CN210796137U - Intelligent drainage device with sewage treatment function - Google Patents
Intelligent drainage device with sewage treatment function Download PDFInfo
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- CN210796137U CN210796137U CN201921814358.2U CN201921814358U CN210796137U CN 210796137 U CN210796137 U CN 210796137U CN 201921814358 U CN201921814358 U CN 201921814358U CN 210796137 U CN210796137 U CN 210796137U
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Abstract
The utility model relates to an intelligent drainage device with sewage treatment function, which comprises a purification mechanism and a drainage component, wherein the purification mechanism comprises a filtering tank, a first biological tank, a second biological tank and a sedimentation tank which are connected in sequence, and a filter screen and a pulling component for pulling the filter screen to the opening of the filtering tank are vertically slid on the inner wall of the filtering tank; the pulling assembly comprises a motor for fixing the outer wall of the filtering tank, a containing part fixed on a driving shaft of the motor and a pull rope wound and fixed on the containing part, and the pull rope is fixedly connected with the filtering net; and a drainage hole communicated with the first biological tank is formed in the side wall of the filtering tank. When rubbish on the filter screen needs to be cleared up, the worker starts the motor, the motor drives the storage portion to rotate, the storage portion upwards pulls the pull rope in the filter tank, the pull rope pulls the filter screen to upwards move and break away from the sewage surface, and therefore the rubbish on the filter screen is convenient to clear up for the worker.
Description
Technical Field
The utility model belongs to the technical field of the technique of drainage and specifically relates to an intelligent drainage device with sewage treatment function is related to.
Background
In daily life, people can generate a large amount of domestic sewage in vegetable washing, clothes washing and the like, and the domestic sewage is directly discharged into a sewer and is discharged into rivers through a sewer channel. In order to reduce the pollution of domestic sewage to rivers, the domestic sewage is purified by a purification mechanism.
Among the prior art, purify the mechanism and include filtering ponds, first biological pond, the biological pond of second and the sedimentation tank that sets gradually from left to right, sewage carries out the filtration of waste residue, sweeps through the filtering ponds to further purify in discharging first biological pond and the biological pond of second.
The above prior art solutions have the following drawbacks: because sewage is when filtering through the filtering ponds, rubbish deposits to the bottom of filtering ponds, inconvenient staff's clearance.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an intelligent drainage device with sewage treatment function.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
an intelligent drainage device with a sewage treatment function comprises a purification mechanism for purifying sewage and a drainage assembly which is connected to the purification mechanism and used for draining the purified sewage, wherein the purification mechanism comprises a filtering tank, a first biological tank, a second biological tank and a sedimentation tank which are sequentially connected, and a filter screen and a pulling assembly for pulling the filter screen to an opening of the filtering tank are vertically slid on the inner wall of the filtering tank; the pulling assembly comprises a motor for fixing the outer wall of the filtering tank, a containing part fixed on a driving shaft of the motor and a pull rope wound and fixed on the containing part, and the pull rope is fixedly connected with the filtering net; and a drainage hole communicated with the first biological tank is formed in the side wall of the filtering tank.
Through adopting above-mentioned scheme, sewage passes through sewage pipes and carries to the upside of filter screen, and the filter screen carries out sewage and filters, and sewage after the filtration is arranged to first biological pond through the limbers and is purified, then loops through the biological pond of second and further purifies, and sewage after the purification is arranged to the sedimentation tank and is depositd, and sewage after the sediment is retrieved and is being utilized.
When rubbish on the filter screen needs to be cleared up, the worker starts the motor, the motor drives the storage portion to rotate, the storage portion upwards pulls the pull rope in the filter tank, the pull rope pulls the filter screen to upwards move and break away from the sewage surface, and therefore the rubbish on the filter screen is convenient to clear up for the worker.
Preferably, the two side walls of the filtering tank are vertically provided with sliding grooves communicated with the top of the filtering tank, and sliding blocks embedded in the sliding grooves in a sliding manner are respectively fixed on the two sides of the filtering net.
Through adopting above-mentioned scheme, through the setting of sliding tray and sliding block, the filter screen passes through the relative slip of sliding block and sliding tray to stable vertical slip.
Preferably, the side wall of the filtering tank is provided with a supporting edge for supporting the filtering net.
Through adopting above-mentioned scheme, through the setting at support edge to carry out the support of filter screen, make the filter screen keep carrying out the filtration of sewage in a certain position.
Preferably, a limiting plate for preventing the filter screen from sliding out is horizontally fixed at the top of the filter tank.
Through adopting above-mentioned scheme, through the setting of limiting plate to place stay cord transition pulling filter screen rebound, thereby break away from the filtering ponds.
Preferably, the stopper plate is provided with a guide wheel for guiding the rope.
Through adopting above-mentioned scheme, through the setting of leading wheel, the stay cord is diffracted on the leading wheel to stable vertical pulling filter screen rebound.
Preferably, flanges connected end to end are protruded on the periphery of the upper surface of the filter screen, and the outer walls of the flanges are attached to the inner wall of the filter tank.
By adopting the scheme, the garbage on the filter screen is stably accumulated on the filter screen through the arrangement of the flanges, and the edge of the filter screen can not slide to the bottom of the filter tank.
Preferably, a clean water tank communicated with the sedimentation tank is arranged on one side of the sedimentation tank; the drainage assembly comprises a conveying pipeline connected with the side wall of the clean water tank and an atomizing spray head connected with the conveying pipeline and used for irrigating flowers and plants.
Through adopting above-mentioned scheme, the sewage after the clean water basin is carried out the sediment is collected to the discharge of drainage subassembly. The sewage in the clean water tank is irrigated by plants through the conveying pipeline and the atomizing nozzles, so that the sewage is recycled, and the water is saved.
Preferably, a first biological filler for fostering anaerobic bacteria is paved in the first biological pond, a second biological filler for fostering aerobic bacteria is paved in the second biological pond, and algae capable of generating oxygen is planted in the second biological filler.
By adopting the scheme, anaerobic bacteria are fostered in the first biological pond through the arrangement of the first biological filler, and the sewage is purified. Through the arrangement of the second biological filler, aerobic bacteria can be fostered in the second biological tank, and the sewage can be purified. Meanwhile, the algae is arranged, so that the second biological pond has enough oxygen to meet the requirement of aerobic bacteria.
To sum up, the utility model discloses a beneficial technological effect does:
1. sewage passes through sewage pipes and carries to the upside of filter screen, and the filter screen carries out sewage and filters, and sewage after the filtration is arranged to first biological pond through the limbers and is purified, then loops through the biological pond of second and further purifies, and sewage after the purification is arranged to the sedimentation tank and is depositd, and sewage after the sediment is retrieved and is being utilized.
2. When rubbish on the filter screen needs to be cleared up, the worker starts the motor, the motor drives the storage portion to rotate, the storage portion upwards pulls the pull rope in the filter tank, the pull rope pulls the filter screen to upwards move and break away from the sewage surface, and therefore the rubbish on the filter screen is convenient to clear up for the worker.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a vertical cross-sectional view of the present invention;
fig. 3 is a partially enlarged schematic view of a portion a in fig. 2.
In the figure: 1. a purification mechanism; 11. a filtration tank; 111. a filter screen; 1111. blocking edges; 1112. a slider; 112. a limiting plate; 113. a guide wheel; 114. a support rim; 115. a sliding groove; 116. a water through hole; 117. a blowdown line; 12. a first biological pool; 121. a first biological filler; 13. a second biological pond; 131. a second biological filler; 132. algae; 14. a sedimentation tank; 15. a clean water tank; 2. a drainage assembly; 21. a delivery conduit; 22. an atomizing spray head; 3. a pulling assembly; 31. a motor; 32. pulling a rope; 33. a receiving portion.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, the intelligent drainage device with sewage treatment function disclosed by the utility model comprises a purification mechanism 1 for purifying domestic sewage and a drainage assembly 2 connected to the purification mechanism 1; purify mechanism 1 and include filtering ponds 11, first biological pond 12, second biological pond 13, sedimentation chamber and clean water basin 15 from left to right setting, and the lateral wall between adjacent is provided with the hole of permeating water of intercommunication, and drainage component 2 connects in clean water basin 15, and the lateral wall of filtering ponds 11 is fixed with sewage pipes 117 who is used for discharging domestic sewage. Therefore, the sewage discharge pipe 117 discharges the domestic sewage into the filtering tank 11, the domestic sewage in the filtering tank 11 is purified by passing through the filtering tank 11, the first biological tank 12, the second biological tank 13 and the sedimentation chamber through the water permeable holes in sequence, the purified domestic sewage is discharged to the clean water tank 15 through the water permeable holes, and the drainage assembly 2 uses the domestic sewage in the clean water tank 15 for irrigating plants.
Referring to fig. 2 and 3, a support edge 114 is horizontally protruded on the side wall of the filtering tank 11, a filtering net 111 is horizontally placed on the support edge 114, and the periphery of the filtering net 111 is attached to the vertical side wall of the filtering tank 11; the hole of permeating water sets up in the lower part of filtering ponds 11 lateral wall, and the hole of permeating water communicates in first biological pond 12, and sewer 117 port is located the upside of filter screen 111. Therefore, the domestic sewage is filtered by the filtering of the filtering net 111, and the filtered domestic sewage is discharged into the first biological tank 12 through the water permeable holes.
The waste residue, wastepaper and the like on the filter screen 111 are further stably accumulated, the flanges 1111 are vertically protruded on the upper surface of the filter screen 111 in an end-to-end connection manner, and the outer walls of the flanges 1111 are attached to the vertical side walls of the accommodating cavity.
Referring to fig. 1, the garbage on the filter screen 111 is further conveniently cleaned, the filter screen 111 vertically slides in the filter tank 11, and the outer side of the filter tank 11 is provided with a pulling assembly 3 for pulling the filter screen 111 to slide to the upper port of the filter tank 11. The pulling assembly 3 comprises a motor 31, a pulling rope 32 and a storage part 33, wherein the motor 31 is horizontally fixed on the outer wall of the motor 31, the storage part 33 is sleeved and fixed on a driving shaft of the motor 31, one end of the pulling rope 32 is wound and fixed on the side wall of the storage part 33, and the other end of the pulling rope 32 is fixed on the filter screen 111. Specifically, staff's starter motor 31, motor 31's drive shaft drives storage portion 33 and rotates, and storage portion 33 carries out taking in of stay cord 32, and stay cord 32 pulling filter screen 111 rebound until filter screen 111 upwards slides to the opening part of filtering ponds 11 to make things convenient for the staff to carry out the rubbish on the filter screen 111 and clear up.
Referring to fig. 2 and 3, the filter screen 111 is further made to stably and vertically slide, two vertical side walls of the filter tank 11 are respectively and vertically provided with a U-shaped sliding groove 115, the two sliding grooves 115 are communicated with the top of the filter tank 11, and the bottoms of the two sliding grooves 115 extend to the upper top surface of the supporting edge 114; meanwhile, the two sides of the filter screen 111 are respectively fixed with a sliding block 1112, the two sliding blocks 1112 are respectively embedded in the two sliding grooves 115 in a sliding manner, and the filter screen 111 slides relative to the sliding grooves 115 through the sliding blocks 1112, so as to stably and vertically slide in the filter tank 11.
Referring to fig. 1, the filter mesh 111 is further prevented from slipping off the filter tank 11, a stopper plate 112 is horizontally fixed to the top of the filter tank 11, and a guide wheel 113 for guiding the rope 32 is provided on the stopper plate 112.
Referring to fig. 1 and 2, a first biological filler 121 as an anaerobic bacteria carrier is placed inside the first biological tank 12, and anaerobic bacteria on the first biological filler 121 decompose soluble organic matters in sewage, thereby completing purification of sewage; meanwhile, the sewage in the first biological tank 12 is discharged into the second biological tank 13 through the water permeable holes, and the first biological filler 121 as an aerobic bacteria carrier is put into the inner side of the second biological tank 13, so that the sewage is further purified. And, algae 132 for generating oxygen is planted in the second biological pond 13 so that aerobic bacteria have enough oxygen. Sewage is purified by the second biological tank 13 and then discharged to the sedimentation tank 14 for sedimentation, and the sewage after sedimentation is discharged to the clean water tank 15 through the water permeable holes, so that the drainage assembly 2 utilizes the sewage in the clean water tank 15.
The drainage assembly 2 comprises a conveying pipeline 21, the conveying pipeline 21 extends into the flowers and the plants, and an atomizing spray head 22 for irrigating the flowers and the plants is connected to the conveying pipeline 21.
The implementation principle of the embodiment is as follows: sewage is conveyed to the upper side of the filter screen 111 through the sewage discharge pipeline 117, the filter screen 111 filters the sewage, the filtered sewage is discharged to the first biological tank 12 through the limber hole 116 for purification, then the sewage is further purified through the second biological tank 13 in sequence, the purified sewage is discharged to the sedimentation tank 14 for sedimentation, and the precipitated sewage is discharged to the clean water tank 15 and irrigated by plants through the conveying pipeline 21 and the atomizing spray head 22.
When rubbish on the filter screen 111 needs to be cleared up, the staff starts the motor 31, the motor 31 drives the storage part 33 to rotate, the storage part 33 upwards pulls the pull rope 32 located in the filter tank 11, the pull rope 32 pulls the filter screen 111 to move upwards and break away from the sewage surface, and therefore rubbish on the filter screen 111 can be cleared up by the staff conveniently.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.
Claims (8)
1. The utility model provides an intelligence drainage device with sewage treatment function, includes and is used for purifying purification mechanism (1) of sewage and connects on purification mechanism (1) and be used for draining away drainage component (2) of purifying back sewage, its characterized in that: the purification mechanism (1) comprises a filter tank (11), a first biological tank (12), a second biological tank (13) and a sedimentation tank (14) which are connected in sequence, wherein a filter screen (111) and a pulling assembly (3) for pulling the filter screen (111) to an opening of the filter tank (11) are vertically slid on the inner wall of the filter tank (11); the pulling assembly (3) comprises a motor (31) for fixing the outer wall of the filtering tank (11), a containing part (33) fixed on a driving shaft of the motor (31) and a pulling rope (32) wound and fixed on the containing part (33), and the pulling rope (32) is fixedly connected with the filtering net (111); a sewage discharge pipeline (117) is arranged on the side wall of the sedimentation tank (14), and a water through hole (116) communicated with the first biological tank (12) is formed in the side wall of the filtering tank (11).
2. The intelligent drainage device with sewage treatment function of claim 1, wherein: two side walls of the filtering tank (11) are vertically provided with sliding grooves (115) communicated with the top of the filtering tank (11), and two sides of the filtering net (111) are respectively fixed with sliding blocks (1112) which are embedded in the sliding grooves (115) in a sliding mode.
3. The intelligent drainage device with sewage treatment function of claim 1, wherein: the side wall of the filtering tank (11) is provided with a supporting edge (114) for supporting the filtering net (111).
4. The intelligent drainage device with sewage treatment function of claim 2, wherein: and a limiting plate (112) for preventing the filter screen (111) from sliding out is horizontally fixed at the top of the filter tank (11).
5. The intelligent drainage device with sewage treatment function of claim 4, wherein: the limiting plate (112) is provided with a guide wheel (113) used for guiding the pull rope (32).
6. The intelligent drainage device with sewage treatment function of claim 1, wherein: protruding all around of filter screen (111) upper surface has flange (1111) of end to end connection, the outer wall of flange (1111) with filtering ponds (11) inner wall is laminated mutually.
7. The intelligent drainage device with sewage treatment function of claim 1, wherein: a clean water tank (15) communicated with the sedimentation tank (14) is arranged on one side of the sedimentation tank (14); the drainage assembly (2) comprises a conveying pipeline (21) connected with the side wall of the clean water tank (15) and an atomizing spray head (22) connected with the conveying pipeline (21) and used for irrigating flowers and plants.
8. The intelligent drainage device with sewage treatment function of claim 1, wherein: a first biological filler (121) for fostering anaerobic bacteria is paved in the first biological pool (12), a second biological filler (131) for fostering aerobic bacteria is paved in the second biological pool (13), and algae (132) capable of generating oxygen is planted in the second biological filler (131).
Priority Applications (1)
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CN201921814358.2U CN210796137U (en) | 2019-10-25 | 2019-10-25 | Intelligent drainage device with sewage treatment function |
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CN201921814358.2U CN210796137U (en) | 2019-10-25 | 2019-10-25 | Intelligent drainage device with sewage treatment function |
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CN210796137U true CN210796137U (en) | 2020-06-19 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113023920A (en) * | 2021-03-08 | 2021-06-25 | 江南大学 | Self-purification system for maintaining water quality of landscape ditch |
CN115028287A (en) * | 2022-06-13 | 2022-09-09 | 北控水务(中国)投资有限公司 | Rapid processing system and method for sudden overflow pollution |
-
2019
- 2019-10-25 CN CN201921814358.2U patent/CN210796137U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113023920A (en) * | 2021-03-08 | 2021-06-25 | 江南大学 | Self-purification system for maintaining water quality of landscape ditch |
CN115028287A (en) * | 2022-06-13 | 2022-09-09 | 北控水务(中国)投资有限公司 | Rapid processing system and method for sudden overflow pollution |
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