A large water splash amusement device

CN224598726UActive Publication Date: 2026-08-07HENAN HUALONG AMUSEMENT EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN HUALONG AMUSEMENT EQUIP CO LTD
Filing Date
2025-08-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0005]鉴于以上技术问题中的至少一项,本公开提供了一种水上大冲关游乐设备,旨在解决现有技术中的冲关设备建设周期长、适用范围有限的问题

Benefits of technology

[0016]1.本申请装置中的蓄水池是安装在地面上的,关卡相对独立且可拆卸地安装在蓄水池内;相比于现有技术中的挖池基建蓄水,装置中所设的蓄水池不受地域限制且搭建周期短,适用范围广;相比于现有技术中的关卡均需地基施工,装置中的关卡独立安装,易于拆卸,可降低搬迁成本。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of water big chongguan recreation facilities, belong to recreation facilities technical field, equipment includes water reservoir, the departure place of installation in the outer first end of water reservoir, first checkpoint, second checkpoint, third checkpoint, fourth checkpoint, fifth checkpoint, sixth checkpoint and seventh checkpoint are installed in water reservoir from front to back in proper order, the seventh checkpoint is located in the tail end of water reservoir;Water reservoir in the device of the present application is installed on ground, checkpoint is relatively independent and detachably installed in water reservoir;Compared with the pool infrastructure water storage in prior art, the water reservoir provided in device is not restricted by region and has short construction period, and has wide application range;Compared with checkpoint in prior art needs foundation construction, checkpoint in device is independently installed, easy to disassemble, can reduce relocation cost.
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Description

Technical Field

[0001] This utility model relates to the field of amusement equipment technology, specifically to a water obstacle course amusement equipment. Background Technology

[0002] Water obstacle course amusement equipment is a large-scale outdoor facility that integrates sports competition, entertainment experience and teamwork, and has developed rapidly in the cultural tourism industry in recent years.

[0003] However, most existing obstacle course equipment requires fixed support pillars on the ground, and each obstacle requires foundation construction, resulting in long-term land occupation and high relocation costs. Furthermore, the equipment relies on natural water bodies or large pools, leading to long construction periods and limiting its applicability. Therefore, a new type of water obstacle course amusement equipment needs to be designed to solve these problems.

[0004] The information disclosed in this background section is intended only to enhance the understanding of the background technology of this disclosure and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Utility Model Content

[0005] In view of at least one of the above technical problems, this disclosure provides a water obstacle course amusement equipment, which aims to solve the problems of long construction cycle and limited applicability of existing obstacle course equipment.

[0006] According to one aspect of this disclosure, a water obstacle course amusement device is provided, including a water reservoir, a starting point fitted to the outside of the front end of the water reservoir, and a first obstacle, a second obstacle, a third obstacle, a fourth obstacle, a fifth obstacle, a sixth obstacle, and a seventh obstacle installed sequentially from front to back inside the water reservoir, wherein the seventh obstacle is located at the rear end of the water reservoir.

[0007] Furthermore, the starting point includes a starting platform, entrance stairs symmetrically arranged on both sides of the starting platform, and front guardrails installed on the periphery of the starting platform and on both sides of the entrance stairs. The rear end of the starting platform is attached to the outer side of the front end of the water storage tank and is level with the water storage tank.

[0008] Furthermore, the first checkpoint includes a starting platform and a running belt installed in the water storage tank. The starting platform is attached to the inner side of the first end of the water storage tank, and the running belt is located behind the starting platform. A first turntable and a swing block are rotatably installed inside the starting platform. A first connecting rod is rotatably connected to the eccentric position of the first turntable. The outer end of the swing block extends to one side of the running belt. The other end of the first connecting rod is rotatably connected to the middle section of the swing block. A motor for driving the rotation of the first turntable is also connected below the first turntable.

[0009] Furthermore, the second checkpoint includes a support block installed in the water storage tank, multiple movable levers equidistantly and movably passing through the support block, symmetrically opened limiting transverse grooves at the lower ends of the movable levers, multiple linkage gears rotatably installed in the support block, a drive gear rotatably installed in the support block, connecting discs connected to both ends of the linkage gears, and an eccentric column located at an eccentric position on the outer side of the connecting discs. The linkage gears mesh with each other, and the linkage gears mesh with the drive gears. The linkage gears correspond to the area directly below the movable levers. The eccentric column movably passes through the limiting transverse grooves. A motor for driving the drive gear to rotate is also provided in the support block.

[0010] Furthermore, the third checkpoint includes a log bridge connecting the second and fourth checkpoints, a support frame erected within a water reservoir, a positioning gear rotatably mounted on the front center of the support frame, a rocker arm connected downwards to the positioning gear, a rocker hammer at the end of the rocker arm, an arc-shaped pendant and a second turntable rotatably mounted on the front of the support frame, a second connecting rod rotatably mounted at an eccentric position on the second turntable, and the other end of the second connecting rod rotatably connected to an eccentric position on the arc-shaped pendant. The lower arc surface of the arc-shaped pendant has gear teeth that mesh with the positioning gear, and a motor for driving its rotation is connected behind the second turntable.

[0011] Furthermore, the fourth checkpoint includes multiple floating pillars arranged at equal intervals, which float in the water storage tank and are connected at both ends between the third and fifth checkpoints.

[0012] Furthermore, the fifth checkpoint includes a rectangular block installed between the third and fourth checkpoints, a swinging ladder block located on the lower left front of the rectangular block, a movable ladder block located diagonally above and behind the swinging ladder block, a swinging ladder block located diagonally above and behind the movable ladder block, a transition block located diagonally above and behind the swinging ladder block, a swinging ladder block located diagonally below and behind the transition block, a movable ladder block located diagonally below and behind the swinging ladder block, and a swinging ladder block located diagonally below and behind the movable ladder block. The swinging ladder block is installed on the rectangular block in a longitudinal swinging manner, and the movable ladder block and the transition block are axially rotatably inserted through the rectangular block. The rectangular block has multiple swing openings. One end of the swinging step block rotatably passes through the swing opening and extends to the right side of the rectangular block. A rotating shaft is horizontally installed inside the swing opening and passes through the swinging step block, allowing the swinging step block to swing up and down around the rotating shaft. Multiple fixing plates are also fixed to the right side of the rectangular block. A swing disk is rotatably mounted on the fixing plates, and a swing rod is rotatably mounted at an eccentric position on the swing disk. The lower end of the swing rod is rotatably connected to the end of the swinging step block. A motor for driving the movable step block and transition block to rotate axially is also installed on the rectangular block, and a motor for driving the swing disk to rotate is also installed on the fixing plates.

[0013] Furthermore, the sixth checkpoint includes a connecting block located between the fifth and seventh checkpoints, a balance plate rotatably mounted between the connecting blocks, equidistant and rotatably mounted limiting columns on the balance plate, obstacle crossbars mounted on the limiting columns, and a connecting gear connected to the lower end of the limiting columns. The connecting gear is located at the bottom of the balance plate and meshes with each other. A motor for driving the connecting gear to rotate is also provided below the balance plate. A limiting swing block is also provided at the front end of the balance plate, and a limiting arc groove is formed inside the connecting block, allowing the limiting swing block to reciprocate within the limiting arc groove.

[0014] Furthermore, the seventh checkpoint includes a fixed block fitted to the inner side of the tail end of the water storage tank, an outlet ladder connected to the fixed block, and a rear guardrail installed on both sides of the outlet ladder and the outer perimeter of the upper plane of the fixed block. The fixed block also has a water injection cavity, and water outlet holes are equidistantly opened on the front inclined surface of the fixed block. The water outlet holes are connected to the water injection cavity.

[0015] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0016] 1. The water storage tank in the device of this application is installed on the ground, and the gate is installed relatively independently and detachably in the water storage tank; compared with the existing technology of digging a pool for water storage, the water storage tank in the device is not limited by the region and has a short construction period and wide applicability; compared with the existing technology where the gates all require foundation construction, the gates in the device are installed independently, are easy to disassemble, and can reduce relocation costs.

[0017] 2. The first stage of the device in this application adds a long swinging block that swings back and forth on the original running belt, which increases the difficulty for the contestants to pass this stage and increases the challenge of passing the stage.

[0018] 3. In the fifth stage of the device in this application, the swinging ladder blocks with the swinging design, together with the movable ladder blocks and transition blocks that are rotatably installed between the swinging ladder blocks, will make it easier for the contestants to fall into the water, increasing the difficulty and challenge for the contestants to pass the stage.

[0019] 4. In the sixth level of the device in this application, the swaying balance plate, combined with the rotating obstacle bar, makes it extremely challenging for the contestants to not only pay attention to the swaying balance plate to avoid slipping, but also to the rotating obstacle bar to avoid being swept off. This provides the contestants with a good experience in passing the level. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of the obstacle course amusement equipment in this utility model;

[0021] Figure 2 for Figure 1Enlarged diagram of section A in the middle;

[0022] Figure 3 for Figure 1 Enlarged schematic diagram of section B in the middle;

[0023] Figure 4 This is a partial cross-sectional view of the first checkpoint in this utility model;

[0024] Figure 5 This is a partial structural diagram of the second checkpoint in this utility model;

[0025] Figure 6 This is a structural schematic diagram of the fifth checkpoint in this utility model;

[0026] Figure 7 This is a structural diagram of the fifth checkpoint in this utility model from another direction;

[0027] Figure 8 This is a partial cross-sectional view of the sixth checkpoint in this utility model;

[0028] Figure 9 This is a partial cross-sectional view of the seventh checkpoint in this utility model.

[0029] In the above diagrams, 1. Water reservoir; 2. Starting point; 21. Starting platform; 22. Entrance stairs; 23. Front guardrail; 3. First checkpoint; 31. Running belt; 32. Starting platform; 33. First turntable; 34. First connecting rod; 35. Swing block; 4. Second checkpoint; 41. Support block; 42. Linkage gear; 43. Connecting disc; 44. Eccentric column; 45. Movable bar; 46. Limiting transverse groove; 47. Drive gear; 5. Third checkpoint; 51. Log bridge; 52. Support frame; 53. Swing rod; 54. Swing hammer; 55. Positioning gear; 56. Arc pendulum. Components; 57. Second turntable; 58. Second connecting rod; 6. Fourth checkpoint; 7. Fifth checkpoint; 71. Rectangular block; 71. Swing opening; 72. Swinging ladder block; 73. Movable ladder block; 74. Transition block; 75. Swinging disc; 76. Fixed plate; 77. Swinging rod; 8. Sixth checkpoint; 81. Balance plate; 82. Limiting swing block; 83. Limiting column; 84. Obstacle horizontal column; 85. Connecting gear; 86. Connecting block; 86. Limiting arc groove; 9. Seventh checkpoint; 91. Fixed block; 92. Exit ladder; 93. Rear guardrail; 94. Water injection chamber; 95. Water outlet. Detailed Implementation

[0030] In the description of this application, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," "vertical," "horizontal," "clockwise," and "counterclockwise," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. The terms "first," "second," etc., used in this application are used to distinguish the described objects and do not have any sequential or technical meaning. And the terms "connection" and "linkage," unless otherwise specified, include both direct and indirect connections (linkages).

[0031] This application provides a water obstacle course amusement device that solves the problems of long construction period and limited applicability of existing obstacle course devices. In order to better understand the technical solution of this application, the above technical solution will be described in detail below with reference to the accompanying drawings and specific implementation methods.

[0032] This example discloses a water obstacle course amusement device. See [link / reference] Figures 1-9 The equipment includes a water storage tank 1, a starting point 2 that is fitted and installed outside the front end of the water storage tank 1, and a first checkpoint 3, a second checkpoint 4, a third checkpoint 5, a fourth checkpoint 6, a fifth checkpoint 7, a sixth checkpoint 8, and a seventh checkpoint 9 installed sequentially from front to back inside the water storage tank 1. The seventh checkpoint 9 is located at the rear end of the water storage tank 1. The above checkpoints are installed independently and detachably inside the water storage tank 1.

[0033] The starting point 2 includes a starting platform 21, entrance stairs 22 symmetrically arranged on both sides of the starting platform 21, and front guardrails 23 installed on the periphery of the starting platform 21 and on both sides of the entrance stairs 22. The rear end of the starting platform 21 is attached to the outer side of the front end of the water storage tank 1 and is level with the water storage tank 1.

[0034] The first checkpoint 3 includes a starting platform 32 and a running belt 31 installed in the water storage tank 1. The starting platform 32 is attached to the inner side of the first end of the water storage tank 1, and the running belt 31 is located behind the starting platform 32. A first turntable 33 and a swing block 35 are rotatably installed in the starting platform 32. A first connecting rod 34 is rotatably connected to the eccentric position of the first turntable 33. The outer end of the swing block 35 extends to one side of the running belt 31. The other end of the first connecting rod 34 is rotatably connected to the middle section of the swing block 35. A motor for driving is also connected below the first turntable 33.

[0035] The second checkpoint 4 includes a support block 41 installed in the water storage tank 1, multiple movable levers 45 equidistantly and movably passing through the support block 41, symmetrically opened limiting transverse grooves 46 at the lower end of the movable levers 45, multiple linkage gears 42 rotatably installed in the support block 41, a drive gear 47 rotatably installed in the support block 41, a connecting disc 43 connecting both ends of the linkage gear 42, and an eccentric column 44 located at an eccentric position on the outer side of the connecting disc 43. The linkage gears 42 mesh with each other, and the linkage gears 42 mesh with the drive gears 47. The linkage gears 42 correspond to the area directly below the movable levers 45. The eccentric column 44 movably passes through the limiting transverse grooves 46. A motor for driving the drive gear 47 to rotate is also provided in the support block 41.

[0036] The third checkpoint 5 includes a log bridge 51 connecting the second checkpoint 4 and the fourth checkpoint 6, a support frame 52 erected in the reservoir 1, a positioning gear 55 rotatably mounted on the front center of the support frame 52, a rocker arm 53 connected downwards to the positioning gear 55, a rocker hammer 54 at the end of the rocker arm 53, an arc-shaped swing piece 56 rotatably mounted on the front of the support frame 52, and a second turntable 57. A second connecting rod 58 is rotatably mounted on the eccentric position of the second turntable 57. The other end of the second connecting rod 58 is rotatably connected to the eccentric position of the arc-shaped swing piece 56. The lower arc surface of the arc-shaped swing piece 56 has gear teeth that mesh with the positioning gear 55. A motor for driving the rotation of the second turntable 57 is also connected behind it.

[0037] The fourth level 6 includes multiple floating pillars arranged at equal intervals. The pillars float in the pool and are connected at both ends between the third level 5 and the fifth level 7.

[0038] The fifth checkpoint 7 includes a rectangular block 71 installed between the third checkpoint 5 and the fourth checkpoint 6, a swinging ladder block 72 located on the lower left side of the rectangular block 71, a movable ladder block 73 located diagonally above and behind the swinging ladder block 72, a swinging ladder block 72 located diagonally above and behind the movable ladder block 73, a transition block 74 located diagonally above and behind the swinging ladder block 72, a swinging ladder block 72 located diagonally below and behind the transition block 74, a movable ladder block 73 located diagonally below and behind the swinging ladder block 72, and a swinging ladder block 72 located diagonally below and behind the movable ladder block 73. The swinging ladder block 72 is longitudinally swinging on the rectangular block 71, and the movable ladder block 73 and the transition block 74 are axially rotatably inserted through the rectangular block 71. The rectangular block 71 has multiple swing openings 711. One end of the swinging step block 72 rotatably passes through the swing opening 711 and extends to the right side of the rectangular block 71. A rotating shaft is horizontally arranged inside the swing opening 711 and passes through the swinging step block 72, allowing the swinging step block 72 to swing up and down around the rotating shaft. Multiple fixing plates 76 are also fixed to the right side of the rectangular block 71. A swing disk 75 is rotatably mounted on the fixing plate 76, and a swing rod 77 is rotatably mounted at an eccentric position on the swing disk 75. The lower end of the swing rod 77 is rotatably connected to the end of the swinging step block 72. A motor for driving the movable step block 73 and the transition block 74 to rotate axially is also installed on the rectangular block 71, and a motor for driving the swing disk 75 to rotate is also installed on the fixing plate 76.

[0039] The sixth checkpoint 8 includes a connecting block 86 located between the fifth checkpoint 7 and the seventh checkpoint 9, a balance plate 81 rotatably mounted between the connecting blocks 86, equidistant and rotatably mounted limiting columns 83 on the balance plate 81, obstacle crossbars 84 mounted on the limiting columns 83, and a connecting gear 85 connected to the lower end of the limiting columns 83. The connecting gear 85 is located at the bottom of the balance plate 81 and meshes with each other. A motor for driving the connecting gear 85 to rotate is also provided below the balance plate 81. A limiting swing block 82 is also provided on the front end of the balance plate 81. A limiting arc groove 861 is also formed inside the connecting block 86, and the limiting swing block 82 performs reciprocating swing motion within the limiting arc groove 861.

[0040] The seventh checkpoint 9 includes a fixed block 91 that is fitted and installed on the inner side of the tail end of the water storage tank 1, an outlet ladder 92 that is connected to the fixed block 91, and a rear guardrail 93 installed on both sides of the outlet ladder 92 and on the outer perimeter of the upper plane of the fixed block 91. A water injection cavity 94 is also provided inside the fixed block 91, and water outlet holes 95 are provided at equal intervals on the front inclined surface of the fixed block 91. The water outlet holes 95 are connected to the water injection cavity 94.

[0041] Working principle: When implementing the device of this application, firstly, the motor is started to drive the first turntable 33 to rotate and simultaneously start the running belt 31 to rotate. The first turntable 33 drives one end of the first connecting rod 34 to perform a circular motion. The moving first connecting rod 34 drives the swing block 35 to perform a reciprocating swing motion. When the swing block 35 swings to the rightmost side, its end is close to the left side of the running belt 31. Next, the motor is started to drive the drive gear 47 to rotate. The drive gear 47 drives the linkage gear 42 meshing with it and multiple meshing linkage gears 42 to rotate synchronously. The linkage gear 42 drives the connecting discs 43 at both ends to rotate synchronously. The eccentric column 44 is driven to perform a circular motion. Since the eccentric column 44 can only move laterally within the limiting transverse groove 46, under the joint limitation of the eccentric column 44 and the support block 41, the movable lever 45 performs a reciprocating up and down displacement motion. Next, the motor is turned on to drive the second turntable 57 to rotate. The second turntable 57 drives one end of the second connecting rod 58 to perform a circular motion. The moving second connecting rod 58 drives the second connecting rod 35 to perform a reciprocating up and down displacement motion. The curved pendant 56 reciprocates, and because it meshes with the positioning gear 55, the positioning gear 55 rotates simultaneously, causing the rocker hammer 54 to reciprocate on the log bridge 51. Next, the motor on the rectangular block 71 is activated, driving the movable step block 73 and the transition block 74 to rotate. Simultaneously, the motor on the fixed plate 76 is activated, driving the swing disk 75 to rotate. The swing disk 75 then causes the upper end of the swing rod 77 to perform a circular motion. Under the limit of the rotating shaft inside the swing port 711, the moving swing rod 77 drives the right end of the swing step block 72 to swing up and down, thereby driving the swing step block 72 to swing up and down; then the motor is started to drive the connecting gear 85 to rotate, and under the action of meshing between them, the limit column 83 rotates and drives the obstacle horizontal column 84 to rotate; finally, the existing external water pipe is connected to the water injection chamber 94, and the water can flow out through the water outlet 95 and flow from the front inclined surface of the fixed block 91 into the water storage tank 1.

[0042] When contestants attempt to pass the obstacles, they can enter the starting platform 21 from the entrance stairs 22 and proceed through the obstacles sequentially from front to back. When passing the first obstacle 3, they first move from the starting platform 32 to the end of the swinging block 35. When the swinging block 35 swings to the left side of the running belt 31, the contestant can jump onto the running belt 31 and then quickly move forward to pass the first obstacle 3. The back-and-forth swinging design of the swinging block 35 increases the difficulty for contestants to enter the running belt 31, thus increasing the challenge. When passing the second obstacle 4, contestants must quickly jump over the movable bar 45 when it reaches its lowest point. Once all the movable bars 45 have been jumped over, the contestant passes the second obstacle 4. Upon passing the third checkpoint 5, contestants must cross the log bridge 51 to proceed to the next checkpoint. To avoid being hit by the swinging hammer 54 and falling into the water, contestants must quickly cross the log bridge 51 when the swinging hammer 54 is far away from the log bridge 51. Upon passing the fourth checkpoint 6, contestants simply need to quickly step on the floating pillars to cross. Upon passing the fifth checkpoint 7, contestants first stand on the first swinging step 72, wait for the movable step 73 to rotate to the forward position, quickly cross the movable step 73 and stand on the next swinging step 72, then wait for the transition block 74 to rotate to the horizontal position, quickly cross the transition block 74 and stand on the next swinging step 72, and finally wait for the last movable step 73 to rotate... When moving to the forward direction, simply pass quickly. The swinging ladder block 72, combined with the constantly rotating movable ladder block 73 and transition block 74, increases the difficulty for the contestants. Contestants need to grasp the timing and speed well to pass the fifth level 7, making it challenging. When passing the sixth level 8, contestants need to move in an S-shape around the limiting column 83 on the balance board 81. Because the balance board 81 is a movable design, it sways back and forth at a certain angle under the influence of gravity and the limiting arc groove 861. At the same time, contestants also need to cross the obstacle column 84 that is constantly rotating on the path until they pass the balance board 81. The movable balance board 81, in conjunction with the rotating obstacle bar 84, requires participants to be careful not only of the swaying balance board 81 to avoid slipping, but also of the rotating obstacle bar 84 to avoid being swept off, making it highly challenging and enhancing the participant's experience. Finally, participants successfully complete the obstacle course by passing the front slope of the fixed block 91 and entering its upper plane. After completing the course, participants can leave the equipment via the exit ladder 92. Because the front slope of the fixed block 91 also has water outlets 95 continuously injecting water, the reduced water flow decreases the friction between the participant and the slope, making it easier for them to slip and increasing the challenge of reaching the top. The water tank 1 also has outlets at a certain water level to prevent excessively high water levels from affecting the normal operation of the obstacle course.

[0043] In the device of this application, the motors used to drive the various components and the running belt 31 can be controlled by the main switch to start and stop synchronously. The specific control method is implemented by existing technology and is not within the protection scope of this technical solution. In addition, in the device of this application, the motors used to drive the first turntable 33, the drive gear 47, the second turntable 57, the movable step block 73, the transition block 74, the swing disk 75 and the connecting gear 85 are all existing technologies, and the running belt 31 is also existing technology. It is sufficient to implement the corresponding functions. The specific working principle will not be described in this technical solution.

[0044] Although some preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.

[0045] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from the spirit and scope of the invention. Therefore, if these modifications and variations of this invention fall within the scope of the claims of this application and their equivalents, this invention also intends to include these modifications and variations.

Claims

1. A water obstacle course amusement device, comprising a water tank (1) and a starting point (2) fitted and installed outside the front end of the water tank (1), characterized in that, It also includes a first checkpoint (3), a second checkpoint (4), a third checkpoint (5), a fourth checkpoint (6), a fifth checkpoint (7), a sixth checkpoint (8) and a seventh checkpoint (9) installed sequentially from front to back in the water storage tank (1), wherein the seventh checkpoint (9) is located at the tail end of the water storage tank (1).

2. The water obstacle course amusement equipment according to claim 1, characterized in that, The starting point (2) includes a starting platform (21), entrance stairs (22) symmetrically arranged on both sides of the starting platform (21), and front guardrails (23) installed on the periphery of the starting platform (21) and on both sides of the entrance stairs (22). The rear end of the starting platform (21) is attached to the outer side of the front end of the water storage tank (1) and is level with the water storage tank (1).

3. The water obstacle course amusement equipment according to claim 1, characterized in that, The first checkpoint (3) includes a starting platform (32) and a running belt (31) installed in the water storage tank (1). The starting platform (32) is attached to the inner side of the first end of the water storage tank (1), and the running belt (31) is located behind the starting platform (32). A first turntable (33) and a swing block (35) are rotatably installed in the starting platform (32). A first connecting rod (34) is rotatably connected to the eccentric position of the first turntable (33). The outer end of the swing block (35) extends to one side of the running belt (31), and the other end of the first connecting rod (34) is rotatably connected to the middle section of the swing block (35).

4. The water obstacle course amusement equipment according to claim 1, characterized in that, The fifth checkpoint (7) includes a rectangular block (71) installed between the third checkpoint (5) and the fourth checkpoint (6), a swinging ladder block (72) located on the lower left side of the rectangular block (71), a movable ladder block (73) located on the upper rear side of the swinging ladder block (72), a swinging ladder block (72) located on the upper rear side of the movable ladder block (73), a transition block (74) located on the upper rear side of the swinging ladder block (72), a swinging ladder block (72) located on the lower rear side of the transition block (74), a movable ladder block (73) located on the lower rear side of the swinging ladder block (72), and a swinging ladder block (72) located on the lower rear side of the movable ladder block (73). The swinging ladder block (72) is installed on the rectangular block (71) in a longitudinal swinging manner, and the movable ladder block (73) and the transition block (74) are rotatably mounted on the rectangular block (71) in an axial direction.

5. The water obstacle course amusement equipment according to claim 4, characterized in that, The rectangular block (71) has multiple swing openings (711). One end of the swing step block (72) can rotatably pass through the swing opening (711) and extend to the right side of the rectangular block (71). Multiple fixing plates (76) are also fixed on the right side of the rectangular block (71). A swing disk (75) can also be rotatably installed on the fixing plate (76). A swing rod (77) can also be rotatably installed at the eccentric position of the swing disk (75). The lower end of the swing rod (77) is rotatably connected to the end of the swing step block (72).

6. The water obstacle course amusement equipment according to claim 1, characterized in that, The sixth checkpoint (8) includes a connecting block (86) between the fifth checkpoint (7) and the seventh checkpoint (9), a balance plate (81) rotatably installed between the connecting blocks (86), a limiting column (83) equidistantly and rotatably installed on the balance plate (81), an obstacle crossbar (84) installed on the limiting column (83), and a connecting gear (85) connected to the lower end of the limiting column (83). The connecting gear (85) is located at the bottom of the balance plate (81) and meshes with each other.

7. The water obstacle course amusement equipment according to claim 6, characterized in that, The front end of the balance plate (81) is also provided with a limiting swing block (82), and a limiting arc groove (861) is also opened inside the connecting block (86). The limiting swing block (82) performs reciprocating swing motion in the limiting arc groove (861).

8. The water obstacle course amusement equipment according to claim 1, characterized in that, The seventh checkpoint (9) includes a fixed block (91) fitted to the inner side of the tail end of the water storage tank (1), an outlet ladder (92) connected to the fixed block (91) to the rear, and a rear guardrail (93) installed on both sides of the outlet ladder (92) and the outer perimeter of the upper plane of the fixed block (91). The fixed block (91) also has a water injection cavity (94) and water outlet holes (95) are equidistantly opened on the front inclined surface of the fixed block (91). The water outlet holes (95) are connected to the water injection cavity (94).