CN214903177U - Collection and sewage discharge device - Google Patents
Collection and sewage discharge device Download PDFInfo
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- CN214903177U CN214903177U CN202121198089.9U CN202121198089U CN214903177U CN 214903177 U CN214903177 U CN 214903177U CN 202121198089 U CN202121198089 U CN 202121198089U CN 214903177 U CN214903177 U CN 214903177U
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Abstract
The utility model relates to a dirty device is arranged to collection, include: the sewage collecting container and the sewage sucking container are opened and adjacent to each other, and the bottom of the sewage collecting container is higher than the sewage sucking container; the pipeline is communicated with the bottom of the sewage collecting container, and the movable vertical pipe can be plugged in the pipeline; the mechanical sewage suction system is arranged in the sewage suction container and is externally connected with the sewage treatment system; a baffle plate which separates the dirt collecting container and the dirt absorbing container and leads the dirt collecting container and the dirt absorbing container to be communicated through the holes. The design of the sewage collection container and the sewage suction container of the utility model enables suspended matters with different particle diameters to be respectively intercepted, and the interception of large particle suspended matters in the sewage collection container effectively lightens the load of the sewage suction container; secondary advection sedimentation, the suspended solid removal rate is greatly improved, the sewage collecting effect of the sewage collecting facility is good, and the sewage collecting efficiency is high.
Description
Technical Field
The utility model relates to a dirty device is arranged to collection belongs to pond inner loop and breeds collection and arrange dirty technical field.
Background
The pond internal circulation culture mode integrates factory high-density culture and pond low-cost culture, advanced technical means are fully utilized to accurately feed clustered fishes in the culture tank, dissolved oxygen is regulated and controlled, fish dung is recovered, fish culture sewage is recycled after being purified by a pond system, high yield, high quality, water saving, emission reduction and clean production of the pond are realized, and the pond internal circulation culture mode becomes an important development direction of pond health culture.
The sewage collecting and discharging system is a main component of the mode, and can timely remove fish manure and residual bait generated by fish in the carried culture tank by the fish in the colony to a sewage treatment system outside the pond, so that the total organic load of the pond is effectively reduced, the total consumption of dissolved oxygen is reduced, and the guarantee is provided for the high-yield, high-quality, water-saving, emission-reducing and clean production of the pond. At present, the mode sewage collection and drainage system sewage collection facility structure lacks scientific and reasonable design, the sewage collection effect is poor, the sewage collection efficiency is low, the system sewage drainage mode is single, the sewage drainage energy consumption is high for certain fish manure and residual bait discharge rate, and the mode is restricted for further application and popularization.
Disclosure of Invention
The utility model aims at providing a sewage collecting and discharging device which is applied to a pond connecting a culture tank and receiving water discharge, can solve the problems of poor sewage collecting effect and low sewage collecting efficiency of a system, provides technical support for high-efficiency sewage discharge and reduces the facility construction cost; meanwhile, two different pollution discharge modes, namely pipe drawing pollution discharge and mechanical pollution discharge, are organically combined and comprehensively applied, so that the pollution discharge amount is effectively increased, and the energy consumption of the system pollution discharge is remarkably reduced.
The utility model adopts the following technical proposal:
a sewage collecting and draining device comprising: the sewage collecting container and the sewage sucking container are opened and adjacent to each other, and the bottom of the sewage collecting container is higher than the sewage sucking container; a pipeline 13 communicated with the bottom of the sewage collecting container and a movable vertical pipe 11 which can be plugged in the pipeline 13; the mechanical sewage suction system 2 is arranged in the sewage suction container and is externally connected with the sewage treatment system; a partition plate 11 for partitioning the dirt collecting container and the dirt absorbing container and communicating the two through holes;
preferably, the mechanical sewage suction system 2 comprises a sewage suction pump 21 arranged at the bottom of the sewage suction container, and a sewage discharge pipeline connected to the sewage suction pump 21 and externally connected with a sewage treatment system.
Preferably, the side wall of the sewage collecting container is provided with a water inlet.
Furthermore, a water outlet hole is formed in the side wall of the sewage suction container.
Furthermore, the opening range of the water inlet hole is the same as that of the water outlet hole.
Preferably, the sewage collecting container and the sewage suction container are both rectangular and have the same width.
Preferably, the mobile vertical pipes 11 are distributed at intervals in the sewage collecting container.
Preferably, the bottom of the sewage collection container is 0.1-0.2 m higher than the sewage suction container.
Preferably, the holes are square, the size of the holes ranges from 150 mm to 200mm, and the distance between the holes ranges from 150 mm to 200 mm.
The utility model has the advantages that:
1) the design of the sewage collection container and the sewage suction container enables suspended matters with different particle sizes to be respectively intercepted, and the interception of large particle suspended matters in the sewage collection container effectively lightens the load of the sewage suction container;
2) the secondary advection sedimentation in the sewage collecting container and the sewage suction container which are uniformly distributed with water greatly improves the removal rate of suspended matters, and the sewage collecting facility has good sewage collecting effect and high sewage collecting efficiency.
3) The pipe-pulling pollution discharge and the mechanical pollution discharge are organically combined, the large-particle suspended matters intercepted by the front cavity can be automatically discharged in time through the pipe-pulling pollution discharge, the pollution discharge concentration is high, and the operation is convenient; the mechanical sewage discharge realizes the smooth discharge of the sewage in the rear cavity, and has good sewage discharge effect and low labor intensity.
4) Through the comprehensive application of two different blowdown modes, effectively increase the blowdown volume, show the blowdown energy consumption of reduction system, provide the guarantee for good aquatic suspended solid gets rid of.
Drawings
Fig. 1 is a schematic elevation view of the sewage collecting and discharging device of the present invention.
In the figure, 1, a sewage collecting and discharging facility, 2, a mechanical sewage suction system, 11, a partition plate, 12, a movable vertical pipe, 13, a pipeline, 21, a sewage suction pump and 22, a frame.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1, a sewage collecting and discharging apparatus includes: the sewage collecting container and the sewage sucking container are opened and adjacent to each other, and the bottom of the sewage collecting container is higher than the sewage sucking container; a pipeline 13 communicated with the bottom of the sewage collecting container and a movable vertical pipe 11 which can be plugged in the pipeline 13; the mechanical sewage suction system 2 is arranged in the sewage suction container and is externally connected with the sewage treatment system; a partition plate 11 for partitioning the dirt collecting container and the dirt absorbing container and communicating the two through holes.
In this embodiment, referring to fig. 1, the mechanical sewage suction system 2 includes a sewage suction pump 21 disposed at the bottom of the sewage suction container, and a sewage pipeline connected to the sewage suction pump 21 and externally connected to the sewage treatment system.
In this embodiment, referring to fig. 1, the side wall of the dirt collecting container is provided with a water inlet. And a water outlet is formed in the side wall of the sewage suction container.
In this embodiment, referring to fig. 1, the opening ranges of the water inlet and the water outlet are the same.
In this embodiment, the dirt collecting container and the dirt absorbing container are rectangular and have the same width, and the width direction is not shown in fig. 1.
In this embodiment, the mobile risers 11 are distributed at intervals in the dirt collection container, which is not shown in fig. 1.
In this embodiment, the bottom of the dirt collecting container is 0.1-0.2 m higher than the dirt absorbing container.
In this embodiment, the holes are square, the size is 150-200 mm, and the hole spacing is 150-200 mm.
The design of the sewage collection container and the sewage suction container of the utility model enables suspended matters with different particle diameters to be respectively intercepted, and the interception of large particle suspended matters in the sewage collection container effectively lightens the load of the sewage suction container; secondary advection sedimentation in the sewage collection container and the sewage suction container which are uniformly distributed with water, greatly improves the removal rate of suspended matters, and has good sewage collection effect and high sewage collection efficiency; the pipe-pulling pollution discharge and the mechanical pollution discharge are organically combined, the large-particle suspended matters intercepted by the front cavity can be automatically discharged in time through the pipe-pulling pollution discharge, the pollution discharge concentration is high, and the operation is convenient; the mechanical sewage discharge realizes the smooth discharge of the sewage in the rear cavity, the sewage discharge effect is good, and the labor intensity is low; through the comprehensive application of two different blowdown modes, effectively increase the blowdown volume, show the blowdown energy consumption of reduction system, provide the guarantee for good aquatic suspended solid gets rid of.
The above are preferred embodiments of the present invention, and those skilled in the art can make various changes or improvements on the above embodiments without departing from the general concept of the present invention, and these changes or improvements should fall within the scope of the present invention.
Claims (9)
1. A sewage collecting and discharging device is characterized by comprising:
the sewage collecting container and the sewage sucking container are opened and adjacent, and the bottom of the sewage collecting container is higher than the sewage sucking container;
a pipeline (13) communicated with the bottom of the sewage collecting container and a movable vertical pipe (12) which can be plugged in the pipeline (13);
a mechanical sewage suction system (2) which is arranged in the sewage suction container and is externally connected with the sewage treatment system;
a partition plate (11) for separating the dirt collecting container and the dirt absorbing container and communicating the two through holes.
2. The sewage collecting and discharging device as claimed in claim 1, wherein: the mechanical sewage suction system (2) comprises a sewage suction pump (21) arranged at the bottom of the sewage suction container and a sewage discharge pipeline connected with the sewage suction pump (21) and externally connected with a sewage treatment system.
3. The sewage collecting and discharging device as claimed in claim 1, wherein: and a water inlet hole is formed in the side wall of the sewage collecting container.
4. A sewage collecting and discharging device as claimed in claim 3, wherein: and a water outlet is formed in the side wall of the sewage suction container.
5. The sewage collecting and discharging device as claimed in claim 4, wherein: the water inlet hole and the water outlet hole are arranged in the same range.
6. The sewage collecting and discharging device as claimed in claim 1, wherein: the sewage collecting container and the sewage suction container are both rectangular and have the same width.
7. The sewage collecting and discharging device as claimed in claim 1, wherein: the movable vertical pipes (12) are distributed in the sewage collecting container at intervals.
8. The sewage collecting and discharging device as claimed in claim 1, wherein: the bottom of the sewage collection container is 0.1-0.2 m higher than the sewage suction container.
9. The sewage collecting and discharging device as claimed in claim 1, wherein: the eyelets are square, the size of the eyelets ranges from 150 mm to 200mm, and the distance between the eyelets ranges from 150 mm to 200 mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121198089.9U CN214903177U (en) | 2021-05-31 | 2021-05-31 | Collection and sewage discharge device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121198089.9U CN214903177U (en) | 2021-05-31 | 2021-05-31 | Collection and sewage discharge device |
Publications (1)
Publication Number | Publication Date |
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CN214903177U true CN214903177U (en) | 2021-11-30 |
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Family Applications (1)
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CN202121198089.9U Active CN214903177U (en) | 2021-05-31 | 2021-05-31 | Collection and sewage discharge device |
Country Status (1)
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2021
- 2021-05-31 CN CN202121198089.9U patent/CN214903177U/en active Active
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