CN214680206U - Sludge discharge system of sedimentation tank, sedimentation tank and sewage treatment system - Google Patents
Sludge discharge system of sedimentation tank, sedimentation tank and sewage treatment system Download PDFInfo
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- CN214680206U CN214680206U CN202120379945.4U CN202120379945U CN214680206U CN 214680206 U CN214680206 U CN 214680206U CN 202120379945 U CN202120379945 U CN 202120379945U CN 214680206 U CN214680206 U CN 214680206U
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- 239000010802 sludge Substances 0.000 title claims abstract description 118
- 238000004062 sedimentation Methods 0.000 title claims abstract description 115
- 239000010865 sewage Substances 0.000 title claims abstract description 25
- 238000011282 treatment Methods 0.000 title claims abstract description 19
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 94
- 238000007599 discharging Methods 0.000 claims abstract description 31
- 239000013049 sediment Substances 0.000 claims abstract description 8
- 239000002244 precipitate Substances 0.000 claims abstract description 4
- 238000004891 communication Methods 0.000 claims description 11
- 239000003814 drug Substances 0.000 claims description 11
- 229940079593 drug Drugs 0.000 claims description 3
- 238000010276 construction Methods 0.000 abstract description 7
- 238000012423 maintenance Methods 0.000 abstract description 6
- 238000006243 chemical reaction Methods 0.000 description 9
- 230000000694 effects Effects 0.000 description 6
- 230000005484 gravity Effects 0.000 description 4
- 230000001112 coagulating effect Effects 0.000 description 3
- 239000006260 foam Substances 0.000 description 3
- 239000007788 liquid Substances 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 239000007787 solid Substances 0.000 description 3
- 238000013461 design Methods 0.000 description 2
- 238000005189 flocculation Methods 0.000 description 2
- 230000016615 flocculation Effects 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 238000003756 stirring Methods 0.000 description 2
- 230000009471 action Effects 0.000 description 1
- 230000002411 adverse Effects 0.000 description 1
- 229940037003 alum Drugs 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000004568 cement Substances 0.000 description 1
- 239000003153 chemical reaction reagent Substances 0.000 description 1
- 238000005352 clarification Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000011221 initial treatment Methods 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 238000001556 precipitation Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
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Abstract
The utility model discloses a sediment outflow system, sedimentation tank and sewage treatment system of sedimentation tank, sediment outflow system set up at the sedimentation tank bottom of the pool for the precipitate of discharging, include: the first sludge discharge groove is a plurality of V-shaped grooves which are arranged in parallel; the second sludge discharge groove is a plurality of V-shaped grooves which are arranged in parallel; the number of the sludge discharge pipes is the sum of the number of the V-shaped grooves of the first sludge discharge groove and the number of the V-shaped grooves of the second sludge discharge groove; the plurality of sludge discharge pipes are respectively arranged at the bottoms of the V-shaped grooves of the first sludge discharge groove and the second sludge discharge groove. The utility model discloses a mud discharging system of sedimentation tank has promoted mud discharge efficiency through setting up crisscross V type groove end and the parallel mud pipe of laying to can evenly inhale the bottom of the pool mud, reduce the moisture that the mud pipe brought out, improved mud discharging efficiency and play mud quality. The whole work efficiency that has promoted has reduced construction and operation maintenance cost, has promoted play mud quality and play water quality.
Description
Technical Field
The utility model belongs to the technical field of sewage treatment, especially, relate to a mud discharging system, sedimentation tank and sewage treatment system of sedimentation tank.
Background
The sedimentation tank is a device for removing suspended matters in water and purifying water quality by applying sedimentation. The working principle is to remove suspended substances in water by utilizing the natural sedimentation or coagulating sedimentation effect of water, and the sedimentation effect is determined by the flow rate of the water in the sedimentation tank and the retention time of the water in the tank. Sedimentation tanks have wide market requirements and applications in the field of water treatment, and sedimentation tank technology is used in almost all water treatment projects. In practical application, the existing sedimentation tank is often unsmooth in sludge discharge, too high in sludge discharge water content and poor in drainage quality.
SUMMERY OF THE UTILITY MODEL
Objects of the invention
The utility model aims at providing a sediment outflow system, sedimentation tank and sewage treatment system of sedimentation tank arrange the technical problem that mud is smooth, row's mud water content is too high, drainage quality is poor in order to solve among the prior art sedimentation tank.
(II) technical scheme
In order to solve the above problem, the utility model discloses an aspect provides a sediment outflow system of sedimentation tank, and sediment outflow system sets up at the sedimentation tank bottom of the pool for the discharge precipitate, include: the first sludge discharge groove is a plurality of V-shaped grooves which are arranged in parallel; the second sludge discharge groove is a plurality of V-shaped grooves which are arranged in parallel, and the V-shaped grooves of the first sludge discharge groove and the V-shaped grooves of the second sludge discharge groove are staggered and parallel; the number of the sludge discharge pipes is the sum of the number of the V-shaped grooves of the first sludge discharge groove and the number of the V-shaped grooves of the second sludge discharge groove; the plurality of sludge discharge pipes are respectively arranged at the bottoms of the V-shaped grooves of the first sludge discharge groove and the second sludge discharge groove.
Further, the sludge discharge pipe arranged at the bottom of the first sludge discharge groove penetrates through the V-shaped protrusion between the V-shaped grooves of the two second sludge discharge grooves.
Furthermore, mud inlet holes are formed in the parts, arranged on the V-shaped grooves of the first mud discharging groove and the second mud discharging groove, of the mud discharging pipes.
Further, still include: the mud discharging main pipe is arranged outside the wall of the sedimentation tank and is connected with the mud discharging main pipe.
Furthermore, a valve is arranged on the sludge discharge pipe.
Furthermore, a valve is arranged on the sludge discharge main pipe.
According to the utility model discloses a still another aspect provides a sedimentation tank, including the row's mud system of sedimentation tank of any one of above-mentioned scheme.
Further, still include: the water drainage system is arranged at the top of the sedimentation tank and used for discharging the settled clean water; wherein the drainage system comprises: the scum baffle is arranged in the tank wall, is matched with the tank wall in shape and surrounds the whole sedimentation tank; and the scum baffle is used as one side plate of the drainage channel, and the other side plate of the drainage channel and the top end of the scum baffle are at the same horizontal height.
Further, still include: the water inlet system is arranged at the top of the sedimentation tank, extends into the sedimentation tank and is used for enabling sewage to enter the sedimentation tank and/or adding medicines into the sewage; wherein, the water inlet system includes: the water inlet pipe is arranged at the top of the tank; the dosing pipe is arranged at the top of the tank; the first reactor is respectively communicated with the water inlet pipe and the dosing pipe; a first concentrator tube in communication with the reactor, the first concentrator tube having an axial area less than a cross-sectional area of the first reactor; a second reactor in communication with the first concentrator tube; a second concentrator tube in communication with the reactor, the second concentrator tube having an axial area less than a cross-sectional area of the second reactor; a delay tube in communication with the second concentration tube.
According to another aspect of the utility model, a sewage treatment system is provided, including any one of the above-mentioned scheme sedimentation tank.
(III) advantageous effects
The above technical scheme of the utility model has following profitable technological effect:
the utility model discloses a mud discharging system of sedimentation tank has promoted mud discharge efficiency through setting up crisscross V type groove end and the parallel mud pipe of laying to can evenly inhale the bottom of the pool mud, reduce the moisture that the mud pipe brought out, improved mud discharging efficiency and play mud quality. Wholly promote work efficiency, simplify the facility simultaneously, reduced construction and operation maintenance cost, promoted play mud quality and play water quality.
Drawings
Fig. 1 is a schematic view of a sludge discharge system of a sedimentation tank according to an embodiment of the present invention.
Fig. 2 is a schematic view of a sludge discharge system of a sedimentation tank according to another embodiment of the present invention.
Fig. 3 is a schematic view of a sludge discharge system of a settling tank according to still another embodiment of the present invention.
Fig. 4 is a schematic view of a drainage system according to yet another embodiment of the present invention.
Reference numerals:
1: a sludge discharge system; 11: a first sludge discharge groove; 12: a second sludge discharge groove; 13: a sludge discharge pipe; 131: a mud inlet hole; 14: a mud discharge main pipe; 140: a valve; 2: a drainage system; 21: a scum baffle; 22: a drainage channel; 23: a dovetail groove; 3: a water intake system; 31: a water inlet pipe; 32: a medicine feeding pipe; 33: a first reactor; 34: a first concentration tube; 35: a second reactor; 36: a second concentration tube; 37: a slow release tube; 38: liquid distribution device.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
A schematic diagram of a layer structure according to an embodiment of the invention is shown in the drawing. The figures are not drawn to scale, wherein certain details are exaggerated and possibly omitted for clarity. The shapes of various regions, layers, and relative sizes and positional relationships therebetween shown in the drawings are merely exemplary, and deviations may occur in practice due to manufacturing tolerances or technical limitations, and a person skilled in the art may additionally design regions/layers having different shapes, sizes, relative positions, as actually required.
It is to be understood that the embodiments described are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
The invention will be described in more detail below with reference to the accompanying drawings. Like elements in the various figures are denoted by like reference numerals. For purposes of clarity, the various features in the drawings are not necessarily drawn to scale.
The existing sedimentation tank is a treatment structure for removing suspended particles with density larger than that of water from water by utilizing gravity sedimentation, is one of the most widely applied treatment units in sewage treatment, and can be used for primary treatment of sewage, post-treatment of biological treatment and advanced treatment. The sedimentation tank is divided according to the water flow direction and can be divided into a horizontal flow type sedimentation tank, a radial flow type sedimentation tank and a vertical flow type sedimentation tank. The sedimentation tank comprises a water inlet area, a sedimentation area, a buffer area, a sludge area and a water outlet area. The water inlet area and the water outlet area have the functions of enabling water flow to uniformly flow through the sedimentation tank, avoiding the adverse effects of short flow and reduction of turbulent flow on sedimentation, reducing a dead water area and improving the volume utilization rate of the sedimentation tank; the settling zone is also called a clarification zone, namely a working zone of the settling tank, and is a zone where sediments can be separated from sewage; the sludge settling area is an area for storing, concentrating and discharging sludge; the buffer zone is a water layer zone for dividing the settling zone and the sludge zone, and ensures that the settled matters are not floated again due to the stirring of water flow.
The sludge at the bottom of the existing sedimentation tank is generally uniformly settled and stacked at the bottom of the tank. The existing sludge discharge scheme is that a sludge discharge pipeline is usually constructed at the bottom of a pool, sludge at the bottom of the pool enters from the perforated sludge discharge pipeline, the perforated sludge discharge pipeline is connected to a main sludge discharge pipe, and the main sludge discharge pipe is provided with a sludge discharge main valve for controlling sludge discharge. When the valve is opened to discharge sludge, sludge at the bottom of the tank close to one end of the main sludge discharge pipe enters the pipeline to be discharged. Because bottom of the pool mud is even tiling distribution, keeps away from house steward one end mud and has not been arranged to the greatest extent, and front end mud just has been the evacuation, and a large amount of moisture gets into the mud pipe from the hole of front end, leads to the unable discharge of mud of distal end to lead to the discharged mud water content too high.
Fig. 1 is a schematic view of a sludge discharge system of a sedimentation tank according to an embodiment of the present invention.
Fig. 2 is a schematic view of a sludge discharge system of a sedimentation tank according to another embodiment of the present invention.
Fig. 3 is a schematic view of a sludge discharge system of a settling tank according to still another embodiment of the present invention.
As shown in fig. 1, fig. 2 and fig. 3, in an embodiment of the present invention, a sludge discharge system of a sedimentation tank is provided, the sludge discharge system is disposed at the bottom of the sedimentation tank for discharging sediments, including: the first sludge discharge groove 11 is a plurality of V-shaped grooves arranged in parallel; the second sludge discharge groove 12 is a plurality of V-shaped grooves which are arranged in parallel, and the V-shaped grooves of the first sludge discharge groove 11 and the V-shaped grooves of the second sludge discharge groove 12 are staggered and parallel; the number of the sludge discharge pipes 13 is the sum of the number of the V-shaped grooves of the first sludge discharge groove 11 and the number of the V-shaped grooves of the second sludge discharge groove 12; the plurality of sludge discharge pipes 13 are respectively arranged at the bottoms of the V-shaped grooves of the first sludge discharge groove 11 and the second sludge discharge groove 12. The utility model discloses a sedimentation tank has promoted mud discharging efficiency through setting up crisscross V type groove end and parallel row's mud pipe of laying to can evenly inhale the bottom of the pool mud, reduce the moisture that the mud pipe brought out, improve row's mud efficiency and play mud quality. Wholly promote work efficiency, simplify the facility simultaneously, reduced construction and operation maintenance cost, promoted play mud quality and play water quality.
In an alternative embodiment, the sludge discharge pipe 13 arranged at the bottom of the first sludge discharge groove 11 passes through a V-shaped bulge between the V-shaped grooves of the two second sludge discharge grooves 12.
In an alternative embodiment, the mud discharging pipe 13 is provided with mud inlet holes 131 at the parts of the V-shaped grooves of the first mud discharging groove 11 and the second mud discharging groove 12.
Through setting up crisscross first sludge discharge groove 11 with second sludge discharge groove 12 to and parallel laying sludge discharge pipe 13 has promoted mud discharge efficiency to can evenly inhale the bottom of the pool mud, reduce the moisture that sludge discharge pipe brought out, improve sludge discharge efficiency and play mud quality.
In an alternative embodiment, the sludge discharge system 1 of the sedimentation tank may further include: arrange mud house steward 14, arrange mud house steward 14 and set up outside the pool wall of sedimentation tank, it is a plurality of arrange mud pipe 13 respectively with arrange mud house steward 14 is connected.
In an alternative embodiment, a valve 140 is provided on the sludge discharge pipe 13. The valve 140 is used for controlling each sludge discharge pipe 13 to start/stop discharging sludge respectively.
In an alternative embodiment, a valve 140 is provided on the sludge discharge main 14. The valve 140 is used for controlling the mud discharging main pipe 14 to start/stop discharging mud.
In another embodiment of the present invention, a sedimentation tank is provided, which comprises the sludge discharge system 1 of the sedimentation tank according to any one of the above technical solutions.
In an optional embodiment, the sedimentation tank may further include: and the drainage system 2 is arranged at the top of the sedimentation tank and is used for discharging the settled clean water.
In an alternative embodiment, the drainage system 2 may comprise: a scum baffle 21, which is arranged inside the tank wall and matches the shape of the tank wall, surrounds the entire settling tank. The scum baffle 21 forms a guide chute (drainage path) with the tank wall.
In an alternative embodiment, the scum baffle 21 and the pool wall form an outlet diversion trench (drainage path) with the width of about 30mm and the depth of about 500mm, so that the traditional outlet trench without a water channel baffle is replaced, and the outlet water quality is improved.
In an alternative embodiment, the drainage system 2 may comprise: and a drain channel 22 disposed on a top of the scum baffle 21, wherein the scum baffle 21 serves as one side plate of the drain channel 22, and the other side plate of the drain channel 22 is at the same level as a top end of the scum baffle 21.
In an alternative embodiment, the dross baffle 21 has a dovetail groove 23 at the top.
The dovetail 23 is arranged at the sedimentation tank top, lays with pool wall parallel, and remains about 30 mm's space between the pool wall, and the dross baffle 21 upper end in the dovetail 23 outside is dovetail 23, and lower extreme downwardly extending is about 500mm does dross baffle 21, when the surface of water height of sedimentation tank reached the height of dovetail 23, the gap between dross baffle 21 and the pool wall formed out the water guiding gutter, and the clear water is through going out the water guiding gutter, crosses dovetail 23 again, flows into water drainage channel 22. Scum foam and the like usually appearing on the water surface of the sedimentation tank can not enter the drainage channel 22, so that scum is not attached to the discharged water, and the quality of the discharged water is improved.
Fig. 4 is a schematic view of a drainage system according to yet another embodiment of the present invention.
In an alternative embodiment, as shown in fig. 4, the drainage system 2 may comprise: and the drainage channel 22 is arranged on the outer side of the top of the pool wall, the pool wall is used as one side plate of the drainage channel 22, and the other side plate of the drainage channel 22 is at the same level with the top end of the pool wall.
In an alternative embodiment, the top of the pool wall has a dovetail groove 23.
In an alternative embodiment, the drain channel 22 communicates with a drain line.
The dovetail groove 23 is arranged at the top of the sedimentation tank, the lower end of the scum baffle 21 extends downwards for about 500mm to form the scum baffle 21, when the water level of the sedimentation tank reaches the height of the dovetail groove 23, a water outlet diversion trench is formed in a gap between the scum baffle 21 and the tank wall, and clean water passes through the water outlet diversion trench and then passes over the dovetail weir to flow into the drainage channel 22. Scum foam and the like usually appearing on the water surface of the sedimentation tank can not enter the water outlet tank, so that the scum is not attached to the outlet water, and the quality of the outlet water is improved.
In an optional embodiment, a valve is arranged on the drainage pipeline. The valve is used to control the drainage system 2 to start/stop drainage.
The existing sedimentation tank often has lighter dross to float on the surface of water, and the dross together crosses the dovetail along with the clear water, flows into the drainage canal, influences the play water quality. The utility model discloses a clear water in the sedimentation tank can rise along the route that dross baffle 21 and pool wall constitute, stride across dovetail 23 and get into and discharge behind the drainage channel 22. Through the width that reduces the drainage route and arrange mud around the pool wall of sedimentation tank, effectually avoided the dross to flow along with the clear water, improved the quality of drainage, increased sewage treatment's efficiency.
In an alternative embodiment, a restriction is provided between the scum baffle 21 and the tank wall. By means of the flow restriction, the width of the drainage path between the scum baffle 21 and the tank wall is further reduced, further reducing scum carried along with the clean water.
In an alternative embodiment, the dross baffle 21 is spaced from the wall by: 20-50 mm.
In an alternative embodiment, the drainage system 2 may further comprise: a drain pipe which is communicated with the drain channel 22 and is provided with a valve.
Through the drainage channel 22 outside the design of dross baffle 21, the cooperation of dross baffle 21 and pool wall has restricted the width in play water route, has more restricted the discharge of mainly concentrating the dross at the cell body center, and the main region of dross has been kept away from in the play water route of narrow, has avoided the surface of water dross to get into drainage channel 22 to the play water quality of water has been improved.
In an optional embodiment, the sedimentation tank may further include: and the water inlet system 3 is arranged at the top of the sedimentation tank, extends to the inside of the sedimentation tank and is used for enabling sewage to enter the sedimentation tank and/or adding medicines into the sewage.
In an alternative embodiment, the water inlet system 3 may comprise: a water inlet pipe 31 provided at the top of the tank; a dosing pipe 32 arranged at the top of the tank; the first reactor 33, the first reactor 33 is respectively communicated with the water inlet pipe 31 and the dosing pipe 32; a first concentration tube 34, the first concentration tube 34 being in communication with the reactor, and the axial area of the first concentration tube 34 being smaller than the cross-sectional area of the first reactor 33; a second reactor 35, said second reactor 35 being in communication with said first concentrator tube 34; a second concentration tube 36, the second concentration tube 36 being in communication with the reactor, and the axial area of the second concentration tube 36 being smaller than the cross-sectional area of the second reactor 35; a slow release tube 37 in communication with the second concentration tube 36. Through setting up add pencil 32 first reactor 33 second reactor 35 has simplified the medicine process of adding, has cancelled independent reaction tank to practice thrift the construction cost, promoted the efficiency of medicine mixing reaction.
In an alternative embodiment, the outlet of the slow release tube 37 is located in the center of the sedimentation tank.
In an alternative embodiment, the outlet of the slow release pipe 37 is connected with a liquid distribution device 38.
The water inlet pipe 31 is controlled by a water inlet valve, and the pipeline and the top surface of the sedimentation tank are horizontally arranged. The water inlet pipe 31 extends to the central position of the sedimentation tank and bends downwards by 90 degrees, and is vertically opened downwards and connected with the reactor.
The dosing pipe 32 and the water inlet pipe 31 are both arranged at the top of the tank (or communicated with the tank), the dosing pipe 32 is connected with a timing metering valve, and the other end of the dosing pipe is connected with a medicine tank.
In an alternative embodiment, the first reactor 33 is located at the center of the sedimentation tank, vertically connected to the water inlet pipe, and vertically extended downward to the center of the tank body. The reactors (the first reactor 33 and the second reactor 35) have two or more thick and thin diameter changes, the thick pipe is a reactor, the thin pipe is a concentration pipe (the second concentration pipe 36 and the first concentration pipe 34), and the tail end of the reaction pipe is connected with the slow release pipe 37.
The center of the slow release pipe 37 is vertically connected with the reaction pipe and is parallel to the water level of the sedimentation tank.
In another embodiment of the present invention, a sewage treatment system is provided, which comprises the sedimentation tank according to any one of the above technical solutions.
The raw water gets into a reactor with sedimentation tank parallel arrangement with power promotion or gravity from the mode of flowing, carries out intensive mixing with the chemical reagent that adds simultaneously and stirs and take place the reaction, make the suspended solid behind the quick flocculation and formation alum blossom, enter into the settling zone of sedimentation tank, buffer zone, form and sink solid thing, realize solid-water separation, the rivers after settling clear are through the pipe chute that sets up in the middle of the sedimentation tank, rise to the pond top and discharge through horizontal weir overflow drainage canal 22, it is external through discharging device to sink solid thing to the V type groove concentration back in bottom of the pool mud district.
After a period of natural precipitation or coagulating sedimentation, the cement in the sedimentation tank is layered, the upper middle layer is clear water, and the lower layer is sludge.
The drainage channel 22 is arranged at the top of the sedimentation tank, the drainage channel 22 is flush with the upper end of the tank wall and surrounds the tank wall for a circle, and the clear water on the upper layer after the sedimentation reaction flows into the drainage channel 22 through the dovetail groove 23 and then flows into the drainage pipe to enter the next procedure.
The whole work efficiency that has promoted has reduced construction and operation maintenance cost, has promoted play mud quality and play water quality.
The utility model discloses a sedimentation tank work flow:
the user opens the water inlet valve and sewage enters the first reactor 33 through the water inlet pipe 31.
The user opens the timed metering valve and the medicament enters the first reactor 33 through the dosing tube 32.
The sewage and the medicine are primarily mixed and reacted in the first reactor 33, then flow into the first concentration pipe 34, enter the second reactor 35 after primary concentration, and the sewage after primary reaction is impacted and stirred in the pipe wall to be fully mixed and reacted with the added medicine.
The sewage and the medicament after the mixing reaction flow into the slow release pipe 37, and are uniformly distributed and discharged into the sedimentation tank after passing through the slow release pipe 37 to the liquid distribution device 38 communicated with the slow release pipe 37.
After entering the sedimentation tank, the sewage flowing into the sedimentation tank undergoes flocculation reaction, and the agglomerated suspended matters fall into the bottom of the tank to form sludge through coagulating sedimentation under the action of gravity.
Mud is evenly deposited at the bottom of the pool, because the slot structure of bottom of the pool, mud is concentrated in second mud groove 12 with the tank bottom in the V type groove of first mud groove 11, mud is under self gravity and water pressure effect, through each on the mud pipe 13 go into mud hole 131, flow into mud pipe 13, open valve 140, mud in the mud pipe 13 gets into discharge behind the mud main pipe 14. Sludge in each area of the bottom of the pond respectively enters the corresponding sludge discharge pipe 13, and the situation that the sludge close to one section of the sludge discharge main pipe 14 is completely sucked and flows into clean water, and the sludge at the far end is not completely sucked does not occur.
The clean water in the sedimentation tank forms a diversion trench with the tank wall through the scum baffle 21, and then flows into the drainage channel 22 after passing through the dovetail groove 23. The valve on the drainage pipeline is opened, and the clean water in the drainage channel 22 is discharged by the drainage pipeline for reuse. Scum foam and the like usually appearing on the water surface of the sedimentation tank can not enter the drainage channel 22, so that scum is not attached to the discharged water, and the quality of the discharged water is improved.
The utility model discloses aim at protecting row's mud system, sedimentation tank and sewage treatment system of sedimentation tank, arrange the mud system setting at the sedimentation tank bottom of the pool for the precipitate of discharging, include: the first sludge discharge groove 11 is a plurality of V-shaped grooves arranged in parallel; the second sludge discharge groove 12 is a plurality of V-shaped grooves which are arranged in parallel, and the V-shaped grooves of the first sludge discharge groove 11 and the V-shaped grooves of the second sludge discharge groove 12 are staggered and parallel; the number of the sludge discharge pipes 13 is the sum of the number of the V-shaped grooves of the first sludge discharge groove 11 and the number of the V-shaped grooves of the second sludge discharge groove 12; the plurality of sludge discharge pipes 13 are respectively arranged at the bottoms of the V-shaped grooves of the first sludge discharge groove 11 and the second sludge discharge groove 12. The utility model discloses a sedimentation tank has promoted mud discharging efficiency through setting up crisscross V type groove end and parallel row's mud pipe of laying to can evenly inhale the bottom of the pool mud, reduce the moisture that the mud pipe brought out, improve row's mud efficiency and play mud quality. Wholly promote work efficiency, simplify the facility simultaneously, reduced construction and operation maintenance cost, promoted play mud quality and play water quality. The utility model discloses a sedimentation tank has promoted mud discharging efficiency through setting up crisscross V type groove end and parallel row's mud pipe of laying to can evenly inhale the bottom of the pool mud, reduce the moisture that the mud pipe brought out, improve row's mud efficiency and play mud quality. Wholly promote work efficiency, simplify the facility simultaneously, reduced construction and operation maintenance cost, promoted play mud quality and play water quality.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.
Claims (10)
1. The utility model provides a sediment outflow system of sedimentation tank, row's mud system sets up at the sedimentation tank bottom of the pool for the precipitate of discharging, its characterized in that includes:
the first sludge discharge groove (11) is a plurality of V-shaped grooves which are arranged in parallel;
the second sludge discharge groove (12) is a plurality of V-shaped grooves which are arranged in parallel, and the V-shaped grooves of the first sludge discharge groove (11) and the V-shaped grooves of the second sludge discharge groove (12) are staggered and parallel;
the number of the sludge discharge pipes (13) is the sum of the number of the V-shaped grooves of the first sludge discharge groove (11) and the number of the V-shaped grooves of the second sludge discharge groove (12); the plurality of sludge discharge pipes (13) are respectively arranged at the bottoms of the V-shaped grooves of the first sludge discharge groove (11) and the second sludge discharge groove (12).
2. Sludge discharge system of a sedimentation tank according to claim 1,
the sludge discharge pipe (13) arranged at the bottom of the first sludge discharge groove (11) penetrates through the V-shaped bulge between the V-shaped grooves of the two second sludge discharge grooves (12).
3. Sludge discharge system of a sedimentation tank according to claim 1 or 2,
and mud inlet holes (131) are formed in the parts, arranged in the V-shaped grooves of the first mud discharging groove (11) and the second mud discharging groove (12), of the mud discharging pipes (13).
4. A sludge discharge system of a sedimentation tank according to claim 1 or 2, further comprising:
arrange mud house steward (14), arrange mud house steward (14) and set up outside the pool wall of sedimentation tank, it is a plurality of arrange mud pipe (13) respectively with arrange mud house steward (14) and be connected.
5. Sludge discharge system of a sedimentation tank according to claim 1 or 2,
and a valve (140) is arranged on the sludge discharge pipe (13).
6. Sludge discharge system of a sedimentation tank according to claim 4,
and a valve (140) is arranged on the sludge discharge main pipe (14).
7. A sedimentation tank, characterized by comprising a sludge discharge system of a sedimentation tank according to any one of claims 1 to 6.
8. A sedimentation tank as claimed in claim 7, further comprising:
the water drainage system (2) is arranged at the top of the sedimentation tank and is used for discharging the settled clean water;
wherein the drainage system (2) comprises:
a scum baffle (21) which is arranged in the tank wall, is matched with the shape of the tank wall and surrounds the whole sedimentation tank;
and the drainage channel (22) is arranged at the top of the scum baffle (21), the scum baffle (21) is used as one side plate of the drainage channel (22), and the other side plate of the drainage channel (22) is at the same horizontal height as the top end of the scum baffle (21).
9. A sedimentation tank as claimed in claim 7, further comprising:
the water inlet system (3) is arranged at the top of the sedimentation tank, extends into the sedimentation tank and is used for enabling sewage to enter the sedimentation tank and/or adding medicines into the sewage;
wherein the water intake system (3) comprises:
a water inlet pipe (31) arranged on the top of the tank;
a dosing pipe (32) arranged at the top of the tank;
the first reactor (33), the first reactor (33) is respectively communicated with the water inlet pipe (31) and the dosing pipe (32);
a first concentration tube (34), the first concentration tube (34) being in communication with the reactor, and an axial area of the first concentration tube (34) being less than a cross-sectional area of the first reactor (33);
a second reactor (35), the second reactor (35) being in communication with the first concentrator tube (34);
a second concentration tube (36), the second concentration tube (36) being in communication with the reactor, and the axial area of the second concentration tube (36) being less than the cross-sectional area of the second reactor (35);
a slow-release tube (37) which is communicated with the second concentration tube (36).
10. A sewage treatment system comprising a sedimentation tank according to any one of claims 7 to 9.
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN112807762A (en) * | 2021-02-19 | 2021-05-18 | 北京通海立言科创技术服务有限公司 | Sedimentation tank and sewage treatment system |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN112807762A (en) * | 2021-02-19 | 2021-05-18 | 北京通海立言科创技术服务有限公司 | Sedimentation tank and sewage treatment system |
| CN112807762B (en) * | 2021-02-19 | 2024-11-01 | 北京通海立言科创技术服务有限公司 | Sedimentation tank and sewage treatment system |
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