Water distribution cap and water distribution device for energy storage pool

By designing a split water cloth cap, the outer cap body and the inner cap body are connected by removable connecting parts, the problem of high process requirements and inconvenient cleaning in production and use of traditional water cloth caps is solved, and the processing difficulty and better cleaning effect are achieved.

CN222841666UActive Publication Date: 2025-05-09SICHUAN ZHICHENG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202421850571.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-09
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing water caps used in energy storage tanks have high technology requirements during production, and are not convenient for internal cleaning after long-term use.

Method used

A split water-coated cap is designed, including an outer cap body and an inner cap body. The outer cap body and the inner cap body are connected by a removable connecting piece, allowing for disassembly and cleaning after use.

Benefits of technology

It reduces the processing difficulty of the water cloth cap and can effectively clean the water cloth cavity, solving the cleaning problem of traditional integrated water cloth cap in production and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water distribution cap and a water distribution device for an energy storage pool, and relates to the technical field of water distribution caps, the water distribution cap comprises a mounting pipe, an outer cap body and an inner cap body, the inner cap body is arranged in the outer cap body and is detachably connected with the outer cap body through a plurality of connecting pieces, the mounting pipe is arranged at the top of the outer cap body, and each connecting piece comprises a connecting pipe and a connecting bolt. The connecting pipe is arranged on the inner side wall of the outer cap body, a matching groove hole matched with the connecting pipe is formed in the outer side wall of the inner cap body, a limiting groove hole matched with the matching groove hole is formed in the inner side wall of the inner cap body, a penetrating opening is formed in the limiting groove hole, and the penetrating opening is matched with the connecting pipe. One end of the connecting bolt can be in threaded connection with the connecting pipe through the penetrating opening, the other end of the connecting bolt can be inserted into the limiting groove hole for limiting, and the problems that when an existing integrated water distribution cap is produced, the requirements for the production technology and the technology are high, and after the water distribution cap is used for a long time, the interior of the water distribution cap is inconvenient to clean are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water distribution caps, in particular to a water distribution cap and a water distribution device for an energy storage pool. Background Art

[0002] A water distribution cap is a mechanical structure used to evenly distribute water flow. It is generally installed at the end of a pipe to evenly spread and spray the water in the pipe, so that the water flow is relatively evenly distributed. Water distribution caps are widely used in water storage, water treatment and other technical fields.

[0003] In the prior art, water distribution caps used in energy storage tanks mostly adopt an integrated structure, that is, the corresponding shell and cavity are integrally formed. Although the integrated structure can effectively improve the stability during use, this integrated and inseparable structure has high requirements on the production process and technology during production. At the same time, it is not convenient to clean the inside of the water distribution cap after long-term use.

[0004] In the utility model with application number: CN202021891265.2 and publication number: CN213357067U, a water distribution cap is disclosed, including an upper shell body and a lower shell body connected by a threaded seal, a hemispherical cavity is provided between the upper shell body and the lower shell body, the upper shell body is provided with a water inlet connected to the cavity, and the lower shell body is provided with a water outlet connected to the cavity, the top of the cavity is located on one side of the water inlet, and a hemispherical baffle A is provided above the water outlet with the top facing the water inlet side. However, it still has the problem of high requirements on production process and technology during production, and it is inconvenient to clean the inside of the water distribution cap after long-term use. Utility Model Content

[0005] Based on this, in order to address the above problems, the utility model proposes a water distribution cap and a water distribution device for an energy storage pool, which solves the problem that the current one-piece water distribution cap has high requirements on production process and technology during production and is inconvenient to clean the inside of the water distribution cap after long-term use.

[0006] The technical solution of the utility model is:

[0007] A water distribution cap for an energy storage pool comprises a mounting pipe, an outer cap body and an inner cap body, wherein the inner cap body is arranged in the outer cap body and is detachably connected to the outer cap body through a plurality of connectors, and the mounting pipe is arranged on the top of the outer cap body;

[0008] A water distribution cavity is provided between the outer cap body and the inner cap body, a through hole communicating with the water distribution cavity is provided on the top of the outer cap body, and the mounting pipe is matched with the through hole and communicated with the water distribution cavity through the through hole;

[0009] The connecting part includes a connecting tube and a connecting bolt. The connecting tube is arranged on the inner wall of the outer cap body. The outer wall of the inner cap body is provided with a matching slot hole matched with the connecting tube. One end of the connecting tube can be inserted into the matching slot hole. The inner wall of the inner cap body is provided with a limiting slot hole matched with the matching slot hole. A through-hole is provided in the limiting slot hole. The through-hole is matched with the connecting tube and is used to connect the limiting slot hole and the matching slot hole. One end of the connecting bolt can be threadedly connected to the connecting tube through the through-hole, and the other end of the connecting bolt can be inserted into the limiting slot hole for limitation.

[0010] Preferably, the outer cap body is a hexagonal cone structure, a mounting plane is provided on the top of the outer cap body, a through hole is provided on the mounting plane and penetrates the outer cap body from top to bottom, and a mounting tube is provided on the mounting plane and fixedly connected to the outer cap body.

[0011] Preferably, the inner cap body is a hexagonal cone structure, and the six outer surfaces of the inner cap body are arranged corresponding to the six inner surfaces of the outer cap body to form a water distribution cavity in the shape of a hexagonal cone.

[0012] Preferably, the connecting bolt includes a bolt rod and a hexagonal bolt head, the hexagonal bolt head is fixedly arranged at one end of the bolt rod, the other end of the bolt rod can be inserted into the connecting pipe through the through opening and threadedly connected to the connecting pipe, and the hexagonal bolt head can be inserted into the limiting slot for limiting.

[0013] Preferably, the number of the connecting members is three.

[0014] A water distribution device for an energy storage pool, comprising a plurality of water distribution caps for an energy storage pool as described above, and also comprising a water supply pipe body, a filter water distribution piece and a plurality of diversion components, wherein the filter water distribution piece is arranged on the top of the water supply pipe body and is communicated with the water supply pipe body, and the plurality of diversion components are arranged on the filter water distribution piece and are communicated with the filter water distribution piece, the filter water distribution piece is used to filter the water transported by the water supply pipe body, and the diversion component is used to divert the filtered water in the filter water distribution piece;

[0015] The filtering water distribution component includes a water distribution housing, a locking component and a tubular filter screen. The water distribution housing is provided with a receiving chamber. One end of the water supply pipe body is fixedly connected to the bottom of the water distribution housing and communicates with the receiving chamber. A limiting ring is provided on the top of the water distribution housing. The limiting ring is fixedly connected to the water distribution housing. The top of the tubular filter screen is fixedly connected to the locking component. The tubular filter screen can pass through the limiting ring to enter the receiving chamber and contact the bottom of the receiving chamber. The connection point between the water supply pipe body and the water distribution housing is matched with the bottom of the tubular filter screen. The lower end of the locking component can be inserted into the limiting ring and is threadedly connected to the limiting ring. A plurality of water distribution pipes are provided on the water distribution housing, and the water distribution pipes are communicated with the receiving chamber.

[0016] The diversion assembly includes a diversion pipe, a steering pipe and a fixed pipe. One end of the diversion pipe is connected to the water diversion pipe flange. The steering pipe is arranged at the other end of the diversion pipe, and one end of the steering pipe is connected to the diversion pipe flange. The other end of the steering pipe is threadedly connected to one end of the fixed pipe. The other end of the fixed pipe can be threadedly connected to the mounting pipe in the above-mentioned water distribution cap.

[0017] Preferably, a water supply port is provided at the lower end of the water supply pipe body, and the water supply port can be connected to an external water source for supplying water to the water supply pipe body.

[0018] Preferably, the water distribution shell is a hexagonal column structure, and the number of water distribution pipes is 6, wherein one water distribution pipe is provided on each surface of the water distribution shell, and the number of flow distribution components is the same as the number of water distribution pipes.

[0019] Preferably, the locking member is provided with a plurality of grooves.

[0020] Preferably, a mounting bracket is provided at the bottom of the water supply pipe body, and the bottom of the water supply pipe body and the mounting bracket are detachably connected via bolts.

[0021] Compared with the prior art, the beneficial effects of the utility model are:

[0022] The utility model configures the traditional one-piece water distribution cap into a split outer cap body and an inner cap body, and the outer cap body and the inner cap body are detachably connected via a connecting piece, which not only reduces the difficulty of processing the water distribution cap, but also allows the inner cap body and the outer cap body to be disassembled for cleaning after long-term use, so that the water distribution cavity can be effectively cleaned, thereby solving the problem that the current one-piece water distribution cap has high requirements on production process and technology during production and is inconvenient to clean the inside of the water distribution cap after long-term use. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the structure of a water distribution cap for an energy storage pool described in an embodiment of the utility model. Figure 1 ;

[0024] Figure 2 This is a schematic diagram of the structure of a water distribution cap for an energy storage pool described in an embodiment of the utility model. Figure 2 ;

[0025] Figure 3 It is a structural schematic diagram of the outer cap body described in the embodiment of the utility model;

[0026] Figure 4 This is a schematic diagram of the structure of the inner cap body described in the embodiment of the utility model Figure 1 ;

[0027] Figure 5 This is a schematic diagram of the structure of the inner cap body described in the embodiment of the utility model Figure 2 ;

[0028] Figure 6 It is a structural schematic diagram of a water distribution device for an energy storage pool described in an embodiment of the utility model;

[0029] Figure 7 It is a structural schematic diagram of the water separation housing described in the embodiment of the utility model;

[0030] Figure 8 It is a structural schematic diagram of the locking member described in the embodiment of the utility model;

[0031] Fig. 9 It is a structural schematic diagram of the flow diversion assembly described in the embodiment of the utility model;

[0032] Description of reference numerals:

[0033] 10-installing pipe, 11-outer cap body, 12-inner cap body, 100-water distribution cavity, 101-through hole, 102-installing plane, 20-connecting piece, 200-connecting pipe, 201-connecting bolt, 202-matching slot hole, 203-limiting slot hole, 204-through opening, 205-bolt rod, 206-hexagonal bolt head, 30-water supply pipe body, 300-water supply port, 40-filter water distribution part, 400-water distribution shell, 401-locking piece, 402-tubular filter screen, 403-accommodating cavity, 404-limiting ring, 405-water distribution pipe, 406-groove, 50-diversion assembly, 500-diversion pipe, 501-steering pipe, 502-fixed pipe, 60-mounting frame. DETAILED DESCRIPTION

[0034] The embodiments of the present utility model are described in detail below with reference to the accompanying drawings.

[0035] Example:

[0036] like Figures 1 to 5 As shown, in order to solve the above problems, this embodiment discloses a water distribution cap for an energy storage pool, comprising a mounting pipe 10, an outer cap body 11 and an inner cap body 12, wherein the inner cap body 12 is disposed inside the outer cap body 11 and is detachably connected to the outer cap body 11 through a plurality of connectors 20, and the mounting pipe 10 is disposed on the top of the outer cap body 11;

[0037] A water distribution cavity 100 is provided between the outer cap body 11 and the inner cap body 12. A through hole 101 communicating with the water distribution cavity 100 is provided at the top of the outer cap body 11. The mounting tube 10 is matched with the through hole 101 and communicates with the water distribution cavity 100 through the through hole 101.

[0038] The connecting piece 20 includes a connecting tube 200 and a connecting bolt 201. The connecting tube 200 is arranged on the inner wall of the outer cap body 11. The outer wall of the inner cap body 12 is provided with a matching slot 202 that is matched with the connecting tube 200. One end of the connecting tube 200 can be inserted into the matching slot 202. The inner wall of the inner cap body 12 is provided with a limiting slot 203 that is matched with the matching slot 202. The limiting slot 203 is provided with a through-hole 204. The through-hole 204 is matched with the connecting tube 200 and is used to connect the limiting slot 203 and the matching slot 202. One end of the connecting bolt 201 can be threadedly connected to the connecting tube 200 through the through-hole 204, and the other end of the connecting bolt 201 can be inserted into the limiting slot 203 for limitation.

[0039] The utility model configures a traditional one-piece water distribution cap into a split outer cap body 11 and an inner cap body 12, and the outer cap body 11 and the inner cap body 12 are detachably connected via a connecting piece 20, which not only reduces the difficulty of processing the water distribution cap, but also allows the inner cap body 12 and the outer cap body 11 to be disassembled for cleaning after long-term use, so that the water distribution cavity 100 can be effectively cleaned, thereby solving the problems of the current one-piece water distribution cap having high requirements on production process and technology during production and being inconvenient to clean the inside of the water distribution cap after long-term use.

[0040] During installation, it is only necessary to align the matching slot 202 on the outer wall of the inner cap body 12 with the connecting pipe 200 on the inner wall of the outer cap body 11, and then insert the inner cap body 12 into the outer cap body 11, so that the connecting pipe 200 is inserted into the matching slot 202, and then one end of the connecting bolt 201 is screwed into the connecting pipe 200 through the through-hole 204, and the other end of the connecting bolt 201 is inserted into the limiting slot 203 for limiting. The installation of the water distribution cap can be completed.

[0041] During disassembly, it is only necessary to unscrew the connecting bolt 201 and then pull the inner cap body 12 out of the outer cap body 11 .

[0042] like Figures 2 to 5 As shown, the outer cap body 11 is a hexagonal cone structure, a mounting plane 102 is provided on the top of the outer cap body 11, a through hole 101 is provided on the mounting plane 102 and penetrates the outer cap body 11 from top to bottom, and the mounting tube 10 is provided on the mounting plane 102 and fixedly connected to the outer cap body 11.

[0043] The inner cap body 12 is a hexagonal cone structure, and the six outer surfaces of the inner cap body 12 are arranged corresponding to the six inner surfaces of the outer cap body 11 to form a water distribution cavity 100 in the shape of a hexagonal cone.

[0044] The connecting bolt 201 includes a bolt rod 205 and a hexagonal bolt head 206. The hexagonal bolt head 206 is fixedly arranged at one end of the bolt rod 205. The other end of the bolt rod 205 can be inserted into the connecting pipe 200 through the through hole 204 and is threadedly connected to the connecting pipe 200. The hexagonal bolt head 206 can be inserted into the limiting slot 203 for limiting.

[0045] When in use, the outer cap body 11 and the inner cap body 12 of the hexagonal cone structure can form a water distribution cavity 100 in the shape of a hexagonal cone, so that the water flow can be sprayed out evenly along six surfaces, thereby realizing the uniform water distribution function of the water distribution cap.

[0046] In order to reduce the influence of the connecting piece 20 on the water distribution chamber 100, the number of the connecting pieces 20 should not be too many. The number of the connecting pieces 20 is generally 2-4. In the present embodiment, as further preferred, the number of the connecting pieces 20 is 3.

[0047] The arrangement of the connecting piece 20 can effectively connect and fix the inner cap body 12 and the outer cap body 11 .

[0048] like Figures 6 to 9 As shown, a water distribution device for an energy storage pool includes a plurality of water distribution caps for an energy storage pool as described above, and also includes a water supply pipe body 30, a filter water distribution member 40 and a plurality of diversion components 50, wherein the filter water distribution member 40 is arranged on the top of the water supply pipe body 30 and communicated with the water supply pipe body 30, and the plurality of diversion components 50 are arranged on the filter water distribution member 40 and communicated with the filter water distribution member 40, the filter water distribution member 40 is used to filter the water transported by the water supply pipe body 30, and the diversion component 50 is used to divert the filtered water in the filter water distribution member 40;

[0049] The filtering water distribution member 40 comprises a water distribution housing 400, a locking member 401 and a tubular filter screen 402. The water distribution housing 400 is provided with a receiving chamber 403. One end of the water supply pipe body 30 is fixedly connected to the bottom of the water distribution housing 400 and communicates with the receiving chamber 403. A limiting ring 404 is provided at the top of the water distribution housing 400. The limiting ring 404 is fixedly connected to the water distribution housing 400. The top of the tubular filter screen 402 is fixedly connected to the locking member 401. The tubular filter screen 402 can pass through the limiting ring 404 to enter the receiving chamber 403 and contact the bottom of the receiving chamber 403. The connection point between the water supply pipe body 30 and the water distribution housing 400 is matched with the bottom of the tubular filter screen 402. The lower end of the locking member 401 can be inserted into the limiting ring 404 and is threadedly connected to the limiting ring 404. A plurality of water distribution pipes 405 are provided on the water distribution housing 400, and the water distribution pipes 405 are communicated with the receiving chamber 403.

[0050] The diversion assembly 50 includes a diversion pipe 500, a steering pipe 501 and a fixed pipe 502. One end of the diversion pipe 500 is flange-connected to the water distribution pipe 405. The steering pipe 501 is arranged at the other end of the diversion pipe 500. One end of the steering pipe 501 is flange-connected to the diversion pipe 500. The other end of the steering pipe 501 is threadedly connected to one end of the fixed pipe 502. The other end of the fixed pipe 502 can be threadedly connected to the mounting pipe 10 in the above-mentioned water distribution cap.

[0051] A water supply port 300 is provided at the lower end of the water supply pipe body 30 , and the water supply port 300 can be connected to an external water source for supplying water to the water supply pipe body 30 .

[0052] When in use, the water supply port 300 can be connected to an external water source, a pump body and a valve, so that water in the water source can enter the water supply pipe body 30 through the water supply port 300. The water entering the water supply pipe body 30 enters the accommodating cavity 403 from the upper end of the water supply pipe body 30, and then passes through the tubular filter net 402 for preliminary filtration, and then enters the diversion pipe 500 through the water diversion pipe 405, and then enters the water distribution cap through the steering pipe 501 and the fixed pipe 502, and is sprayed out by the water distribution cap.

[0053] Since a plurality of flow diversion components 50 are provided, the utility model can be applied to a larger energy storage tank or a plurality of smaller energy storage tanks. At the same time, the utility model is also applicable to water treatment technology, and only needs to replace the energy storage tank with a flocculation tank in the water treatment technology.

[0054] The tubular filter screen 402 can not only filter, but also buffer the water flow.

[0055] Among them, the number of water distribution pipes 405 and diversion components 50 can be set according to actual needs. In the present embodiment, it is further preferred that the water distribution shell 400 is a hexagonal column structure, and the number of water distribution pipes 405 is 6, wherein one water distribution pipe 405 is provided on each surface of the water distribution shell 400, and the number of diversion components 50 is the same as the number of water distribution pipes 405.

[0056] In order to facilitate unscrewing the locking member 401 , this embodiment is modified on the basis of the above embodiment. The difference from the above embodiment is that a plurality of grooves 406 are provided on the locking member 401 .

[0057] The provision of the groove 406 can increase the friction between the locking member 401 and the hand, thereby facilitating the unscrewing of the locking member 401 and facilitating the cleaning of the tubular filter 402 .

[0058] To facilitate installation, this embodiment is modified on the basis of the above embodiment. The difference from the above embodiment is that a mounting bracket 60 is provided at the bottom of the water supply pipe body 30, and the bottom of the water supply pipe body 30 is detachably connected to the mounting bracket 60 by bolts.

[0059] The provision of the mounting frame 60 can facilitate the installation of the water distribution device of the utility model, and at the same time facilitate the cooperation between the water distribution device of the utility model and the energy storage tank.

[0060] Working principle of this utility model:

[0061] The utility model sets the traditional one-piece water distribution cap as a split outer cap body 11 and an inner cap body 12, and the outer cap body 11 and the inner cap body 12 are detachably connected through a connector 20, which not only reduces the processing difficulty of the water distribution cap, but also after long-term use, the inner cap body 12 and the outer cap body 11 can be disassembled for cleaning, and the water distribution chamber 100 can be effectively cleaned. During installation, it is only necessary to make the matching slot 202 on the outer side wall of the inner cap body 12 correspond to the connecting pipe 200 on the inner side wall of the outer cap body 11, and then insert the inner cap body 12 into the outer cap body 11, so that the connecting pipe 200 is inserted into the matching slot 202, and then one end of the connecting bolt 201 is screwed into the connecting pipe 200 through the through-port 204, and the other end of the connecting bolt 201 is inserted into the limiting slot 203 to limit the position, so that the installation of the water distribution cap can be completed. During disassembly, it is only necessary to unscrew the connecting bolt 201, and then pull the inner cap body 12 out of the outer cap body 11.

[0062] The above-mentioned embodiments only express the specific implementation methods of the utility model, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the patent of the utility model. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the concept of the utility model, which all belong to the protection scope of the utility model.

Claims

1. A water distribution cap for an energy storage pool, characterized in that: It comprises a mounting tube (10), an outer cap body (11) and an inner cap body (12); the inner cap body (12) is arranged inside the outer cap body (11) and is detachably connected to the outer cap body (11) via a plurality of connecting pieces (20); and the mounting tube (10) is arranged on the top of the outer cap body (11); A water distribution chamber (100) is provided between the outer cap body (11) and the inner cap body (12); a through hole (101) communicating with the water distribution chamber (100) is provided on the top of the outer cap body (11); the mounting tube (10) is arranged in cooperation with the through hole (101) and is communicated with the water distribution chamber (100) via the through hole (101); The connecting piece (20) comprises a connecting pipe (200) and a connecting bolt (201); the connecting pipe (200) is arranged on the inner side wall of the outer cap body (11); a matching slot hole (202) matched with the connecting pipe (200) is arranged on the outer side wall of the inner cap body (12); one end of the connecting pipe (200) can be inserted into the matching slot hole (202); a limiting slot hole (203) matched with the matching slot hole (202) is arranged on the inner side wall of the inner cap body (12); a through hole (204) is arranged in the limiting slot hole (203); the through hole (204) is matched with the connecting pipe (200) and is used to connect the limiting slot hole (203) and the matching slot hole (202); one end of the connecting bolt (201) can be threadedly connected to the connecting pipe (200) through the through hole (204); the other end of the connecting bolt (201) can be inserted into the limiting slot hole (203) for limiting.

2. A water distribution cap for an energy storage pool according to claim 1, characterized in that: The outer cap body (11) is a hexagonal cone structure. A mounting plane (102) is provided on the top of the outer cap body (11). The through hole (101) is provided on the mounting plane (102) and penetrates the outer cap body (11) from top to bottom. The mounting tube (10) is provided on the mounting plane (102) and is fixedly connected to the outer cap body (11).

3. A water distribution cap for an energy storage pool according to claim 2, characterized in that: The inner cap body (12) is a hexagonal cone structure, and the six outer surfaces of the inner cap body (12) are arranged corresponding to the six inner surfaces of the outer cap body (11), forming a water distribution cavity (100) in the shape of a hexagonal cone.

4. A water distribution cap for an energy storage pool according to claim 3, characterized in that: The connecting bolt (201) comprises a bolt rod (205) and a hexagonal bolt head (206). The hexagonal bolt head (206) is fixedly arranged at one end of the bolt rod (205). The other end of the bolt rod (205) can be inserted into the connecting pipe (200) through the through opening (204) and is threadedly connected to the connecting pipe (200). The hexagonal bolt head (206) can be inserted into the limiting slot hole (203) for limiting.

5. A water distribution cap for an energy storage pool according to claim 4, characterized in that: The number of the connecting pieces (20) is 3.

6. A water distribution device for an energy storage pool, comprising a plurality of water distribution caps for an energy storage pool according to any one of claims 1 to 5, characterized in that: It also comprises a water supply pipe body (30), a filtering water diversion element (40) and a plurality of flow diversion components (50), wherein the filtering water diversion element (40) is arranged on the top of the water supply pipe body (30) and is in communication with the water supply pipe body (30), and the plurality of flow diversion components (50) are arranged on the filtering water diversion element (40) and are in communication with the filtering water diversion element (40), the filtering water diversion element (40) is used to filter the water transported by the water supply pipe body (30), and the flow diversion components (50) are used to divert the water filtered in the filtering water diversion element (40); The filtering water distribution element (40) comprises a water distribution housing (400), a locking element (401) and a tubular filter screen (402); a receiving chamber (403) is provided in the water distribution housing (400); one end of the water supply pipe body (30) is fixedly connected to the bottom of the water distribution housing (400) and communicates with the receiving chamber (403); a limiting ring (404) is provided at the top of the water distribution housing (400); the limiting ring (404) is fixedly connected to the water distribution housing (400); the top of the tubular filter screen (402) is fixedly connected to the locking element (401); The tubular filter screen (402) can pass through the limiting ring (404) to enter the accommodating chamber (403) and contact the bottom of the accommodating chamber (403); the connection between the water supply pipe body (30) and the water distribution housing (400) is matched with the bottom of the tubular filter screen (402); the lower end of the locking member (401) can be inserted into the limiting ring (404) and is threadedly connected to the limiting ring (404); a plurality of water distribution pipes (405) are provided on the water distribution housing (400); and the water distribution pipes (405) are connected to the accommodating chamber (403); The flow diversion assembly (50) comprises a flow diversion pipe (500), a steering pipe (501) and a fixed pipe (502); one end of the flow diversion pipe (500) is flange-connected to the water diversion pipe (405); the steering pipe (501) is arranged at the other end of the flow diversion pipe (500); one end of the steering pipe (501) is flange-connected to the flow diversion pipe (500); the other end of the steering pipe (501) is threadedly connected to one end of the fixed pipe (502); and the other end of the fixed pipe (502) can be threadedly connected to the mounting pipe (10) in the water distribution cap.

7. A water distribution device for an energy storage pool according to claim 6, characterized in that: A water supply port (300) is provided at the lower end of the water supply pipe body (30), and the water supply port (300) can be connected to an external water source for supplying water to the water supply pipe body (30).

8. A water distribution device for an energy storage pool according to claim 6, characterized in that: The water distribution housing (400) is a hexagonal column structure, and the number of water distribution pipes (405) is 6, wherein one water distribution pipe (405) is provided on each surface of the water distribution housing (400), and the number of flow distribution components (50) is the same as the number of water distribution pipes (405).

9. A water distribution device for an energy storage pool according to claim 6, characterized in that: The locking member (401) is provided with a plurality of grooves (406).

10. A water distribution device for an energy storage pool according to claim 6, characterized in that: A mounting frame (60) is provided at the bottom of the water supply pipe body (30), and the bottom of the water supply pipe body (30) and the mounting frame (60) are detachably connected via bolts.

Citation Information

Patent Citations

  • Water distribution cap

    CN213357067U