CN214574561U - Integration pump station convenient to desilting - Google Patents

Integration pump station convenient to desilting Download PDF

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Publication number
CN214574561U
CN214574561U CN202120843668.8U CN202120843668U CN214574561U CN 214574561 U CN214574561 U CN 214574561U CN 202120843668 U CN202120843668 U CN 202120843668U CN 214574561 U CN214574561 U CN 214574561U
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China
Prior art keywords
pump station
jar body
paddle
clean pipe
pipe
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CN202120843668.8U
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Chinese (zh)
Inventor
张向东
宋楠
杨锋平
朱承正
刘豪杰
高俊
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Nanjing Zhengao Conservancy Building Co ltd
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Nanjing Zhengao Conservancy Building Co ltd
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Abstract

The utility model relates to a field of pump station technique discloses an integration pump station convenient to desilting, and it includes a jar body, rotates along a jar body axial and sets up the clean pipe of locating jar internal, is used for driving clean pipe pivoted drive assembly and locates the desilting subassembly that clean pipe is close to jar body diapire one end, and clean pipe is used for extracting sewage, and the desilting subassembly includes connection pad and a plurality of paddle, connection pad and clean pipe fixed connection, and a plurality of paddle all is connected with the connection pad. This application can keep cleaing away the stability of silt efficiency when cleaing away silt, improves the effect of extraction sewage.

Description

Integration pump station convenient to desilting
Technical Field
The application relates to the field of pump station technology, especially relates to an integration pump station convenient to desilting.
Background
At present, in a sewage purification facility, sewage is generally conveyed by an integrated pump station, and a certain amount of sludge is often mixed in the sewage, so when the sewage passes through the integrated pump station, the sludge is easily deposited in a tank body of the integrated pump station, and the conveying of the sewage is hindered.
Chinese patent with publication number CN209482448U discloses an integration pump station convenient to desilting, set up the integration pump station jar body that detects the entry including the top, the internal cleaning device that is provided with of integration pump station jar, cleaning device includes the dredge pump, the dredge pump passes through the mount pad to be fixed on the inner wall of the integration pump station jar body, still be equipped with the pipe that absorbs water in the integration pump station jar body, drain pipe and shunt tubes, the intake port intercommunication of pipe and dredge pump that absorbs water, the drain pipe communicates with the drainage port of dredge pump, shunt tubes and drain pipe intercommunication, and be equipped with filter equipment on the shunt tubes, one side that the shunt tubes was kept away from to the dredge tube is equipped with the injection pipe, the one end and the shunt tubes intercommunication of injection pipe, other end fixedly connected with water spray cover. When the integrated pump station tank works, the sewage pump absorbs sewage in the integrated pump station tank body through the water absorption pipe, the sewage leaves the integrated pump station tank body through the water discharge pipe, a part of sewage passing through the water discharge pipe is filtered by the filtering device and then is sprayed out of the water spray cover through the spraying pipe, and sludge deposited at the bottom of the integrated pump station tank body is cleaned.
In view of the above-mentioned related art, the inventor believes that, during the process of treating sewage, sludge carried in the sewage is continuously deposited in the filtering device, which results in the weakening of water flow in the injection pipe, and the gradual reduction of the efficiency of cleaning the sludge, which affects the effect of extracting the sewage.
SUMMERY OF THE UTILITY MODEL
Among the correlation technique, silt can last the deposit in filter equipment, leads to the efficiency of clearance silt to descend gradually, influences the effect of extraction sewage, and in order to improve this defect, this application provides an integration pump station convenient to desilting.
The application provides a pair of integration pump station convenient to desilting adopts following technical scheme to reachd:
the utility model provides an integration pump station convenient to desilting, includes a jar body, rotates along a jar body axial and sets up locate jar internal survey clean pipe, be used for driving clean pipe pivoted drive assembly and locate the desilting subassembly that clean pipe is close to jar body diapire one end, clean pipe is used for extracting sewage, the desilting subassembly includes connection pad and a plurality of paddle, connection pad and clean pipe fixed connection, it is a plurality of the paddle all with connection pad fixed connection.
Through above-mentioned technical scheme, the during operation, the clean pipe of drive assembly drive rotates, and clean pipe passes through the connection pad simultaneously and drives the paddle and rotate, stirs sewage when the paddle rotates to break up the sedimentary silt of jar body bottom with the help of the scouring force of sewage, simultaneously, the operator draws the internal sewage of jar through clean pipe with the help of pumping equipment, and the silt that is broken up leaves jar the body along with rivers. In the course of the work, drive assembly continuously drives clean pipe and paddle and rotates, consequently can make the efficiency of clearance silt remain stable, has improved the effect of extraction sewage.
Preferably: the one end of clean pipe is worn to establish the roof of the jar body from bottom to top, the one end that the jar body was worn to establish by clean pipe is equipped with the latch along the periphery, drive assembly include fixed connection on the body outer wall the cylinder and with the output fixed connection's of cylinder rack, rack and latch meshing.
Through the technical scheme, during operation, the cylinder drives the cleaning pipe to rotate through the rack and the latch, and the output end of the cylinder stretches out and retracts, so that the rack moves in the opposite direction, sewage can be alternately pushed by the cleaning pipe along the clockwise direction and the anticlockwise direction through the paddles in the working process, the scouring force of the sewage on the sludge is enhanced, and the sludge cleaning effect is improved.
Preferably: the connecting disc and the cleaning pipe are coaxially arranged, a plurality of flow guide holes are formed in the connecting disc along the radial direction, and the flow guide holes are communicated with the cleaning pipe.
Through the technical scheme, when the device works, the cleaning pipe extracts sewage through the port of the cleaning pipe and the flow guide hole, so that the sewage extraction efficiency is improved; in addition, the water guide holes also provide a standby water pumping channel for the cleaning pipes, and when the ports of the cleaning pipes are blocked by sludge, the cleaning pipes can still extract sewage through the water guide holes, so that the possibility that the sludge deposited at the bottom end of the tank body affects the sewage extraction efficiency is reduced.
Preferably: the dredging component further comprises a mudguard arranged at the port of the flow guide hole, the mudguard is connected with the connecting disc, and the port of the flow guide hole is shielded.
Through above-mentioned technical scheme, when clean pipe passed through the water conservancy diversion hole and extracts sewage, the silt block mass that carries in the sewage received stopping of fender to it is downthehole that difficult entering water conservancy diversion. The particle size of the sludge block mass is reduced after the sludge block mass is broken up into sludge particles by water flow, and the sludge particles can enter the flow guide holes along with the water flow, so that the possibility that the flow guide holes are blocked by the sludge block mass is reduced.
Preferably: the port department in the water conservancy diversion hole is equipped with the installation piece on the connection pad, the slot has been seted up on the installation piece, fixedly connected with picture peg on the fender, the picture peg is pegged graft with the slot and is cooperated.
Through the technical scheme, when the fender needs to be replaced, an operator moves the inserting plate along the inserting groove until the inserting plate leaves the inserting groove, and then the inserting plate on the other fender is inserted into the inserting groove, so that the fender can be replaced.
Preferably: one side that the connection pad deviates from a jar body diapire is equipped with sweeps the subassembly, sweep the subassembly and include with the first bevel gear of clean pipe coaxial coupling, with the inside wall rotation of body second bevel gear be connected, with second bevel gear coaxial coupling sweep ring and fixed connection sweep the sponge layer of ring outer peripheral edges, first bevel gear and second bevel gear meshing, the sponge layer is laminated with the terminal surface of connection pad.
Through above-mentioned technical scheme, during operation, clean pipe drives second bevel gear through first bevel gear and rotates, and second bevel gear drives and sweeps the ring rotation. When the sweeping ring rotates, the sponge layer continuously sweeps the end face of the connecting disc, so that sludge adhered to the end face of the connecting disc is cleaned, and the possibility of depositing the sludge on the connecting disc is reduced.
Preferably: the desilting subassembly is still including locating a plurality of brushes that the paddle is close to jar body diapire one side, and is a plurality of the brush all is connected with the paddle through the connecting piece, the brush hair of brush is contradicted with the diapire of the jar body.
Through the technical scheme, during operation, the paddle drives the brush to rotate through the connecting piece, the brush hair of the brush moves along the bottom wall of the tank body, and the sludge deposited on the bottom wall of the tank body is disturbed, so that the adhesion force between the sludge and the bottom wall of the tank body is weakened, the water flow generated by the paddle is easier to break up the sludge, and the efficiency of cleaning the sludge is improved.
Preferably: the connecting piece includes along the length direction of paddle and paddle fixed connection's mounting bar and a plurality of screw rods that top-down worn to establish the mounting bar, screw rod and brush one-to-one, just the one end and the brush fixed connection of screw rod.
Through above-mentioned technical scheme, when the brush hair of brush takes place wearing and tearing, the operator rotates the screw rod, makes the brush move towards the diapire of the jar body, and the brush hair of brush is contradicted with the diapire of the jar body again to the regulation to the brush position has been realized. When the bristles of the brushes are completely worn, an operator rotates the screw rod until the screw rod is separated from the mounting strip, and then the screw rod on the other brush is in threaded connection with the mounting strip, so that the brushes can be replaced.
In summary, the present application includes at least one of the following beneficial technical effects:
1. through the arrangement of the blades, the blades rotate along with the cleaning pipes and stir sewage, the sludge deposited at the bottom end of the tank body is scattered by means of scouring force of the sewage, the sludge is cleaned, and the cleaning pipes and the blades continuously rotate under the driving of the driving assembly, so that the sludge cleaning efficiency is kept stable, and the sewage pumping effect is improved;
2. through the setting of brush, the brush is direct to contact with the sedimentary silt of jar body bottom to carry out the disturbance to silt, thereby weakened the adhesion between silt and jar body diapire, make silt more easily with jar body separation, improved the efficiency of clearance silt.
Drawings
FIG. 1 is a schematic overall structure diagram of an integrated pump station convenient for dredging according to an embodiment of the present application.
Fig. 2 is a schematic diagram for showing the internal structure of the tank body according to the embodiment of the present application.
Fig. 3 is a schematic structural diagram for showing a mating relationship between a board and a socket according to an embodiment of the present application.
Reference numerals: 1. a tank body; 2. cleaning the tube; 3. a drive assembly; 31. a rack; 32. a cylinder; 33. clamping teeth; 4. a dredging component; 41. a connecting disc; 42. a paddle; 43. a fender; 44. a brush; 5. a sweeping assembly; 51. a first bevel gear; 52. a second bevel gear; 53. sweeping away the ring; 54. a sponge layer; 55. a rotating shaft; 6. a collar; 7. a support bar; 8. a flow guide hole; 9. mounting blocks; 10. a slot; 11. inserting plates; 12. a connecting member; 121. mounting a bar; 122. a screw.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses integration pump station convenient to desilting. Referring to fig. 1 and 2, the integration pump station convenient to desilting includes a jar body 1, clean pipe 2, the subassembly 4 of desilting of drive assembly 3, clean pipe 2 wears to establish into jar body 1 along jar axial top-down of body 1, drive assembly 3 locates the roof outside of jar body 1, clean pipe 2 one end of keeping away from jar body 1 roof is located to the subassembly 4 of desilting, coaxial setting and swivelling joint have a lantern ring 6 on the clean pipe 2, lantern ring 6 is through the inside wall fixed connection of three bracing piece 7 with jar body 1, the radial setting of the lantern ring 6 is all followed to three bracing piece 7, and the outer peripheral edges fixed connection of bracing piece 7 and lantern ring 6. During operation, the operator communicates the water pumping equipment with the part of the cleaning pipe 2, which is positioned outside the tank body 1, and pumps the sewage in the tank body 1, meanwhile, the driving assembly 3 drives the cleaning pipe 2 to rotate, and the dredging assembly 4 cleans the sludge deposited on the bottom wall in the tank body 1.
Referring to fig. 2 and 3, the dredging assembly 4 comprises a connecting disc 41, three paddles 42, three mudguards 43 and nine brushes 44, wherein the connecting disc 41 is coaxially arranged at one end of the cleaning tube 2 close to the bottom wall of the tank body 1 and is fixedly connected with the cleaning tube 2, and one end of the cleaning tube 2 close to the bottom wall of the tank body 1 penetrates through the connecting disc 41. The three paddles 42 are fixedly connected with the connecting disc 41 along the radial direction of the connecting disc 41, and the three paddles 42 are arranged at equal intervals along the outer periphery of the connecting disc 41. The brush 44 is arranged on one side of the paddle 42 close to the bottom wall of the tank 1, and the three brushes 44 are connected with one paddle 42 through the connecting piece 12. Flow guide holes 8 are formed in the connecting disc 41 between every two adjacent blades 42, and the cleaning pipe 2 extracts sewage through the port of the cleaning pipe and the flow guide holes 8 in the working process, so that the working efficiency is improved. The mud guards 43 correspond to the diversion holes 8 one by one and shield the diversion holes 8 so as to reduce the possibility that the diversion holes 8 are blocked by sludge lumps carried in water flow. Two mounting blocks 9 are oppositely arranged at the port of the flow guide hole 8 along the radial direction of the flow guide hole 8, a slot 10 is formed in one side, opposite to the two mounting blocks 9, of the fender 43, an inserting plate 11 is fixedly connected to the fender 43, and the inserting plate 11 is in inserting fit with the slot 10. Because the mudguard 43 is connected with the connecting disc 41 in a plugging mode, the mudguard 43 is replaced.
Referring to fig. 2 and 3, the connecting member 12 includes a mounting bar 121 and three screws 122, the mounting bar 121 is welded to one side of the blade 42, the screws 122 penetrate through the mounting bar 121 in the vertical direction and are in threaded connection with the mounting bar 121, the brushes 44 are fixedly connected to one ends of the screws 122 close to the bottom wall of the tank body 1, and the bristles of the brushes 44 abut against the bottom wall of the tank body 1. When the bristles of the brush 44 are worn, the operator rotates the screw 122 to make the screw 122 and the brush 44 move together toward the bottom wall of the tube until the bristles contact the bottom wall of the tank 1 again, so that the position of the brush 44 can be adjusted, and the brush 44 can continue to assist the blade 42 to clean sludge under the condition of wear. When the brush 44 needs to be replaced, the operator releases the threaded connection between the brush 44 and the mounting bar 121, and then threadedly connects the screw 122 on the other brush 44 to the mounting bar 121, so that the brush 44 can be replaced.
Referring to fig. 2 and 3, in operation, under the action of the driving assembly 3, the cleaning pipe 2 drives the paddle 42 to rotate, the paddle 42 stirs the sewage to form a water flow when rotating, and the brush 44 disturbs the sludge attached to the bottom wall of the tank body 1 to weaken the combination between the sludge and the bottom wall of the tank body 1. Under the washing of rivers, silt is broken up and is dispersed in sewage for the silt granule to through the port of clean pipe 2 and the clean pipe 2 of the entering of water conservancy diversion hole 8, the silt that gets into clean pipe 2 finally leaves jar body 1 through clean pipe 2, thereby has realized the clearance to silt when extracting sewage. In the working process, the driving assembly 3 continuously drives the paddle 42 to stir sewage, and water flow formed by the sewage continuously scours the sludge, so that the efficiency of cleaning the sludge is kept stable, and the sludge cleaning effect is improved. When the port of the cleaning pipe 2 is blocked by sludge, the cleaning pipe 2 can continue to extract sewage through the flow guide holes 8, so that the possibility of influence of the sludge on the efficiency of extracting the sewage is reduced.
Referring to fig. 2 and 3, the driving assembly 3 includes a rack 31 and a cylinder 32, the cylinder 32 is fixedly connected to the outer side of the top wall of the tank 1, the rack 31 is fixedly connected to the output end of the cylinder 32, a latch 33 is provided along the periphery of the portion of the cleaning pipe 2 above the tank 1, and the latch 33 is engaged with the rack 31. During operation, the output end of the cylinder 32 drives the rack 31 to move, and the rack 31 drives the cleaning pipe 2 to rotate through the latch 33. Because the output end of the air cylinder 32 moves in opposite directions when extending and retracting, the rack 31 correspondingly moves in opposite directions when the output end of the air cylinder 32 extends and retracts, so that the cleaning pipe 2 drives the paddle 42 to alternately rotate in the clockwise direction and the anticlockwise direction, and water flows in opposite flowing directions are generated when the paddle 42 changes the rotating direction, so that the sludge can be flushed in the clockwise direction and the anticlockwise direction, and the sludge cleaning efficiency is improved; the sludge flushed by the water flow is driven by the water flow with opposite flow, is fully mixed with the sewage and is then extracted by the cleaning pipe 2, so that the effect of extracting the sewage is improved.
Referring to fig. 2 and 3, the connecting plate 41 is provided with a sweeping assembly 5, and the sweeping assembly 5 comprises a first bevel gear 51, a second bevel gear 52, a sweeping ring 53 and a sponge layer 54. The first bevel gear 51 and the cleaning pipe 2 are coaxially arranged and fixedly connected, the inner side wall of the tank body 1 is rotatably connected with a rotating shaft 55, the second bevel gear 52 and the rotating shaft 55 are coaxially arranged and fixedly connected, and the second bevel gear 52 is meshed with the first bevel gear 51; the rotating shaft 55 is coaxially provided with a sweeping ring 53 fixedly connected with the rotating shaft, the sweeping ring 53 is adhered with a sponge layer 54 along the periphery, and the sponge layer 54 is attached to one side of the connecting disc 41 departing from the bottom wall of the tank body 1. During operation, the cleaning pipe 2 drives the second bevel gear 52 to rotate through the first bevel gear 51, the second bevel gear 52 drives the sweeping ring 53 to rotate through the rotating shaft 55, and when the sweeping ring 53 rotates, the sponge layer 54 sweeps the end face of the connecting ring, so that sludge deposited on the connecting ring is cleaned, and the cleanliness of the connecting disc 41 is improved.
The implementation principle of the integrated pump station convenient for dredging in the embodiment of the application is as follows: when the cleaning device works, an operator firstly communicates the pumping equipment with the cleaning pipe 2, and then the driving assembly 3 drives the cleaning pipe 2 and the blades 42 to rotate; the blades 42 rotate to push the sewage to form a water current, and the brushes 44 disturb the sludge, so that the combination between the sludge and the bottom wall of the tank 1 is weakened. The sludge leaves the bottom wall of the tank 1 under the flushing of the water flow, and subsequently the sludge is further flushed into sludge particles, which finally leave the tank 1 through the cleaning pipe 2 together with the sewage under the suction of the water pumping device. During the process of removing the sludge, the sweeping assembly 5 sweeps the sludge deposited on the connecting disc 41, thereby improving the cleanliness of the connecting disc 41.
The present embodiment is only for explaining the present application, and it is not limited to the present application, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present application.

Claims (8)

1. The utility model provides an integration pump station convenient to desilting which characterized in that: including a jar body (1), set up along jar body (1) axial rotation and locate jar body (1) inboard clean pipe (2), be used for driving clean pipe (2) pivoted drive assembly (3) and locate clean pipe (2) desilting subassembly (4) that are close to jar body (1) diapire one end, clean pipe (2) are used for extracting sewage, desilting subassembly (4) are including connection pad (41) and a plurality of paddle (42), connection pad (41) and clean pipe (2) fixed connection, a plurality of paddle (42) all with connection pad (41) fixed connection.
2. The integrated pump station convenient for dredging according to claim 1, characterized in that: the roof of the jar body (1) is worn to establish from bottom to top by the one end of clean pipe (2), the one end that the jar body (1) was worn to establish by clean pipe (2) is equipped with latch (33) along the periphery, drive assembly (3) including fixed connection cylinder (32) on the body outer wall and with output fixed connection's of cylinder (32) rack (31), rack (31) and latch (33) meshing.
3. The integrated pump station convenient for dredging according to claim 1, characterized in that: the connecting disc (41) and the cleaning pipe (2) are coaxially arranged, a plurality of flow guide holes (8) are formed in the connecting disc (41) in the radial direction, and the flow guide holes (8) are communicated with the cleaning pipe (2).
4. The integrated pump station convenient for dredging according to claim 3, characterized in that: desilting subassembly (4) are still including locating fender (43) of water conservancy diversion hole (8) port department, fender (43) are connected with connection pad (41), and will the port of water conservancy diversion hole (8) shelters from.
5. The integrated pump station convenient for dredging according to claim 4, characterized in that: be equipped with installation piece (9) in the port department of water conservancy diversion hole (8) on connection pad (41), slot (10) have been seted up on installation piece (9), fixedly connected with picture peg (11) are gone up in fender (43), picture peg (11) are pegged graft with slot (10) and are cooperated.
6. The integrated pump station convenient for dredging according to claim 1, characterized in that: one side of connection pad (41) deviating from jar body (1) diapire is equipped with cleans subassembly (5), clean subassembly (5) including with clean pipe (2) coaxial coupling first bevel gear (51), with the inside wall of body rotate second bevel gear (52) of being connected, with second bevel gear (52) coaxial coupling sweep ring (53) and fixed connection in sweeping the sponge layer (54) of ring (53) outer peripheral edges, first bevel gear (51) and second bevel gear (52) meshing, sponge layer (54) and the terminal surface laminating of connection pad (41).
7. The integrated pump station convenient for dredging according to claim 6, characterized in that: the desilting subassembly (4) is still including locating paddle (42) and being close to a plurality of brushes (44) of jar body (1) diapire one side, and is a plurality of brush (44) all are connected with paddle (42) through connecting piece (12), the brush hair of brush (44) is contradicted with the diapire of jar body (1).
8. The integrated pump station convenient for dredging according to claim 7, characterized in that: the connecting piece (12) comprises a mounting bar (121) fixedly connected with the paddle (42) along the length direction of the paddle (42) and a plurality of screw rods (122) penetrating through the mounting bar (121) from top to bottom, the screw rods (122) are in one-to-one correspondence with the hairbrushes (44), and one ends of the screw rods (122) are fixedly connected with the hairbrushes (44).
CN202120843668.8U 2021-04-22 2021-04-22 Integration pump station convenient to desilting Active CN214574561U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120843668.8U CN214574561U (en) 2021-04-22 2021-04-22 Integration pump station convenient to desilting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120843668.8U CN214574561U (en) 2021-04-22 2021-04-22 Integration pump station convenient to desilting

Publications (1)

Publication Number Publication Date
CN214574561U true CN214574561U (en) 2021-11-02

Family

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Application Number Title Priority Date Filing Date
CN202120843668.8U Active CN214574561U (en) 2021-04-22 2021-04-22 Integration pump station convenient to desilting

Country Status (1)

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CN (1) CN214574561U (en)

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