CN220014635U - Overflow ditch dirt cleaning structure - Google Patents

Overflow ditch dirt cleaning structure Download PDF

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Publication number
CN220014635U
CN220014635U CN202321464511.XU CN202321464511U CN220014635U CN 220014635 U CN220014635 U CN 220014635U CN 202321464511 U CN202321464511 U CN 202321464511U CN 220014635 U CN220014635 U CN 220014635U
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China
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overflow
pipeline
water
pipe
valve
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CN202321464511.XU
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Chinese (zh)
Inventor
张萌
喻勇
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Guangdong Liansheng Water Environmental Engineering Co ltd
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Guangdong Liansheng Water Environmental Engineering Co ltd
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Abstract

The utility model relates to the technical field of swimming pool equipment, in particular to an overflow ditch dirt cleaning structure which comprises a swimming pool body and an overflow ditch body, wherein the overflow ditch body is arranged on the swimming pool body, the overflow ditch body is communicated with the swimming pool body, the overflow ditch body is connected with a pool water treatment assembly, the overflow ditch body is connected with the pool water treatment assembly through a return pipe, the return pipe is connected with a machine room drainage pipeline, a pipeline control assembly is arranged on the return pipe, the pipeline control assembly controls the on-off of a pipeline between the overflow ditch body and the pool water treatment assembly, and the pipeline control assembly also controls the on-off of a pipeline between the overflow ditch body and the machine room drainage pipeline. By adopting the technical scheme, when the overflow ditch is cleaned by flushing the water pipe, the flowing water brings pollutants into the swimming pool circulating system, so that the problems of increasing the burden of the swimming pool circulating system for treating pool water and increasing the medicine dosage of the clean pool water are solved.

Description

Overflow ditch dirt cleaning structure
Technical Field
The utility model relates to the technical field of swimming pool equipment, in particular to a sewage disposal structure of an overflow ditch.
Background
In places such as swimming pools, amusement parks and hot springs, which need to carry out circulation treatment on pool water, countercurrent or mixed flow circulation is usually arranged, namely, pool water circulation is formed by using overflow grooves, the effect of the circulation pump is that the pool circulating water returns to an equalizing pool of a machine room from the surface through the overflow grooves, water in the equalizing pool is pumped into a purifying system by a circulating pump, the purification working procedures carried out by the purifying system are filtration, oxidation, disinfection and heating treatment, and after purification is finished, the circulating water is conveyed into the swimming pool.
Under the condition, in the early debugging and the later operation of the swimming pool, after the first debugging or the long-time operation, the situation that the pollutants in the overflow ditch are more can occur; when the swimming pool is cleaned by adopting a water pipe, the flowing water can bring pollutants in the overflow ditch into a swimming pool circulation system; when the swimming pool is running, the pollutants entering the swimming pool circulation system can burden the swimming pool circulation system to treat the pool water, and the dosage of the medicines for cleaning the pool water can be increased.
Disclosure of Invention
In order to solve the problems that when a water pipe is washed and cleaned, the flowing water brings pollutants into a swimming pool circulating system, the burden of treating pool water in the swimming pool circulating system is increased, and the dosage of medicines for cleaning the pool water is increased, the utility model provides an overflow ditch dirt cleaning structure.
The utility model provides a sewage disposal structure of an overflow ditch, which adopts the following technical scheme:
the utility model provides an overflow ditch dirt-removing structure, includes swimming pool body and overflow ditch body, the overflow ditch body install in on the swimming pool body, overflow ditch body and swimming pool body intercommunication, overflow ditch body coupling has pond water treatment component, overflow ditch body and pond water treatment component pass through back flow connection, back flow connection has computer lab drainage pipe, install pipeline control assembly on the back flow, pipeline on-off between pipeline control assembly control overflow ditch body and the pond water treatment component, pipeline on-off between pipeline control assembly still control overflow ditch body and the computer lab drainage pipe.
By adopting the technical scheme, when pool water in the swimming pool body overflows, the pipeline control assembly controls the pipeline between the overflow ditch body and the pool water treatment assembly to keep normally open, overflowed pool water flows into the overflow ditch body, and flows to the pool water treatment assembly through the backflow pipe, and the pool water treatment assembly purifies floating matters in the recovered pool water; when the overflow drain body needs to be cleaned, the pipeline control assembly breaks the pipeline between the overflow drain body and the pool water treatment assembly, the pipeline control assembly controls the pipeline between the overflow drain body and the machine room drainage to be kept normally open until pollutants, scraps and the like in the overflow drain body are washed clean, the pipeline control assembly breaks the pipeline between the overflow drain body and the machine room drainage, and the pipeline control assembly opens the pipeline between the overflow drain body and the pool water treatment assembly; by adopting the mode, the problems that when the overflow ditch is cleaned by flushing the water pipe, the flowing water brings pollutants into the swimming pool circulating system, the burden of treating pool water by the swimming pool circulating system is increased, and the medicine dosage of cleaning pool water is increased can be solved.
Optionally, the overflow drain body is provided with the cavity, the cavity communicates with swimming pool body, back flow respectively, install the lid that covers the cavity on the overflow drain body.
Through adopting above-mentioned technical scheme, the lid plays the effect of protection, prevents that personnel from stepping on the sky, causes injured problem, and the cavity plays to hold the pond water that flows from the swimming pool body, and the pond water of inflow cavity flows into pond water treatment assembly through the back flow to retrieve pond water, practice thrift the water source.
Optionally, the cover body includes first baffle, first baffle is installed on the terminal surface of overflow launder body, a plurality of through-holes have been seted up on the first baffle.
Through adopting above-mentioned technical scheme, first baffle plays the effect of protection, prevents that personnel from stepping on the sky, causes injured problem.
Optionally, the pond water treatment component includes water tank and water pump, the water tank passes through back flow and overflow ditch body intercommunication, the water pump install in on the water tank, the water pump passes through the water pipe intercommunication with the swimming pool body.
Through adopting above-mentioned technical scheme, after the water tank carries out preliminary treatment through the pond water to the back flow inflow, the water pump draws in clean system with water, and pond water flows in can swimming pool body after clean system carries out evolution at last to realize hydrologic cycle, reduce the waste of water resource.
Optionally, the pipeline control assembly includes backflow valve and drain valve, install the three-way pipe on the back flow, the three-way pipe communicates with back flow, computer lab drainage pipe, water tank respectively, the backflow valve is installed on the pipeline that the three-way pipe is connected with the water tank, the drain valve is installed on the pipeline that the three-way pipe is connected with computer lab drainage pipe.
By adopting the technical scheme, when the overflow drain body does not need to be cleaned, the reflux valve is in a normally open state; when the overflow ditch body needs to be cleaned, the reflux valve is in a closed state, the drain valve is in an opened state, the cavity of the overflow ditch body is flushed, mud sand, leaves, paper scraps and stone particles in the cavity flow to the machine room drain pipeline under the drive of running water until no pollutant exists in the cavity, the drain valve is closed, the reflux valve is opened, and the swimming pool body returns to normal operation; by adopting the mode, pollutants in the cavity are discharged into the machine room drainage pipeline from the drainage valve, so that the pollutants flowing into the water tank from the overflow channel body are reduced, the burden of purifying pool water of the water tank is lightened, and the medicine dosage of the clean pool water is also reduced.
Optionally, the back flow is last to be connected with motor and agitator tank, the agitator tank is installed on the back flow, the agitator tank is located the three-way pipe with between the drain valve, agitator tank one end and three-way pipe intercommunication, the other end and drain valve intercommunication, the motor is installed on the agitator tank.
Through adopting above-mentioned technical scheme, the motor provides pivoted power for the agitator tank, and the agitator tank stirs garrulous to mud sand, leaf, wastepaper and stone grain from back flow to drain valve under the drive of motor for the pollutant diminishes, more easily flows into computer lab drainage pipe, improves clean efficiency.
Optionally, a stirring blade is installed in the stirring box, and the stirring blade is connected with an output main shaft of the motor.
Through adopting above-mentioned technical scheme, motor drive stirring leaf rotates for the agitator tank, rotates stirring leaf and stirs silt particle, leaf, wastepaper and stone grain for the pollutant diminishes, more easily flows into computer lab drain pipe, improves clean efficiency.
Optionally, install the clean valve on the back flow, the clean valve is installed on the back flow that is close to overflow body one end, clean valve respectively with back flow, three-way pipe intercommunication, be connected with the air pump on the back flow, the air pump passes through trachea and back flow intercommunication.
Through adopting above-mentioned technical scheme, the clean valve is in normally open state, when the clearance overflow drain, the return valve normal close, the drain valve is normally open, after the silt sand in the overflow drain has been cleared up, the leaf, wastepaper and stone grain, the return valve keeps the normal close, the drain valve keeps normally open, at this moment, the clean valve normal close, start the air pump, the air pump blows through the pipeline that the trachea is connected back flow and computer lab drainage pipeline, can further clear up the pollutant of gluing on the back flow inner wall and clear up the pollutant on the stirring leaf, strengthen clean dynamics.
In summary, the utility model has the following beneficial effects:
1. by arranging the return pipe, the pool water treatment assembly and the pipeline control assembly, the problems that when the water pipe is used for flushing and cleaning the overflow ditch, the flowing water brings pollutants into the swimming pool circulation system, the burden of the swimming pool circulation system for treating pool water and the medicine consumption for cleaning the pool water are increased can be solved;
2. through setting up return valve and drain valve, with the pollutant in the cavity follow drain valve drain pipe of computer lab, reduced the pollutant of flowing into the water tank from overflow launder body, alleviateed the burden of water tank purification pond water, still reduced the medicine quantity of clean pond water.
Drawings
Fig. 1 is a schematic diagram of the overall structure of an overflow drain cleaning structure in an embodiment of the utility model.
Fig. 2 is a schematic diagram of a cross-sectional view of an overflow drain cleaning structure in accordance with an embodiment of the utility model.
Fig. 3 is a schematic view of a part of a cleaning structure for overflow drain in an embodiment of the utility model.
Reference numerals illustrate:
1. a swimming pool body; 2. an overflow drain body; 21. a cavity; 22. a water outlet; 3. a cover body; 31. a first separator; 4. a return pipe; 41. a three-way pipe; 42. cleaning the valve; 5. a pond water treatment assembly; 51. a water tank; 52. a water pump; 53. a circulation pump; 6. a return valve; 7. a drain valve; 8. a stirring tank; 81. a motor; 9. an air pump; 10. machine room drainage pipeline.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-3.
The embodiment of the utility model discloses an overflow ditch dirt cleaning structure, which is shown in fig. 1, and comprises a swimming pool body 1 and an overflow ditch body 2, wherein the overflow ditch body 2 is arranged on the swimming pool body 1, the overflow ditch body 2 is communicated with the swimming pool body 1, the overflow ditch body 2 is connected with a pool water treatment assembly 5 for purifying pool water, the overflow ditch body 2 is connected with the pool water treatment assembly 5 through a return pipe 4, the return pipe 4 is connected with a machine room drainage pipeline for drainage, and a pipeline control assembly for controlling the on-off of the pipeline is arranged on the return pipe 4.
Referring to fig. 1 and 2, the overflow channel body 2 is provided with a cavity 21, the cavity 21 is used for accommodating pool water overflowed from the swimming pool body 1, the overflow channel body 2 is provided with a cover body 3 covering the cavity 21, the cover body 3 comprises a first partition plate 31, the first partition plate 31 is clamped with the overflow channel body 2, a plurality of through holes (not shown in the figure) are formed in the first partition plate 31, the first partition plate 31 plays a role in protection, and personnel are prevented from stepping on the air to cause injury.
Referring to fig. 1 and 2, in this embodiment, a swimming pool body 1 is rectangular, and an overflow drain body 2 is disposed around the swimming pool body 1; the bottoms of the overflow channel bodies 2 positioned on two long sides of the swimming pool body 1 are inclined, the bottoms of the overflow channel bodies 2 positioned on one short side of the swimming pool body 1 are horizontally arranged, the bottoms of the overflow channel bodies 2 positioned on the other short side of the swimming pool body 1 are concavely arranged, the concave parts of the bottoms of the overflow channel bodies 2 are separately provided with water outlets 22, and the water outlets 22 are communicated with the return pipe 4; the bottom of the overflow ditch body 2 is arranged horizontally, on an inclined plane and on a concave surface, so that mud sand, leaves, paper scraps and stone particles in the inflow cavity 21 can be washed to the water outlet 22, and the washing convenience is improved.
Referring to fig. 1 and 2, the pool water treatment assembly 5 includes a water tank 51 and a water pump 52, one end of the return pipe 4 is communicated with the water tank 51, the water pump 52 is fixedly installed on the water tank 51, and the water pump 52 is communicated with the pool body 1 through a water pipe; after the water tank 51 carries out preliminary treatment on pool water flowing in from the return pipe 4, the water pump 52 pumps the water into the purifying system, and after the pool water finally evolves through the purifying system, the circulating pump 53 of the purifying system pumps the water back into the swimming pool body 1, so that water circulation is realized, and the waste of water resources is reduced.
Referring to fig. 2 and 3, the pipeline control assembly comprises a reflux valve 6 and a drain valve 7, wherein the reflux valve 6 and the drain valve 7 are both arranged on a reflux pipe 4, the reflux valve 6 and the drain valve 7 are respectively communicated with the reflux pipe 4, a three-way pipe 41 is arranged on the reflux pipe 4, the three-way pipe 41 is respectively overflowed from a ditch body 2, a water tank 51 and a machine room drain pipeline to be communicated, the reflux valve 6 is arranged on the reflux pipe 4 between the three-way pipe 41 and the water tank 51, and the drain valve 7 is arranged on the reflux pipe 4 between the three-way pipe 41 and the machine room drain pipeline; the reflux valve 6 is used for controlling the on-off state of a pipeline between the water tank 51 and the overflow drain body 2, and the drain valve 7 is used for controlling the on-off state of a pipeline between a drainage pipeline of a machine room and the overflow drain body 2; when the overflow drain body 2 does not need to be cleaned, the reflux valve 6 is in a normally open state; when the overflow drain body 2 needs to be cleaned, the reflux valve 6 is in a closed state, the drain valve 7 is in an open state, the cavity 21 of the overflow drain body 2 is flushed, mud sand, leaves, paper scraps and stone particles in the cavity 21 flow to a machine room drain pipeline under the drive of running water until no pollutant exists in the cavity 21, the drain valve 7 is closed, the reflux valve 6 is opened, and the swimming pool body 1 resumes normal operation.
Referring to fig. 3, a return pipe 4 is connected with a motor 81 and a stirring tank 8, the stirring tank 8 is fixedly arranged on the return pipe 4, one end of the stirring tank 8 is communicated with a three-way pipe 41, the other end of the stirring tank is communicated with a machine room drainage pipeline, and the motor 81 is fixedly arranged on the stirring tank 8; the motor 81 provides pivoted power for the agitator tank 8, and the agitator tank 8 stirs garrulous mud sand, leaf, wastepaper and stone grain that flow to drain valve 7 from back flow 4 under motor 81's drive for the pollutant diminishes, more easily flows to computer lab drainage pipe, improves clean efficiency.
Referring to fig. 3, a stirring blade (not shown in the drawing) is installed in the stirring box 8, the stirring blade is rotationally connected with the stirring box 8, the stirring blade is fixedly connected with an output main shaft of a motor 81, and the motor 81 drives the stirring blade to rotate relative to the stirring box 8; after the motor 81 drives the stirring blade to rotate, the mud sand, the leaves, the paper scraps and the stone particles are stirred, so that pollutants become smaller, the pollutants flow to a machine room drainage pipeline more easily, and the cleaning efficiency is improved.
Referring to fig. 1 and 3, a cleaning valve 42 is arranged on a return pipe 4, the cleaning valve 42 is arranged on the return pipe 4 near one end of an overflow body, the cleaning valve 42 is respectively communicated with the return pipe 4 and a three-way pipe 41, an air pump 9 is connected to the return pipe 4, the air pump 9 is communicated with the return pipe 4 through an air pipe, the air pump 9 is arranged on one side of the return pipe 4, and the air pipe is positioned between the cleaning valve 42 and the three-way pipe 41; the air pump 9 blows through the pipeline that the trachea is connected with computer lab drainage pipe to back flow 4, blows this section pipeline, can further clear up the pollutant of gluing on back flow 4 inner wall and clear up the pollutant on the stirring leaf, strengthens clean dynamics.
The working principle of the overflow drain dirt cleaning structure is as follows:
in an initial state, i.e., when the overflow drain body 2 is not cleaned, the return valve 6 and the cleaning valve 42 are in an open state, and the drain valve 7 is in a closed state; when the overflow drain body 2 needs to be cleaned, the reflux valve 6 is in a closed state, the drain valve 7 and the cleaning valve 42 are both in an open state, the cavity 21 of the overflow drain body 2 is flushed, and mud sand, leaves, paper scraps and stone particles in the cavity 21 flow to a machine room drain pipeline under the drive of running water until no pollutant exists in the cavity 21; then, the cleaning valve 42 is closed, the air pump 9 is opened, and the air pump 9 blows air to a section of pipeline from the cleaning valve 42 to the machine room drainage pipeline through an air pipe; after one end of blowing, the air pump 9 stops working, the drain valve 7 is closed, the reflux valve 6 and the cleaning valve 42 are opened, and the swimming pool body 1 resumes normal operation.
The above embodiments are only for illustrating the technical solution of the present utility model, and are not limiting; although the utility model has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit and scope of the technical solutions of the embodiments of the present utility model, and are intended to be included in the scope of the present utility model.

Claims (8)

1. An overflow ditch structure of decontaminating, its characterized in that: including swimming pool body (1) and overflow ditch body (2), overflow ditch body (2) install in on swimming pool body (1), overflow ditch body (2) and swimming pool body (1) intercommunication, overflow ditch body (2) are connected with pond water treatment component (5), overflow ditch body (2) are connected through back flow (4) with pond water treatment component (5), back flow (4) are connected with computer lab drainage pipe, install pipeline control assembly on back flow (4), pipeline break-make between pipeline control assembly control overflow ditch body (2) and pond water treatment component (5), pipeline break-make between pipeline control assembly still control overflow ditch body (2) and the computer lab drainage pipe.
2. The overflow drain cleaning structure of claim 1, wherein: the overflow ditch body (2) is provided with a cavity (21), the cavity (21) is respectively communicated with the swimming pool body (1) and the return pipe (4), and the overflow ditch body (2) is provided with a cover body (3) for covering the cavity (21).
3. The overflow drain cleaning structure of claim 2, wherein: the cover body (3) comprises a first partition plate (31), the first partition plate (31) is arranged on the end face of the overflow ditch body (2), and a plurality of through holes are formed in the first partition plate (31).
4. The overflow drain cleaning structure of claim 1, wherein: the pool water treatment assembly (5) comprises a water tank (51) and a water pump (52), the water tank (51) is communicated with the overflow ditch body (2) through a return pipe (4), the water pump (52) is installed on the water tank (51), and the water pump (52) is communicated with the swimming pool body (1) through a water pipe.
5. The overflow drain cleaning structure of claim 2, wherein: the pipeline control assembly comprises a reflux valve (6) and a drain valve (7), wherein a three-way pipe (41) is arranged on the reflux pipe (4), the three-way pipe (41) is respectively communicated with the reflux pipe (4), a machine room drain pipeline and a water tank (51), the reflux valve (6) is arranged on a pipeline connected with the three-way pipe (41) and the water tank (51), and the drain valve (7) is arranged on a pipeline connected with the three-way pipe (41) and the machine room drain pipeline.
6. The overflow drain cleaning structure as claimed in claim 5, wherein: be connected with motor (81) and agitator tank (8) on back flow (4), agitator tank (8) are installed on back flow (4), agitator tank (8) are located three-way pipe (41) with between drain valve (7), agitator tank (8) one end and three-way pipe (41) intercommunication, the other end and drain valve (7) intercommunication, motor (81) are installed on agitator tank (8).
7. The overflow drain cleaning structure of claim 6, wherein: stirring blades are arranged in the stirring box (8), and the stirring blades are connected with an output main shaft of a motor (81).
8. The overflow drain cleaning structure of claim 1, wherein: install clean valve (42) on back flow (4), clean valve (42) are installed on back flow (4) near overflow body one end, clean valve (42) respectively with back flow (4), three-way pipe (41) intercommunication, be connected with air pump (9) on back flow (4), air pump (9) are through trachea and back flow (4) intercommunication.
CN202321464511.XU 2023-06-08 2023-06-08 Overflow ditch dirt cleaning structure Active CN220014635U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321464511.XU CN220014635U (en) 2023-06-08 2023-06-08 Overflow ditch dirt cleaning structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321464511.XU CN220014635U (en) 2023-06-08 2023-06-08 Overflow ditch dirt cleaning structure

Publications (1)

Publication Number Publication Date
CN220014635U true CN220014635U (en) 2023-11-14

Family

ID=88694973

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321464511.XU Active CN220014635U (en) 2023-06-08 2023-06-08 Overflow ditch dirt cleaning structure

Country Status (1)

Country Link
CN (1) CN220014635U (en)

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