arranged on the support spare 2, the support spare 2 is arranged on the magnetic force track 1, and moves on the magnetic force track 1 through the moving part. The moving part here can be a roller 6. The push wave board 3 is connected to the support spare 2, and the magnetic force motor 7 drives the support spare 2 to move along the magnetic force track 1, so that the push wave board 3 can move in a preset direction.

[0043] Exemplarily, the inductor 5 is an inductive plate, the support member 2 is provided with a plurality of magnetic force motors 7, the utility model adopts two guide rails 4 as the support of the support member 2, and the inductive plate is laid between the two guide rails 4. The roller 6 is provided with six, of course, in other embodiments, the number of the roller 6 can be adjusted according to the specification and quality of the product, which is not limited here, exemplarily, the roller 6 can be provided with one, two, three, seven, etc. Meanwhile, according to the noise condition, the material of the roller 6 can be selected differently, such as the small-sized device can be a nylon material roller 6, and the large-sized device can be a steel wheel, which is not limited here, and even in other embodiments, it is not limited to the structure of the roller 6, and can also be provided with a sliding groove structure, of course, the roller 6 structure provided in the utility model embodiment can help to keep the stability and accuracy of the support member 2 on the magnetic track 1, the existence of the roller 6 can reduce the deviation caused by the uneven track or installation error, and ensure that the movement of the surfboard 3 is more accurate. Meanwhile, the roller 6 can also select a rubber tire and other low-noise parts, cooperate with the low noise of the magnetic force motor 7, and enable the tourists to have a better playing experience; in the case that the noise reduction measures in the machine room can reduce the noise of the steel wheel to a small size, the steel wheel can still be selected, which is not limited here.

[0044] Preferably, the lower end of the inductive plate is provided with a mounting seat, the mounting seat can be provided with a height-adjustable structure, so that the height of the inductive plate can be adjusted, the heights of the plurality of inductive plates are ensured to be flush, and adjustment can be made during daily maintenance. Figures 7-10 As shown, the surfboard 3 in the utility model embodiment is preferably provided with a shuttle shape, of course, in other embodiments, the shape of the surfboard 3 is not limited, as long as the purpose of manufacturing stable surges can be achieved. Back to the utility model embodiment, the central part of the surfboard 3 is provided with a rotating shaft member 8, the rotating shaft member 8 is movably connected with the support member 2, and the plurality of magnetic force motors 7 are distributed on both sides of the rotating shaft member 8. It should be noted that the back of the surfboard 3 is a plane or a curved surface, and the overall cross section must be a standard shuttle shape, as long as the cross section shape of the two ends is sharp and then gradually widened to the middle. The length direction of the shuttle-shaped surfboard 3 has an angle θ with the movement direction, so that the water pushed by the appropriate width can be obtained, and the water flowing to the back side of the surfboard 3 can not interfere with the movement of the surfboard 3 through the flow guiding effect of the shape of the surfboard 3.

[0045] Further, as shown in Figures 3-6As shown, the magnetic wave-generating device of this utility model embodiment also includes a steering assembly. The steering assembly includes a steering drive component 9, a steering limit component 11, and a steering actuator. The steering actuator is connected to the wave-pushing plate 3. The steering limit component 11 is disposed on the support component 2. The steering drive component 9 is disposed on the support component 2 and its output end is connected to the steering actuator. The steering drive component 9, the steering actuator, and the steering limit component 11 cooperate to enable the wave-pushing plate 3 to pivot about the rotating shaft component 8, thereby changing the angle θ between the wave-pushing plate 3 and the direction of dragging motion.

[0046] In a preferred embodiment of this utility model, the support member 2 has a single extension portion (e.g., Figure 3 and Figure 5 The lower frame (of the structure) is used to install the steering drive component 9 and the steering limit component 11. In this embodiment, the steering actuator is located at the top of the wave-pushing plate 3 and is cylindrical. However, in other embodiments, the steering actuator can have other shapes, which are not limited here. The steering limit component 11 has an arc-shaped limiting groove, which can be an exemplary through groove through which the steering actuator passes. Since the output end of the steering drive component 9 is hinged to the steering actuator, the steering actuator can be driven to slide within the through groove, thereby driving the wave-pushing plate 3 to rotate, thus adjusting the angle θ between the wave-pushing plate 3 and the dragging direction. Preferably, the arc-shaped limiting grooves in this embodiment are symmetrically positioned. Of course, in other embodiments, other distribution forms can be designed according to the space available for the mounting bracket, as long as the arc-shaped grooves are on concentric circles, satisfying the limiting requirements without affecting the normal rotation of the wave-pushing plate 3. The arc-shaped limiting groove achieves limiting through two extreme positions, combined with the abutment of the output end of the steering drive component 9. For example, as shown... Figure 5 As shown, the arc-shaped limiting groove includes a first through groove 12 and a second through groove 13. Two steering actuators are provided, each passing through both the first through groove 12 and the second through groove 13. The first through groove 12 and the second through groove 13 are arranged concentrically. It should be noted that in other embodiments, the number of through grooves, steering actuators, and steering drive components 9 can be one, three, four, etc., and is not limited here; it can be adjusted according to actual needs.

[0047] Specifically, if the required turning angle of the wave-pushing plate 3 is different during the reciprocating wave-generating process, the distribution of the arc-shaped limiting grooves can be selected in different ways, such as... Figure 5As shown, the two arc-shaped limiting grooves are symmetrical, so if adjustment is needed, the left side of the first through groove 12 can be shortened, and the right side of the second through groove 13 can be shortened. In this way, the adjustment stroke of the wave board 3 in one direction is shortened by a part, and the stroke in the other direction remains unchanged, so that the size of the angle between the length direction of the wave board 3 and the advancing direction is changed when the wave board 3 reciprocates. In addition, the turning driven member can be arranged on the back of the wave board 3, and the arrangement position of the turning driving member can be adjusted adaptively. According to the mass of the wave board 3, other numbers of turning assemblies can also be arranged to ensure that the wave board 3 can quickly complete turning and positioning. The turning driving member 9 can be an electric cylinder, or other devices can be selected for driving according to the thrust requirement and the installation space, which is not limited here.

[0048] In the embodiment of the utility model, the connecting points of the rotating shaft member 8 and the support member 2 are axially spaced apart by two, distributed at the upper and lower ends, which are an upper through hole 22 and a lower through hole 23, and the rotating shaft member 8 penetrates the upper through hole 22 and the lower through hole 23 at the same time. In this way, the rotating shaft member 8 can be prevented from shaking, so that the wave board 3 will not shake due to the reaction force of the water body 21. When the volume and mass of the wave board 3 are large, only one connecting point can also be considered, because when the mass is sufficient, the wave board 3 can maintain stability by its own gravity and will not shake due to the reaction force of the water. Preferably, the side of the wave board 3 for pushing the water body 21 is a wave pushing surface, which can be arranged as an asymmetric structure. In this way, when the wave board 3 reciprocates in the extension direction of the magnetic track 1, the wave types generated in the two directions are different, providing different styles of waves for tourists. Of course, in other embodiments, the wave pushing surface can also be arranged as a symmetrical structure, so that the wave types generated in the two directions are the same or similar. At the same time, in the embodiment of the utility model, when the wave pushing surface is an asymmetric structure, the speed of the wave board 3 can be controlled by adjusting the angle θ between the wave board 3 and the advancing direction and changing the output power of the magnetic motor 7, so that the wave types generated in the two directions during reciprocation are similar or the same. The specific angle and power can be obtained through experiments and pre-stored in the control system of the equipment, and in practice, the operator can directly select the corresponding wave type.

[0049] In the embodiment of the utility model, the magnetic motor 7 can be arranged on the mounting bracket, and the number of the magnetic motor 7 can be increased or decreased according to the power requirement. The support member 2 can also be further arranged to extend the area for installing the magnetic motor 7, meeting the power requirements of different specifications of products. If there is local damage, it can be quickly repaired and maintained, ensuring the continuous use of the product.

[0050] As the preferred embodiment of the utility model, the wave pushing surface includes a central curved surface part 14, a first reverse concave curved surface part 15, a second direction curved surface part, a first plane part 17 and a second plane part 18, the central curved surface part 14 is close to the central rotating shaft part 8, the two sides of the central curved surface part 14 are tangent to the first reverse concave curved surface part 15 and the second direction curved surface part respectively, and the other side of the first reverse concave curved surface part 15 and the second reverse curved surface part is spliced with the first plane part 17 and the second plane part 18 respectively. Since the wave pushing surface is an asymmetric structure, the curvature of the central curved surface part 14 itself does not require to be consistent, and the curvature of the first reverse concave curved surface part 15 and the second reverse concave curved surface part 16 on the two sides is also the same. Since the first reverse concave curved surface part 15 and the second reverse concave curved surface part 16 are provided, the front side of the first reverse concave curved surface part 15 and the second reverse concave curved surface part 16 can be mainly used for pushing the water body 21 when pushing the wave, and the rear side of the first reverse concave curved surface part 15 and the first reverse concave curved surface part 15 plays a guiding role on the water flow, avoiding that the resistance of the wave board 3 is too large when advancing.

[0051] In use, the height of the wave pushing board 3 can be controlled to be higher than a part of the water surface, preferably higher than the wave height for making the water body 21 in the advancing direction be pushed forward, and the wave height is not low due to the water around the wave pushing board 3 from the top. Preferably, the magnetic motor 7 can be further matched with a cooling mechanism, and the cooling mechanism includes a water tank and a cooler. The water tank is connected with the cooling inlet pipe of the magnetic motor 7 through a pipeline, the cooling outlet pipe of the magnetic motor 7 is connected with the cooler, and the cooler is used for cooling and circulating the cooling liquid flowing out of the cooling outlet pipe. In the cooling circulation, the water pump is used to provide the power for the cooling liquid flow, and the water pump can be arranged on the pipeline between the water tank and the magnetic motor 7.

[0052] In the embodiment of the utility model, the photovoltaic power supply mechanism is arranged to supply power to the magnetic part. Specifically, a wave making room can be arranged at the place where the magnetic power wave making equipment is installed. A roof support 20 is arranged in the wave making room, and a roof is arranged on the top of the roof support 20. The roof can cover the magnetic power wave making equipment, so that the induction plate and other components are not directly exposed to sunlight and are not overheated. Solar photovoltaic panels can be arranged on the wave making room, and energy storage devices such as energy storage batteries can be arranged inside the wave making room. The solar photovoltaic panels convert light energy and store it in the energy storage batteries. A power supply track can be arranged in the length direction of the magnetic track 1, such as being arranged above the support part 2, so that the power supply track is convenient to use. The power supply track is electrically connected with the energy storage batteries through an inverter. A current collector can be arranged on the support part 2, and the current collector is electrically connected with the power supply track. The power supply track can supply power to the current collector during the movement of the current collector with the support part, so as to supply power to the magnetic motor. Of course, the energy storage batteries can also be charged by the mains, so as to provide double protection for the operation of the equipment and avoid the influence of sudden power failure on the use. In addition, the batteries can be used only for the cooling mechanism and the steering assembly of the equipment, and the magnetic motor 7 is supplied with power by the mains.

[0053] In the embodiment 2, a surf pool is provided, which comprises a pool and the magnetic power wave making device provided in the embodiment 1, the magnetic power wave making device is installed on one side of the pool, and the wave board 3 runs in the area close to the bank. The side of the wave board 3 away from the bank can be provided with a separation facility to avoid the visitors entering the running area of the wave board 3. The separation facility can be a separation net, which allows the water pushed out by the wave board 3 to pass through and blocks the visitors. Preferably, the bottom 19 of the pool is provided with a slope, the length direction of the slope is parallel to the wave direction of the magnetic power wave making device or has a small angle, and the surge pushed out by the wave board 3 can be turned up when encountering the slope to form a whole rolling wave which can be used for surfing and provides the visitors who like surfing with the experience opportunity. It should be noted that according to the distribution of the slope of the pool bottom, the rolling waves in different positions can be formed, so that more people can experience surfing together.

[0054] The preferred embodiments of the present application have been described above with the aid of drawings and are not intended to limit the present application, and for those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application. It should be noted that the structures or components shown in the drawings are not necessarily drawn to scale, and the present application omits the description of known components and processing technologies and processes to avoid unnecessary limitation of the present application.

Claims

1. A magnetic power wave making apparatus, characterized by, The application relates to a magnetic power wave making device. The magnetic power wave making device comprises a magnetic power component, a support component and a surfboard. The magnetic power component comprises a magnetic power track (1) and a magnetic power driving component. The support component (2) is provided with a moving component, the moving component is arranged on the magnetic power track (1), and the magnetic power driving component is arranged to drive the moving component to move along the magnetic power track (1) so as to drive the support component (2) to move along the magnetic power track (1).

2. A magnetic dynamic wave making apparatus according to claim 1, characterized in that, The surfboard (3) is connected with the support component (2) and can move with the support component (2).

3. A magnetic dynamic wave making apparatus according to claim 2, characterized in that The magnetic power track (1) comprises a guide track (4) and an induction component (5), the induction component (5) is arranged along the extension direction of the guide track (4), and the moving component is a plurality of rollers (6).

4. A magnetic dynamic wave making apparatus according to claim 1, characterized by The magnetic power driving component drives the rollers (6) to move on the guide track (4).

5. A magnetic dynamic wave making apparatus according to claim 4, wherein The magnetic power driving component comprises a plurality of magnetic power engines (7), and each magnetic power engine (7) is arranged on the support component (2).

6. A magnetic dynamic wave making apparatus according to claim 4, wherein The magnetic power wave making device further comprises a turning assembly which can drive the surfboard (3) to turn, the surfboard (3) is provided with a turning shaft component (8), the turning shaft component (8) is connected with the support component (2) and can turn relative to the support component (2).

7. A magnetic dynamic wave making apparatus according to claim 1, wherein The turning assembly comprises a turning driving component (9), a turning driven component (10) and a turning limiting component (11), the turning driven component (10) is connected with the surfboard (3), the turning driving component (9) is used for driving the turning driven component (10) to drive the surfboard (3) to turn, and the turning limiting component (11) is arranged on the support component (2) and is arranged to limit the angle range of the surfboard (3) when turning.

8. A magnetic dynamic wave making apparatus according to claim 7, characterized in that The upper end of the support component (2) is provided with an upper through hole, the lower end of the support component (2) is provided with a lower through hole, the turning shaft component (8) penetrates through the upper through hole and the lower through hole and can rotate in the upper through hole and the lower through hole.

9. A magnetic dynamic wave making apparatus according to claim 1, wherein The surfboard (3) has a multi-curved surface structure, and the cross section of the surfboard (3) is in a structure with two sharp ends.

10. A wave pool characterized in that, The cross section of the surfboard (3) is in a shuttle shape, the surfboard (3) comprises a central curved surface part (14) arranged in the middle, a first concave-contrary curved surface part (15) and a second concave-contrary curved surface part (16) are arranged on the two sides of the central curved surface part (14) respectively, the central curved surface part (14) is arranged outwardly convexly, the first concave-contrary curved surface part (15) and the second concave-contrary curved surface part (16) are arranged inwardly concavely, the outer side of the first concave-contrary curved surface part (15) is provided with a first plane part (17), and the outer side of the second concave-contrary curved surface part (16) is provided with a second plane part (18). The magnetic power wave making device further comprises a photovoltaic power supply mechanism which is arranged to supply power to the magnetic power component. The magnetic power wave making device is used for simulating a wave surge in a surfing pool.