Water slide way for water park

By designing a multi-level water slide system with automatic recovery function, the problems of insufficient diversity and inconvenient operation and management of traditional water slides have been solved, thus improving entertainment value and operational efficiency.

CN223944948UActive Publication Date: 2026-02-27SICHUAN ZHONGMING AMUSEMENT EQUIP MFG CO LTD
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Patent Information

Application Number
CN202423298076.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional water slides lack diversity and interactivity, and the gliding equipment is inconvenient to retrieve and is easily lost or damaged, resulting in high operation and management costs.

Method used

Design a water slide system that includes an aerial platform, a return slide, a serpentine slide, a circular slide, and a low-altitude slide. Combine multiple slide types to achieve multi-level transitions and use the return slide to achieve automatic recovery of the sliding air cushion.

Benefits of technology

It enhances the diversity and entertainment value of water slides, reduces labor costs, lowers the risk of lost slides, and maintains the cleanliness of the pool area.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water recreational facilities, and discloses a water slide for a water park, which comprises a high-altitude platform, a return slide, a recreational slide and a pool, the pool is provided with an accommodating cavity for accommodating water, the top of the accommodating cavity is provided with a first opening, one end of the high-altitude platform is connected with the outlet end of the return slide, and the other end of the high-altitude platform is connected with the recreational slide. The amusement slide way comprises a snake-shaped slide way, an annular slide way and a low-altitude slide way, the other end of the high-altitude platform is connected with the inlet end of the snake-shaped slide way, the outlet end of the snake-shaped slide way is communicated with the inlet end of the annular slide way, and the outlet end of the annular slide way is communicated with the inlet end of the low-altitude slide way. The outlet end of the low-altitude slide way communicates with the containing cavity. According to the slideway disclosed by the invention, by skillfully combining different types of slideways, multi-level conversion from high altitude to the ground can be realized, so that not only can the visual effect be improved, but also multiple choices can be provided for tourists with different requirements. By means of the design, the diversity and inclusiveness of the whole sliding way can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of water amusement facilities, in particular to a water slide for water park. BACKGROUND

[0002] With the vigorous development of leisure and entertainment industry, water park as an important part of it, is increasingly loved by the majority of tourists. In order to meet the pursuit of different age groups and interest groups of stimulation, fun and safety, the water slide facilities in the water park are constantly innovated and technically upgraded. The traditional water slide is mostly designed with single path, lacks diversity and interactivity, and is difficult to provide rich recreational experience. In addition, the traditional slide also has many inconveniences in operation management and equipment maintenance, such as manual recovery of sliding tools (such as sliding air cushion), which increases labor cost and is easy to cause loss or damage of articles. SUMMARY

[0003] The utility model aims at providing a water slide for water park to solve the problems in the background art.

[0004] In order to achieve the above purpose, the utility model provides a water slide for water park, which comprises an aerial platform, a return slide, a recreational slide and a pool.

[0005] The pool has a containing cavity for containing water, and the top of the containing cavity has a first opening.

[0006] One end of the aerial platform is connected with the outlet end of the return slide, and the inlet end of the return slide is communicated with the containing cavity.

[0007] The recreational slide comprises a serpentine slide, a loop slide and a low-altitude slide, the other end of the aerial platform is connected with the inlet end of the serpentine slide, the outlet end of the serpentine slide is communicated with the inlet end of the loop slide, the outlet end of the loop slide is communicated with the inlet end of the low-altitude slide, and the outlet end of the low-altitude slide is communicated with the containing cavity.

[0008] Optionally, the loop slide is placed horizontally along the axis.

[0009] Optionally, the loop slide comprises a loop plate, a first annular baffle and a second annular baffle.

[0010] The loop plate has opposite first and second open ends, the first annular baffle is arranged on the first open end, and the second annular baffle is arranged on the second open end.

[0011] The first annular baffle, the second annular baffle and the inner wall of the loop plate jointly define a slide cavity.

[0012] The first cavity opening is arranged as an inlet end of the annular slide, and the second cavity opening is arranged as an outlet end of the annular slide.

[0013] Optionally, the first annular baffle has a highest position and a lowest position, and the second cavity opening is located at the lowest position.

[0014] An included angle between a center plane of the first cavity opening extending in a radial direction of the annular slide and a center plane of the second cavity opening extending in the radial direction of the annular slide is greater than 70° and less than 90°.

[0015] Optionally, the water slide further comprises a mounting bracket.

[0016] The mounting bracket is arranged on opposite sides of the annular slide.

[0017] Optionally, the serpentine slide comprises a first section, an intermediate section and a second section.

[0018] The first section is internally formed with a first cavity, the intermediate section is internally formed with a second cavity, and the second section is internally formed with a third cavity.

[0019] The first cavity and the third cavity are respectively connected to two ends of the second cavity, one end of the first cavity away from the second cavity is connected to a top surface of the high-altitude platform, and one end of the third cavity away from the second cavity is connected to an inlet end of the annular slide.

[0020] Optionally, the water slide further comprises a first support frame.

[0021] A plurality of first support frames are arranged on a lower surface of the serpentine slide and are spaced apart along an extension direction of the serpentine slide.

[0022] Optionally, the low-altitude slide comprises a first part and a second part connected to each other.

[0023] The first part is internally formed with a fourth cavity, and the second part is internally formed with a fifth cavity.

[0024] One end of the fourth cavity away from the fifth cavity is in communication with an outlet end of the annular slide, and one end of the fifth cavity away from the fourth cavity is in communication with the containing cavity.

[0025] Optionally, the water slide further comprises a second support frame;

[0026] The low-altitude slide is configured as a spiral structure slide, and a plurality of the second support frames are arranged on a lower surface of the spiral structure slide and are arranged at intervals along an extension direction of the spiral structure slide.

[0027] Optionally, the water slide further comprises a protective seat;

[0028] The protective seat is arranged on the high-altitude platform, is connected to one end of the first section away from the middle section, has a second upward opening cavity, and is arranged to be in communication with the first cavity.

[0029] Through the above technical solution, the tourists can choose to slide into the pool from the high-altitude platform through the amusement slide. Since the amusement slide comprises the serpentine slide, the loop slide and the low-altitude slide, the serpentine slide starts from the other end of the high-altitude platform, the structure of the serpentine slide is winding and tortuous, and the serpentine slide can provide a complex and variable sliding experience. The loop slide is connected behind the serpentine slide, which can increase the fun and challenge of sliding. The inlet end of the low-altitude slide is connected to the outlet end of the loop slide, and the design of the low-altitude slide can be relatively gentle or have a deceleration function, which can safely guide the tourists into the containing cavity of the pool. The amusement slide in the present disclosure can realize multi-level conversion from high altitude to ground by ingeniously combining different types of slides (i.e., the serpentine slide, the loop slide and the low-altitude slide), which not only can improve the visual effect, but also is conducive to increasing the diversity and inclusiveness of the entire slide. In addition, the return slide is arranged, so that the sliding air cushion in the pool can be sent back to the high-altitude platform for recycling, which not only can achieve the purpose of automatic recycling, but also helps to maintain the neatness of the pool area.

[0030] Other features and advantages of the present disclosure will be described in detail in the following detailed description section. BRIEF DESCRIPTION OF DRAWINGS

[0031] The accompanying drawings are included to provide a further understanding of the present disclosure and constitute a part of the specification, and are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation on the present disclosure. In the drawings:

[0032] Figure 1 is a structural schematic view of a water slide for a water park in a first perspective provided by an exemplary embodiment of the present disclosure;

[0033] Figure 2 is a structural schematic view of a water slide for a water park in a second perspective provided by an exemplary embodiment of the present disclosure;

[0034] Figure 3is a structural schematic diagram of a water slide for a water park in a third perspective provided by an exemplary embodiment of the present disclosure.

[0035] Legend of reference signs

[0036] 10, high-altitude platform; 20, return slide; 30, amusement slide; 31, serpentine slide; 311, first section; 312, intermediate section; 313, second section; 32, loop slide; 321, loop plate; 322, first annular baffle; 323, second annular baffle; 324, slide cavity; 325, first cavity opening; 326, second cavity opening; 33, low-altitude slide; 331, first part; 332, second part; 40, pool; 41, containing cavity; 42, first opening; 50, mounting bracket; 60, first support frame; 70, second support frame; 80, guard seat. DETAILED DESCRIPTION

[0037] The specific embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present disclosure, and are not intended to limit the present disclosure.

[0038] In the present disclosure, unless otherwise stated, the orientation words such as "up, down, left, right" are generally defined as the direction of the drawing surface, and "inner, outer" refers to the inner and outer contours of the relevant components. In addition, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.

[0039] In the description of the present disclosure, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood in a broad sense, for example, can be fixedly connected, can also be detachably connected, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium; can be internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.

[0040] As Figures 1 to 3As shown, the present disclosure provides a water slide for a water park, including a high platform 10, a return slide 20, a fun slide 30, and a pool 40, the pool 40 has a containing cavity 41 for containing water, the top of the containing cavity 41 has a first opening 42, one end of the high platform 10 is connected with an outlet end of the return slide 20, an inlet end of the return slide 20 is communicated with the containing cavity 41, the fun slide 30 includes a serpentine slide 31, a loop slide 32, and a low slide 33, the other end of the high platform 10 is connected with an inlet end of the serpentine slide 31, an outlet end of the serpentine slide 31 is communicated with an inlet end of the loop slide 32, an outlet end of the loop slide 32 is communicated with an inlet end of the low slide 33, and an outlet end of the low slide 33 is communicated with the containing cavity 41.

[0041] It needs to be understood that the tourists can slide in the fun slide 30 through the sliding air cushion.

[0042] Among them, the high platform 10 can be used as a place for tourists to start sliding, since the high platform 10 is located at a high position, the high platform 10 can provide a certain height and stimulation.

[0043] Among them, the pool 40 is used to receive the tourists and the sliding air cushion sliding down from the end of the fun slide 30. The pool 40 not only can provide a safe landing point for ending the sliding, but also can make the tourists continue to enjoy the fun in the water.

[0044] Among them, the return slide 20 can be used to recycle the sliding air cushion in the pool 40.

[0045] Through the above technical solution, by setting the fun slide 30, the tourists can choose to slide from the high platform 10 to the pool 40 through the fun slide 30. Since the fun slide 30 includes three parts of the serpentine slide 31, the loop slide 32, and the low slide 33, the serpentine slide 31 starts from the other end of the high platform 10, the structure of the serpentine slide 31 is winding and tortuous, which can provide a complex and variable sliding experience, the loop slide 32 is connected after the serpentine slide 31, which can increase the fun and challenge of sliding. The inlet end of the low slide 33 is connected with the outlet end of the loop slide 32, the design of the low slide 33 can be relatively gentle or have a deceleration function, which can safely guide the tourists into the containing cavity 41 of the pool 40. The fun slide 30 in the present disclosure can realize multi-level conversion from high altitude to ground by ingeniously combining different types of slides (i.e. the serpentine slide 31, the loop slide 32, and the low slide 33), which not only can improve the visual effect, but also is conducive to increasing the diversity and inclusiveness of the whole slide. In addition, by setting the return slide 20, the sliding air cushion in the pool 40 can be sent back to the high platform 10 for recycling, which not only can achieve the purpose of automatic recycling, but also is helpful to maintain the neatness of the pool 40 area.

[0046] Optionally, the water slide further comprises a lifting mechanism, the return slide 20 has a return cavity, the lifting mechanism is located in the return cavity and is movably connected to the cavity wall of the return cavity, so that the lifting mechanism can drive the gliding air cushion to move along the extension direction of the return cavity. In this way, after the gliding of the tourists is finished, the used gliding air cushion can be directly sent back to the starting point (i.e. the high-altitude platform 10) through the return slide 20 for the tourists on the high-altitude platform 10 to continue to use, without the need for manual recovery by the staff, which can save manpower and time, can effectively reduce the loss of the gliding air cushion due to poor management, thereby reducing the operating cost, and timely recovery of the gliding air cushion can help to maintain the cleanliness of the pool 40 area and provide a more spacious play environment for the tourists in the pool.

[0047] As an embodiment, as shown in Figures 1 to 3 The annular slide 32 is axially and horizontally placed.

[0048] During the gliding of the tourists, the tourists can experience longitudinal rotation and can feel strong centrifugal force and weightlessness. Such a design is beneficial to increase the entertainment and stimulation.

[0049] Specifically, when the tourists slide into the annular slide 32 from the serpentine slide 31, the tourists first slide down along the slope, then enter the bottom of the annular slide 32, and then the tourists are accelerated and slide upwards and reach the top of the annular slide 32. Near the top, the tourists can feel a short period of weightlessness, and then continue to slide downwards and finally reach the bottom of the annular slide 32.

[0050] The structure of the annular slide 32 can provide an eye-catching visual effect, which not only can enhance the ornamental value of the amusement facility, but also can become a landmark scenic spot of the water park.

[0051] As an embodiment, as shown in Figure 1 The annular slide 32 comprises an annular plate 321, a first annular baffle 322 and a second annular baffle 323. The annular plate 321 has opposite first and second open ends. The first annular baffle 322 is arranged on the first open end, and the second annular baffle 323 is arranged on the second open end. The first annular baffle 322, the second annular baffle 323 and the inner wall of the annular plate 321 jointly define a slide cavity 324. A first cavity opening 325 is formed on the annular plate 321, and a second cavity opening 326 is formed on the first annular baffle 322. The first cavity opening 325 and the second cavity opening 326 are both in communication with the slide cavity 324. The first cavity opening 325 is arranged as the entrance end of the annular slide 32, and the second cavity opening 326 is arranged as the exit end of the annular slide 32.

[0052] Through the first and second ring baffles 322 and 323, the tourists can be effectively prevented from accidentally falling off the slide when sliding at high speed, and the safety of the entire slide can be increased.

[0053] The first cavity opening 325 is arranged on the ring plate 321 as an entrance end of the ring slide 32. The second cavity opening 326 is arranged on the first ring baffle 322 as an exit end of the ring slide 32. The first and second cavity openings 325 and 326 are both in communication with the slide cavity 324, so that the water flow and the tourists from the first cavity opening 325 can smoothly pass through the slide cavity 324 to the second cavity opening 326, and the congestion or stagnation can be avoided.

[0054] As an embodiment, as shown in Figure 2 The first ring baffle 322 has a highest position and a lowest position, the position of the second cavity opening 326 coincides with the lowest position, and the included angle between the center plane of the first cavity opening 325 extending along the radial direction of the ring slide 32 and the center plane of the second cavity opening 326 extending along the radial direction of the ring slide 32 is greater than 70° and less than 90°.

[0055] In this way, on the one hand, the dynamic feeling during sliding can be increased, so that the tourists can feel obvious ups and downs and centrifugal force changes when passing through the ring slide 32, which is beneficial to enhancing the stimulation and interest of the amusement facility. On the other hand, the transition part between the highest point and the lowest point of the ring slide 32 can provide the tourists with a strong visual impact experience during sliding.

[0056] Since the second cavity opening 326 is located at the lowest position, the speed of the tourists when leaving the ring slide 32 is relatively low, which helps to reduce the impact force and can ensure the safety of the tourists entering the pool 40.

[0057] As an embodiment, as shown in Figures 1 to 3 The water slide further comprises mounting brackets 50, and the opposite sides of the ring slide 32 are respectively provided with the mounting brackets 50.

[0058] Through the mounting brackets 50, on the one hand, the dynamic load generated by the tourists when passing through can be effectively shared and dispersed. On the other hand, the wind resistance of the slide can be enhanced to ensure the stability and safety of the ring slide 32 under any weather conditions. In addition, it is also helpful to maintain the shape and position of the slide and prevent deformation or displacement due to long-term use or external factors.

[0059] As an embodiment, as shown in Figures 1 to 3As shown, the serpentine slide 31 includes a first section 311, a middle section 312, and a second section 313. The first section 311 has a first cavity formed inside, the middle section 312 has a second cavity formed inside, and the second section 313 has a third cavity formed inside. The first and third cavities are both closed cavities, while the second cavity is a semi-closed cavity. The first and third cavities are connected to the two ends of the second cavity, respectively. The end of the first cavity away from the second cavity is connected to the top surface of the high-altitude platform 10, and the end of the third cavity away from the second cavity is connected to the inlet end of the annular slide 32.

[0060] The first cavity is completely closed, which can increase the sense of mystery and stimulation, making the tourists feel stronger visual and auditory isolation during the sliding process.

[0061] The second cavity is semi-closed, which allows some light and external scenery to enter, increasing the sense of openness and visual change during the sliding process.

[0062] The third cavity is completely closed, providing a continuous and immersive sliding experience.

[0063] The smooth connection between the cavities ensures the smooth flow of water and tourists, avoiding potential stagnation or blockage problems.

[0064] In addition, the change from the closed cavity to the semi-closed cavity and then to another closed cavity can effectively manage the tourists' psychological expectations and increase the attraction of the amusement facility.

[0065] To enhance the safety and structural stability of the serpentine slide 31, as an embodiment, Figures 1 to 3 As shown, the water slide also includes a first support frame 60, and a plurality of first support frames 60 are installed on the lower surface of the serpentine slide 31 and are arranged at intervals along the extension direction of the serpentine slide 31.

[0066] Since the plurality of support frames are arranged at intervals along the extension direction of the serpentine slide 31, this ensures that each bend and turn has sufficient support points, without being too dense to affect the aesthetics and smoothness of the slide. It also helps to evenly distribute the stress on the slide structure, avoiding local stress concentration and prolonging the service life of the slide.

[0067] In addition, the height of the support frame can be adjusted according to the terrain and slide design to adapt to different height differences, ensuring that the slide can maintain a horizontal or desired inclination angle at any position.

[0068] As an embodiment, Figures 1 to 3As shown, the low-altitude slide 33 comprises a first portion 331 and a second portion 332 connected together, the first portion 331 has a fourth cavity formed inside, and the second portion 332 has a fifth cavity formed inside, the fourth cavity is configured as a closed cavity, the fifth cavity is configured as a semi-closed cavity, the fourth cavity is in communication with the outlet end of the annular slide 32 at an end away from the fifth cavity, and the fifth cavity is in communication with the accommodation cavity 41 at an end away from the fourth cavity.

[0069] The fourth cavity is completely closed, which can increase the sense of mystery and stimulation, so that the tourists can feel stronger visual and auditory isolation during the sliding process.

[0070] The fifth cavity is semi-closed, allowing part of the light and external scenery to enter, which can increase the openness and visual changes during the sliding process.

[0071] In order to enhance the safety and structural stability of the low-altitude slide 33, as an embodiment, Figures 1 to 3 As shown, the water slide further comprises a second support frame 70, the low-altitude slide 33 is configured as a spiral structure slide, a plurality of second support frames 70 are installed on the lower surface of the spiral structure slide, and the plurality of second support frames 70 are arranged at intervals along the extension direction of the spiral structure slide.

[0072] The arrangement of the plurality of second support frames 70 not only provides physical support for the spiral structure slide, especially at the bending and turning parts of the slide, but also effectively shares and disperses the weight of the slide itself and the dynamic load generated when the tourists pass through. It can also prevent the slide from deforming or shifting during long-term use, ensuring the stability of its shape and position. At the same time, it can help the slide structure to distribute the stress evenly, avoiding local stress concentration, thereby prolonging the service life of the slide. In addition, since the spiral structure itself will increase a certain centrifugal force, the distribution of the plurality of support frames can effectively reduce the vibration that may occur during the sliding process, providing a more stable sliding experience.

[0073] As an embodiment, Figure 1 As shown, the water slide further comprises a protective seat 80, the protective seat 80 is arranged on the high-altitude platform 10, the protective seat 80 is connected to an end of the first section 311 away from the intermediate section 312, the protective seat 80 has a second opening upward cavity, and the cavity is arranged to be in communication with the first cavity.

[0074] The protective seat 80 can provide additional safety protection for the tourists who are about to enter the slide. Especially in high-risk areas such as the high-altitude platform 10, the protective seat 80 can effectively prevent tourists from accidentally falling or sliding out of the slide.

[0075] Since the cavity of the protective seat 80 is communicated with the first cavity, a smooth transition area is formed, so that the tourists can gradually accelerate into the slide from a relatively static state, and the discomfort and potential danger caused by sudden acceleration can be reduced.

[0076] In addition, the presence of the protective seat 80 can provide clear visual guidance for the tourists, remind the tourists of the position about to enter the slide, and reduce the nervousness of the first-time experiencers.

[0077] The preferred embodiments of the present disclosure are described in detail above in combination with the drawings, but the present disclosure is not limited to the specific details in the above-described embodiments. Within the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all belong to the protection scope of the present disclosure.

[0078] In addition, it should be noted that each specific technical feature described in the above specific embodiments can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, the present disclosure will not further describe various possible combinations.

[0079] In addition, various different embodiments of the present disclosure can also be combined in any manner, as long as they do not deviate from the idea of the present disclosure, and they should also be considered as disclosed by the present disclosure.

Claims

1. A water slide for a water park, characterized in that, It includes an aerial platform (10), a return slide (20), an amusement slide (30), and a pool (40); The pool (40) has a receiving cavity (41) for containing water, and the top of the receiving cavity (41) has a first opening (42). One end of the high-altitude platform (10) is connected to the outlet end of the return slide (20), and the inlet end of the return slide (20) is connected to the receiving cavity (41); The amusement slide (30) includes a serpentine slide (31), a circular slide (32), and a low-altitude slide (33). The other end of the high-altitude platform (10) is connected to the inlet end of the serpentine slide (31). The outlet end of the serpentine slide (31) is connected to the inlet end of the circular slide (32). The outlet end of the circular slide (32) is connected to the inlet end of the low-altitude slide (33). The outlet end of the low-altitude slide (33) is connected to the receiving cavity (41).

2. The water slide according to claim 1, characterized in that, The annular slide (32) is placed horizontally along the axis.

3. The water slide according to claim 2, characterized in that, The annular slide (32) includes an annular plate (321), a first annular baffle (322), and a second annular baffle (323); The annular plate (321) has a first open end and a second open end, with a first annular baffle (322) provided on the first open end and a second annular baffle (323) provided on the second open end. The inner walls of the first annular baffle (322), the second annular baffle (323), and the annular plate (321) together define the slide cavity (324). A first cavity (325) is formed on the annular plate (321), and a second cavity (326) is formed on the first annular baffle (322). Both the first cavity (325) and the second cavity (326) are connected to the slide cavity (324). The first cavity (325) is set as the inlet end of the annular slide (32), and the second cavity (326) is set as the outlet end of the annular slide (32).

4. The water slide according to claim 3, characterized in that, The first annular baffle (322) has a highest position and a lowest position, and the position of the second cavity (326) coincides with the lowest position; The angle between the central plane of the first cavity (325) extending radially along the annular slide (32) and the central plane of the second cavity (326) extending radially along the annular slide (32) is greater than 70° and less than 90°.

5. The water slide according to claim 2, characterized in that, The water slide also includes a mounting bracket (50); The mounting brackets (50) are respectively provided on both sides of the annular slide (32).

6. The water slide according to claim 1, characterized in that, The serpentine slide (31) includes a first section (311), a middle section (312), and a second section (313); The first segment (311) has a first cavity inside, the middle segment (312) has a second cavity inside, and the second segment (313) has a third cavity inside. The first cavity and the third cavity are both constructed as closed cavities, and the second cavity is constructed as a semi-closed cavity. The first cavity and the third cavity are respectively connected to the two ends of the second cavity. The end of the first cavity away from the second cavity is connected to the top surface of the high-altitude platform (10), and the end of the third cavity away from the second cavity is connected to the inlet end of the annular slide (32).

7. The water slide according to claim 1, characterized in that, The water slide also includes a first support frame (60). The lower surface of the serpentine slide (31) is provided with a plurality of first support frames (60), which are spaced apart along the extension direction of the serpentine slide (31).

8. The water slide according to claim 1, characterized in that, The low-altitude slide (33) includes a first part (331) and a second part (332) connected together; The first part (331) has a fourth cavity inside, and the second part (332) has a fifth cavity inside. The fourth cavity is a closed cavity, and the fifth cavity is a semi-closed cavity. The end of the fourth cavity away from the fifth cavity is connected to the outlet end of the annular slide (32), and the end of the fifth cavity away from the fourth cavity is connected to the receiving cavity (41).

9. The water slide for a water park according to claim 1, characterized in that, The water slide also includes a second support frame (70). The low-altitude slide (33) is constructed as a spiral slide, and a plurality of second support frames (70) are installed on the lower surface of the spiral slide. The plurality of second support frames (70) are arranged at intervals along the extension direction of the spiral slide.

10. The water slide for a water park according to claim 6, characterized in that, The water slide also includes a protective seat (80). The protective seat (80) is disposed on the high-altitude platform (10). The protective seat (80) is connected to the end of the first segment (311) away from the middle segment (312). The protective seat (80) has a second upward-facing cavity, which is configured to communicate with the first cavity.