Modularized water playing park pool
Through the modularly designed support components and pool components, combined with fiberglass material and connection devices, the problem of high construction costs and immovable existing water park equipment is solved, and a low-cost, easy to disassemble and assembly and high safety water park pool is realized, suitable for a variety of places.
Patent Information
- Application Number
- CN202422289479.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing water park equipment has problems such as high construction costs, long cycles, immovable, low safety factor and high land nature requirements.
The supporting components and pool body components are adopted with modular design, and the modular first straight bottom groove, second straight bottom groove, straight guard groove, first outer corner guard groove and second outer corner guard groove made of fiberglass are spliced to form a water storage cavity through the connection device, and are equipped with a return water tank and an overflow water tank. The support components adopt a modular main beam, secondary beam and inter-beam structure to achieve rapid disassembly and assembly and transition.
It has achieved a water park pool with low cost, easy disassembly and assembly, high safety and wide range of applicable places. It has a solid structure and is suitable for different terrains, reducing construction difficulty and cost.
Smart Images

Figure CN223062116U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water park equipment, in particular to a modular water park pool. Background Art
[0002] In the current market, there are roughly three types of water park equipment: the first is a medium and large-sized water park with a reinforced concrete pool and a fiberglass slide; the second is a water park with an inflatable pool and an inflatable slide; the third is a simple water park with a pipe rack support structure, a membrane and small items. These three types of water park equipment all carry out corresponding water play methods around different forms of pool bodies. Among them, the former reinforced concrete pool is a reinforced concrete structure pool, which has high construction costs, a long cycle, a large self-weight, is immovable and cannot be transferred, and can only be used in a fixed location. Generally, the land property should be commercial land. The latter two, the inflatable pool and the pipe and membrane pool, are simple types, which are prone to deformation, not durable, have a single water play product and a low safety factor. Content of the Utility Model
[0003] The purpose of the utility model is to provide a spliced modular water park pool.
[0004] The purpose of the utility model is achieved as follows.
[0005] A modular water park pool includes a support component and a pool body component. The support component is installed on the ground, and the pool body component is detachably installed on the top of the support component.
[0006] The pool body component includes modular first straight bottom grooves, second straight bottom grooves, straight guard grooves, first outer corner guard grooves and second outer corner guard grooves. A plurality of first straight bottom grooves, second straight bottom grooves, straight guard grooves, first outer corner guard grooves and second outer corner guard grooves are spliced together through a connecting device to form a water storage cavity with an open top.
[0007] The water park pool of the utility model adopts modular design and production, is convenient for transportation, has low cost, is easy to disassemble and assemble, is convenient for transfer and use, has a firm structure after assembly, is safe to use, has low requirements for the use place, has no requirements for the land property, and can be used after the site is hardened and leveled.
[0008] Furthermore, the first straight bottom groove, the second straight bottom groove, the straight guard groove, the first outer corner guard groove and the second outer corner guard groove are made of fiberglass and are all provided with docking flange parts extending outward. Any two adjacent docking flange parts are respectively provided with positioning holes. The connecting device includes screws and nuts. The nuts pass through two aligned positioning holes and are threadedly connected with the nuts, and the adjacent docking flange parts are abutted and sealed.
[0009] The installation and disassembly of the pool body component are simple, easy and convenient.
[0010] Furthermore, a water stop rubber strip is provided between adjacent butt flange parts, and a sealant layer is provided on the inner side of the joint formed between adjacent butt flange parts.
[0011] The water storage cavity of the pool body assembly has good sealing performance and is not easy to leak.
[0012] Furthermore, a positioning angle steel is provided at the top of the support assembly. The positioning angle steel is provided with fixing holes corresponding to the positioning holes. The fixing holes are aligned with the corresponding positioning holes. After the nut passes through the two aligned positioning holes and fixing holes, it is threadedly connected with the nut, and the adjacent butt flange parts and the positioning angle steel are connected and fixed.
[0013] The positioning, installation, disassembly of the support assembly and the pool body assembly are simple, easy and convenient.
[0014] Furthermore, at least one straight protection groove is provided with a water return tank, and the water return tank communicates with the water storage cavity.
[0015] The water return tank is connected to the machine room to realize functions such as water inlet, drainage, and water replacement of the water storage cavity.
[0016] Furthermore, at least one second outer corner protection groove is provided with an overflow water tank, and the overflow water tank communicates with the water storage cavity.
[0017] The water return tank is connected to the machine room to realize functions such as anti-overflow and flow pushing of the water storage cavity.
[0018] Furthermore, reinforcing ribs are provided on the outer side or near the inner side of the first straight bottom groove, the second straight bottom groove, the straight protection groove, the first outer corner protection groove and the second outer corner protection groove.
[0019] The pool body assembly is firm and not easy to be damaged.
[0020] Furthermore, the pool body assembly further includes a support frame. The support frame is detachably installed on the outer side of the top of the pool body assembly through a connecting device to form a coping for the pool edge. A light strip is provided inside the support frame. The light strip beautifies the contour of the pool body and indicates the range of the pool body assembly.
[0021] Furthermore, the support assembly includes modular main beams, secondary beams and intermediate beams. The main beams, secondary beams and intermediate beams are connected and fixed through a connecting device. The top surfaces of the main beams, secondary beams and intermediate beams are flush. A number of columns for connecting and fixing to the ground are provided at the bottoms of the main beams and some secondary beams.
[0022] The support assembly also adopts modular design and production, which is convenient for transportation, low in cost, easy to disassemble and assemble, and convenient for use in transferring sites.
[0023] Furthermore, a first connecting part is provided on the side of the main beam, and a second connecting part is provided on the side of the secondary beam. Connecting holes are respectively provided at the end of the secondary beam, between the first connecting part, the second connecting part and the end of the intermediate beam. The connecting device includes screws and nuts. The nut passes through two aligned connecting holes and is threadedly connected with the nut, so that the end of the secondary beam is connected and fixed to the first connecting part, the second connecting part and the end of the intermediate beam. The main beam and the end of the main beam are connected and fixed through a connecting plate and a connecting device. Positioning angle steels are provided on the top surfaces of the main beam and some secondary beams.
[0024] The support assembly is simple, easy and convenient to install and disassemble.
[0025] Both the support assembly and the pool body assembly of the present utility model are modularly designed and produced, which is convenient for transportation, installation and disassembly. After assembly, the structure is firm, the use is safe, the requirements for the use place are low, there are no requirements for the land property, and it can be used after the site is hardened and leveled. Brief Description of the Drawings
[0026] Figure 1 It is a three-dimensional structural schematic diagram of Embodiment 1.
[0027] Figure 2 It is a three-dimensional structural schematic diagram of the pool body assembly in Embodiment 1.
[0028] Figure 3 It is a three-dimensional structural schematic diagram of the support assembly in Embodiment 1.
[0029] Figure 4 It is a three-dimensional structural schematic diagram of the first outer corner protection groove in Embodiment 1.
[0030] Figure 5 It is a three-dimensional structural schematic diagram of the straight protection groove in Embodiment 1.
[0031] Figure 6 It is a three-dimensional structural schematic diagram of the straight protection groove with a water return tank in Embodiment 1.
[0032] Figure 7 It is a three-dimensional structural schematic diagram of the second outer corner protection groove in Embodiment 1.
[0033] Figure 8 It is a three-dimensional structural schematic diagram of the second outer corner protection groove of the overflow water tank in Embodiment 1.
[0034] Figure 9 It is a top view structural schematic diagram of the first outer corner protection groove in Embodiment 1.
[0035] Figure 10 It is a top view structural schematic diagram of the first straight bottom groove in Embodiment 1.
[0036] Figure 11 For Figure 10 The sectional structural schematic diagram in the A-A direction in
[0037] Figure 12 is Figure 11 Schematic diagram of the enlarged structure of part B in
[0038] Figure 13 Top view structure diagram of the straight protection groove in the first embodiment.
[0039] Figure 14 Top view structure diagram of the straight protection groove with a water return tank in the first embodiment.
[0040] Figure 15 Large-scale connection structure diagram of the pool body component connected by the connecting device in the first embodiment.
[0041] Figure 16 Top view structure diagram of the support component in the first embodiment.
[0042] Figure 17 is Figure 16 Large-scale connection structure diagram of the main beam and secondary beam connected by the connecting device in the C-C section in
[0043] Figure 18 is Figure 16 Large-scale connection structure diagram of the secondary beam and intermediate beam connected by the connecting device in the D-D section in
[0044] Figure 19 Side view structure diagram after the first embodiment is installed on the ground.
[0045] Figure 20 is Figure 19 Large-scale connection structure diagram of the positioning angle steel of the pool body component and the support component connected by the connecting device in the E-section in
[0046] Figure 21 is Figure 19 Large-scale connection structure diagram of the column and the ground in the F-section in
[0047] Figure 22 is Figure 19 Large-scale connection structure diagram of the support frame, light strip and pool body component connected by the connecting device in the G-G section in
[0048] Figure 23 is Figure 19 Large-scale connection structure diagram of the main beam and the main beam connected by the connecting device in the H-section in
[0049] Figure 24 is Figure 23 Schematic diagram of the I-I section structure in Specific implementation mode
[0050] The present invention will be further described below in conjunction with the drawings and embodiments.
[0051] Embodiment 1, see Figure 1-24As shown in the figure, a modular water park pool includes a support component 1, a pool body component 2, and a machine room (not shown in the figure). The support component 1 is detachably installed on the ground, and the pool body component 2 is detachably installed on the top of the support component 1.
[0052] The pool body component 2 includes a number of modular first straight bottom grooves 21, second straight bottom grooves 22, straight guard grooves 23, first outer corner guard grooves 24, second outer corner guard grooves 25, and a support frame 26. A number of the first straight bottom grooves 21, second straight bottom grooves 22, straight guard grooves 23, first outer corner guard grooves 24, and second outer corner guard grooves 25 are spliced together by a connecting device 3 to form a water storage cavity with an open top. Among them, four first outer corner guard grooves 24 are placed at the four corners. The two first outer corner guard grooves 24 are connected by a straight guard groove 23. The gap formed after the first outer corner guard groove 24 and the straight guard groove 23 are spliced is spliced by a first straight bottom groove 21. In this way, the first outer corner guard groove 24, the straight guard groove 23, and the first straight bottom groove 21 are spliced to form the rectangular bottom wall of the water storage cavity. The second outer corner guard groove 25 is spliced on the first outer corner guard groove 24. The gap between the side surface of the second outer corner guard groove 25 and the top surface of the straight guard groove 23 is spliced on the straight guard groove 23 by a second straight bottom groove 22. In this way, the straight guard groove 23, the second outer corner guard groove 25, and the second straight bottom groove 22 are spliced to form the rectangular side wall of the water storage cavity. An armrest ladder 27 for entering and exiting the water storage cavity is provided on a part of the rectangular side wall.
[0053] Among them, the number of the first straight bottom grooves 21 and the second straight bottom grooves 22 determines the horizontal area of the water storage cavity, and the number of the second straight bottom grooves 22 and the second outer corner guard grooves 25 determines the height of the water storage cavity.
[0054] The first straight bottom groove 21 is square, the second straight bottom groove 22 is rectangular, the straight guard groove 23 is L-shaped. The length of the second straight bottom groove 22 is equal to the side length of the first straight bottom groove 21. The length of the straight guard groove 23 is equal to the side length of the first straight bottom groove 21. The length and width of the first outer corner guard groove 24 are both equal to the width of the straight guard groove 23. The height of the first outer corner guard groove 24 is equal to the height of the straight guard groove 23. The length and width of the second outer corner guard groove 25 are equal to the length and width of the first outer corner guard groove 24. The height of the second outer corner guard groove 25 is equal to the height of the second straight bottom groove 22.
[0055] The first straight bottom groove 21, the second straight bottom groove 22, the straight protection groove 23, the first outer corner protection groove 24 and the second outer corner protection groove 25 are made of fiberglass reinforced plastic and are all provided with a butt flange portion 28 extending outward. Any two adjacent butt flange portions 28 are respectively provided with a positioning hole 29. The connecting device 3 includes a screw 31 and a nut 32. The nut 32 passes through two aligned positioning holes 29 and is threadedly connected with the nut 32, and the adjacent butt flange portions 28 are abutted and sealed. Preferably, a water stop rubber strip (not shown in the figure) is provided between the adjacent butt flange portions 28. Further, a sealing glue layer (not shown in the figure) is provided on the inner side of the joint formed between the adjacent butt flange portions 28. In the present utility model, the performance of the raw materials and finished products of the fiberglass reinforced plastic should meet the requirements of GB8408 and GB / T18168 standards. The connecting device 3 further includes a flat washer 33 and a spring washer 34. The flat washer 33 and the spring washer 34 are sleeved on the screw 31 and locked by the nut 32.
[0056] Reinforcing ribs 20 are provided on the outer side or near the inner side of the first straight bottom groove 21, the second straight bottom groove 22, the straight protection groove 23, the first outer corner protection groove 24 and the second outer corner protection groove 25. Specifically, a hollow pipe portion is formed on the bottom surface of the corresponding part, and a polyurethane layer 4 is filled in the hollow pipe portion to form the reinforcing rib 20. Preferably, there are multiple reinforcing ribs 20, and the reinforcing ribs 20 are arranged in a cross shape or a grid shape.
[0057] The support frame 26 can be detachably installed on the outer side of the top of the pool body assembly 2 through the connecting device 3 to form a pool edge coping. A light strip 9 is provided inside the support frame 26. The support frame 26 extends out a support arm 5. The support arm 5 is provided with a mounting hole 50. The mounting hole 50 is aligned with the positioning holes 29 of the butt flange portions 28 of the corresponding second straight bottom groove 22 and the first outer corner protection groove 24. The screw 31 passes through the mounting hole 50 and the two positioning holes 29 and is then threadedly connected with the nut 32, thereby installing the support frame 26.
[0058] In this embodiment, four straight protection grooves 23 are provided with a water return tank 6 and a communicating water port 61, and the water return tank 6 communicates with the water storage cavity. Eight second outer corner protection grooves 25 are provided with an overflow water tank 7, and the overflow water tank 7 communicates with the water storage cavity. The water return tank 6 and the overflow water tank 7 are both provided with pipeline interfaces on the outer side of the pool body assembly 2. The pipeline interfaces are connected to the machine room through pipelines. Water treatment and water circulation equipment are installed in the machine room, and the machine room realizes functions such as injection, discharge, filtration, overflow recovery, and pushing of the water in the water storage cavity. The water return tank 6 and the overflow water tank 7 are both connected and fixed by opening holes on the straight protection groove 23 and the second outer corner protection groove 25 through the connecting device 3. Here, the connecting device 3 further includes a rubber sealing ring.
[0059] The support assembly 1 includes a modular main beam 11, a secondary beam 12 and an intermediate beam 13. The main beam 11, the secondary beam 12 and the intermediate beam 13 are connected and fixed by a connecting device 3. A plurality of columns 14 for connecting and fixing with the ground are welded at the bottom of the main beam 11 and part of the secondary beam 12. Specifically, a first connecting portion 15 is provided on the side of the main beam 11, a second connecting portion 16 is provided on the side of the secondary beam 12, and connecting holes 17 are provided at the end of the secondary beam 12 and the first connecting portion 15, the second connecting portion 16 and the end of the intermediate beam 13, respectively. The connecting device 3 includes a screw 31 and a nut 32. The nut 32 passes through two aligned connecting holes 17 and is threadedly connected with the nut 32, so that the end of the secondary beam 12 is connected and fixed with the first connecting portion 15, the second connecting portion 16 and the end of the intermediate beam 13. The top surface of the main beam 11 and part of the secondary beam 12 (located at the outer secondary beam 12) is provided with a positioning angle steel 18. Preferably, the bottom of the column 14 is fixed to the ground by an expansion anchor 8. There are two main beams 11 arranged parallel to each other along the length direction, and the ends of the main beams 11 are connected and fixed by the connecting plate 10 and the connecting device 3 to achieve the extension of the length. The secondary beams 12 are arranged in parallel, and the two ends of the secondary beams 12 are respectively connected and fixed to a main beam 11, and the two ends of the intermediate beams 13 are respectively connected and fixed to the adjacent secondary beams 12.
[0060] The cross-section of the main beam 11 and the secondary beam 12 is I-shaped, and the cross-section of the intermediate beam 13 is inverted L-shaped. The top surfaces of the main beam 11, the secondary beam 12 and the intermediate beam 13 are flush.
[0061] The positioning angle steel 18 is provided with a fixing hole 19 corresponding to the positioning hole 29, and the fixing hole 19 is aligned with the corresponding positioning hole 29. The nut 32 passes through the two aligned positioning holes 29 and the fixing hole 19 and is threadedly connected with the nut 32. The adjacent docking flange parts 28 and the positioning angle steel 18 are connected and fixed to realize the connection and fixation of the tank body assembly 2 and the support assembly 1. Preferably, after the support assembly 1 is assembled, the docking flange parts 28 of the tank body assembly 2 are all seated on the corresponding main beam 11, secondary beam 12 and intermediate beam 13, so that the support assembly 1 can well bear the weight of the tank body assembly 2.
[0062] After the utility model is assembled to form a pool body, the support assembly 1 can continue to be assembled and extended out of the pool body, so that it can be connected with the steel structures of pedestrian platforms, slide supports, departure platforms and other structures to form a whole. The overall structure is more solid and stable, and it is safer to use.
[0063] As used in this utility model, the terms: first, second, etc., do not indicate any order, quantity or importance, but are only used for distinction.
[0064] As used in this utility model, the terms "a", "an", etc. do not indicate a limitation of quantity, but rather indicate the presence of at least one of the mentioned objects.
[0065] When terms indicating orientation or position are used in the present utility model, such as front end, rear end, top, bottom, side, longitudinal, transverse, middle, center, outer, inner, horizontal, vertical, left, right, above, below, etc., they mean to reflect relative positions rather than absolute positions. For example, the outer side refers to the side of the water storage cavity facing outward.
[0066] When terms such as approximately, overall, approximate, similar, etc. are used in the present utility model, they are limiting terms to indicate the existence of features but allowing certain deviations. The amount of allowable deviation may vary depending on the specific background.
Claims
1. A modular water park pool, characterized in that, It includes a support component (1) and a pool body component (2). The support component (1) is installed on the ground, and the pool body component (2) is detachably installed on the top of the support component (1). The pool body component (2) includes modular first straight bottom grooves (21), second straight bottom grooves (22), straight guard grooves (23), first outer corner guard grooves (24) and second outer corner guard grooves (25). A plurality of first straight bottom grooves (21), second straight bottom grooves (22), straight guard grooves (23), first outer corner guard grooves (24) and second outer corner guard grooves (25) are spliced together by a connecting device (3) to form a water storage cavity with an open top.
2. The modular water park pool according to claim 1, characterized in that, The first straight bottom grooves (21), second straight bottom grooves (22), straight guard grooves (23), first outer corner guard grooves (24) and second outer corner guard grooves (25) are made of fiberglass and are all provided with butt flange parts (28) extending outward. Any two adjacent butt flange parts (28) are respectively provided with positioning holes (29). The connecting device (3) includes a screw (31) and a nut (32). The nut (32) passes through two aligned positioning holes (29) and is threadedly connected to the nut (32), and the adjacent butt flange parts (28) are abutted and sealed.
3. The modular water park pool according to claim 2, characterized in that, A water stop rubber strip is provided between adjacent butt flange parts (28), and a sealing glue layer is provided on the inner side of the joint formed between adjacent butt flange parts (28).
4. The modular water park pool according to claim 2, characterized in that, A positioning angle steel (18) is provided on the top of the support component (1). The positioning angle steel (18) is provided with fixing holes (19) corresponding to the positioning holes (29). The fixing holes (19) are aligned with the corresponding positioning holes (29). The nut (32) passes through two aligned positioning holes (29) and fixing holes (19) and then is threadedly connected to the nut (32), and the adjacent butt flange parts (28) and the positioning angle steel (18) are connected and fixed.
5. The modular water park pool according to claim 1, characterized in that, At least one straight guard groove (23) is provided with a water return tank (6), and the water return tank (6) communicates with the water storage cavity.
6. The modular water park pool according to claim 1, characterized in that, At least one second outer corner guard groove (25) is provided with an overflow water tank (7), and the overflow water tank (7) communicates with the water storage cavity.
7. The modular water park pool according to claim 1, characterized in that, Reinforcing ribs (20) are provided on the outer side or near the inner side of the first straight bottom grooves (21), second straight bottom grooves (22), straight guard grooves (23), first outer corner guard grooves (24) and second outer corner guard grooves (25).
8. The modular water park pool according to claim 1, characterized in that, The pool body component (2) further includes a support frame (26). The support frame (26) is detachably installed on the outer side of the top of the pool body component (2) through the connecting device (3) to form a coping for the pool edge, and a light strip (9) is provided inside the support frame (26).
9. The modular water park pool according to claim 1, characterized in that, The support component (1) includes modular main beams (11), secondary beams (12) and intermediate beams (13). The main beams (11), secondary beams (12) and intermediate beams (13) are connected and fixed by a connecting device (3). The top surfaces of the main beams (11), secondary beams (12) and intermediate beams (13) are flush. A number of columns (14) for connecting and fixing to the ground are provided at the bottoms of the main beams (11) and some secondary beams (12).
10. The modular water park pool according to claim 9, characterized in that, On the side of the main beam (11), there is a first connecting part (15). On the side of the secondary beam (12), there is a second connecting part (16). Connecting holes (17) are respectively provided at the end of the secondary beam (12), the first connecting part (15), the second connecting part (16) and the end of the intermediate beam (13). The connecting device (3) includes a screw (31) and a nut (32). The nut (32) passes through two aligned connecting holes (17) and is threadedly connected with the nut (32), so that the end of the secondary beam (12) is connected and fixed to the first connecting part (15), the second connecting part (16) and the end of the intermediate beam (13). The main beam (11) and the end of the main beam (11) are connected and fixed through a connecting plate (10) and the connecting device (3). Positioning angle steels (18) are provided on the top surfaces of the main beam (11) and part of the secondary beams (12).