CN117051950B - Inverted siphon type urban sewage pipeline system - Google Patents
Inverted siphon type urban sewage pipeline systemInfo
- Publication number
- CN117051950B CN117051950B CN202311004066.3A CN202311004066A CN117051950B CN 117051950 B CN117051950 B CN 117051950B CN 202311004066 A CN202311004066 A CN 202311004066A CN 117051950 B CN117051950 B CN 117051950B
- Authority
- CN
- China
- Prior art keywords
- pipeline
- pipe
- water
- drive
- outlet
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Classifications
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F5/00—Sewerage structures
- E03F5/20—Siphon pipes or inverted siphons
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F7/00—Other installations or implements for operating sewer systems, e.g. for preventing or indicating stoppage; Emptying cesspools
- E03F7/10—Wheeled apparatus for emptying sewers or cesspools
Landscapes
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
- Public Health (AREA)
- Water Supply & Treatment (AREA)
- Jet Pumps And Other Pumps (AREA)
Abstract
The application provides an inverted siphon type urban sewage pipeline system, which relates to the technical field of pipeline dredging and comprises an inverted siphon pipeline and a movable dredging device arranged in the inverted siphon pipeline, wherein the inverted siphon pipeline comprises a water inlet pipeline, a water outlet pipeline and a water pipeline, one end of the water pipeline is connected with the water inlet pipeline, the other end of the water pipeline is connected with the water outlet pipeline, the water pipeline is positioned below a water outlet of the water inlet pipeline and a water outlet of the water outlet pipeline, a concave dredging part is arranged at a joint of the water pipeline and the water outlet pipeline, a dredging pipe is arranged in the dredging part, one end of the dredging pipe extends out of the inverted siphon pipeline and is connected with a negative pressure suction device, the movable dredging device can be arranged in the water pipeline, the movable dredging device comprises a movable seat and a push plate connected to the movable seat, and the push plate moves under the driving of the movable seat and can push sludge in the water pipeline to the dredging part. The application can facilitate the sludge removal and has good dredging effect.
Description
Technical Field
The application relates to the technical field of pipeline dredging, in particular to an inverted siphon type urban sewage pipeline system.
Background
When the channel is close to the elevation of a road or a river channel and is in plane intersection, a structure is needed to repair water to pass under the road surface or the river channel, and the structure is commonly called an inverted siphon pipeline.
When the flow velocity of water in the inverted siphon pipeline is low, solid impurities such as sediment in the water flow easily form siltation in the inverted siphon pipeline, so that the inverted siphon pipeline is blocked.
In order to reduce the siltation in the inverted siphon pipeline in the prior art, the water inlet of the inverted siphon pipeline is generally provided with a device for collecting siltation or filtering so as to be filtered before water flows enter the inverted siphon pipeline, so that the sediment amount of the water flows entering the inverted siphon pipeline is reduced, but the device for collecting siltation or filtering arranged at the water inlet is only capable of reducing the sediment content of the water flows entering the inverted siphon pipeline, so that the water flows entering the inverted siphon pipeline still carry sediment, the siltation still can be formed in the inverted siphon pipeline to cause the blockage of the inverted siphon pipeline, and the blockage in the inverted siphon pipeline is difficult to clear.
There is a need in the art for an inverted siphon municipal sewage piping system.
Disclosure of Invention
In order to solve the problem that the blockage in the inverted siphon pipeline is difficult to clear and dredge, the application provides an inverted siphon urban sewage pipeline system.
The application provides an inverted siphon type urban sewage pipeline system which adopts the following technical scheme that the inverted siphon type urban sewage pipeline system comprises an inverted siphon pipeline and a movable dredging device arranged in the inverted siphon pipeline, wherein the inverted siphon pipeline comprises a water inlet pipeline, a water outlet pipeline and a water inlet pipeline, one end of the water inlet pipeline is connected with the water inlet pipeline, the other end of the water inlet pipeline is connected with the water outlet pipeline, the water inlet pipeline is positioned below a water outlet of the water inlet pipeline and a water outlet of the water outlet pipeline, a sunken dredging part is arranged at the joint of the water inlet pipeline and the water outlet pipeline, a dredging pipe is arranged in the dredging part, one end of the dredging pipe extends out of the inverted siphon pipeline and is connected with a negative pressure sucking device, the movable dredging device can be arranged in the water inlet pipeline, the movable dredging device comprises a movable seat and a push plate connected to the movable seat, and the push plate can move under the driving of the movable seat and push sludge in the water inlet pipeline to the dredging part.
According to the technical scheme, no matter how large the water flow rate in the inverted siphon pipeline is, the water flow is ascending when flowing from the water pipeline to the water outlet pipeline, all the sediment is difficult to lift to the outlet of the water outlet pipeline, so that sediment is easily deposited at the joint of the water pipeline and the water outlet pipeline to cause blockage, therefore, the sediment collecting part can collect the sediment deposited at the joint of the water pipeline and the water outlet pipeline, the collected sediment can be pumped out from the inverted siphon pipeline through the sediment pumping pipe under the action of the negative pressure pumping device, dredging anti-blocking is realized, in addition, when the water flow rate in the inverted siphon pipeline is smaller, the water in the inverted siphon pipeline can be pumped out through the sediment pumping pipe under the action of the negative pressure pumping device, so that the liquid level in the water pipeline is maintained in a lower state, the movable dredging device can be put into the water pipeline, and the sediment in the sediment collecting part can be pushed into the sediment through the movable push plate on the dredging device, and the sediment in the sediment collecting part can be pumped out of the sediment collecting part under the action of the negative pressure pumping device, and the sediment in the inverted siphon part can be cleaned up the sediment in the inverted siphon pipeline.
Further, still be equipped with air supply pipe and vapor chamber in the collection silt portion, vapor chamber is located the bottom of collection silt portion, air supply pipe with vapor chamber is connected, just be equipped with a plurality of vapor chamber on the vapor chamber, air supply pipe's the other end stretch out in the siphon pipeline and be connected with the air pump.
Through adopting above-mentioned technical scheme, can blow in gas through the air pump to album of silt portion, and make the bottom of whole album of silt portion can upwards spout the bubble under the effect of vapor chamber for the muddy water in the album of silt portion is difficult for subsiding, in order to be convenient for muddy water take out from taking out the silt pipe.
The movable seat comprises a bottom frame, a driven wheel, a top frame, a driving wheel, a driving unit and a lifting unit, wherein the bottom frame is connected with a plurality of driven wheels and can be in butt joint with the pipe wall of a water pipeline through the driven wheels, the top frame is connected with the driving unit and a plurality of driving wheels, the driving wheel is connected with the driving unit so as to be driven by the driving unit to rotate, the top frame is in butt joint with the pipe wall of the water pipeline through the driving wheels, one end of the lifting unit is connected with the bottom frame, the other end of the lifting unit is connected with the top frame, and the lifting unit can drive the top frame to be close to or far away from the bottom frame.
By adopting the technical scheme, the driving unit is arranged on the top frame, so that the driving unit is not easy to contact with water, the driving unit is not easy to damage due to invasion of water flow, the working stability of the movable dredging device can be ensured, in addition, the lifting unit can lift and adjust the top frame, the driving wheel can be always in close and abutting connection with the inverted siphon pipeline, the movable dredging device can be ensured to move, and dredging operation can be performed.
Specifically, the chassis includes a pair of bottom longitudinal beams and connects a pair of bottom cross beam on this pair of bottom longitudinal beams, each bottom cross beam's both ends all are equipped with upwards buckle's kink, each kink is last all to be equipped with from the driving wheel, from the empty cover of driving wheel is in on the kink, and can use the kink is the rotation of axle.
By adopting the technical scheme, the driven wheel can be better abutted with the pipe wall of the circular inverted siphon pipe.
Specifically, the wheel distance between the two driven wheels on the same bottom cross beam is more than or equal to one half of the diameter of the water pipeline and less than the diameter of the water pipeline.
Through adopting above-mentioned technical scheme, can be so that follow driving wheel be difficult for with the silt contact of water piping bottom to can make the removal of removing the dredging device be difficult for receiving the influence of the silt of water piping bottom.
The top frame comprises a pair of top longitudinal beams, a pair of top cross beams connected to the pair of top longitudinal beams and a pair of rotating shafts, wherein the top cross beams are arranged on one side of the top longitudinal beams, which faces the bottom frame, bearing seats extending away from the bottom frame are arranged at the two ends of each top cross beam, the rotating shafts are rotatably connected to the bearing seats, the two ends of each rotating shaft are connected with driving wheels, the driving unit comprises a power battery, a driving motor and a driving shaft, the power battery and the driving motor are connected to the top cross beams, the driving motor is in transmission connection with the driving shaft so as to drive the driving shaft to rotate, and the driving shaft is in transmission connection with the rotating shaft so as to drive the rotating shaft to rotate.
Through adopting above-mentioned technical scheme, need not to supply power to remove the desilting device through the electric wire to need not to set up the electric wire, and then also need not to set up the device of receiving and releasing the electric wire, make the urban sewage pipe system structure of inverted siphon simpler.
Specifically, the roof-rack still includes waterproof shell, be formed with waterproof accommodation chamber in the waterproof shell, the roof longitudinal beam the roof crossbeam, power battery the driving motor with the transmission shaft is all located waterproof accommodation chamber is interior, each the both ends of axis of rotation all follow waterproof accommodation chamber is worn out, and with the drive wheel is connected, waterproof shell with be equipped with the lip seal circle between the axis of rotation.
Through adopting above-mentioned technical scheme, can carry out effectual waterproof protection to power battery and driving motor.
Specifically, the lifting unit comprises a lifting driver, a sleeve and a screw rod, wherein the lifting driver is arranged in the waterproof accommodating cavity and is connected with the inner wall of the waterproof shell, an internal thread structure is arranged in the sleeve, one end of the screw rod, which is arranged on the screw rod, is provided with an external thread structure matched with the internal thread structure, the other end of the screw rod penetrates through the waterproof shell and is connected with the lifting driver, and the lifting driver can drive the screw rod to rotate.
Through adopting above-mentioned technical scheme, can realize the lift adjustment to the roof-rack.
The power supply station comprises a power generation unit, a power supply electromagnetic resonator and a power supply chamber, wherein the power supply chamber is connected with a water inlet pipeline, a dredging device inlet and a dredging device outlet are arranged at the joint of the power supply chamber and the water inlet pipeline, a water inlet of the water inlet pipeline is positioned below the dredging device inlet and the dredging device outlet, the power supply electromagnetic resonator is arranged in the power supply chamber, the driving unit further comprises a power receiving electromagnetic resonator, the power receiving electromagnetic resonator is electrically connected with a power battery, the power generation unit comprises a solar panel and a storage battery, the solar panel is electrically connected with the storage battery, and the storage battery is electrically connected with the power supply electromagnetic resonator.
Through adopting above-mentioned technical scheme, have energy-concerving and environment-protective effect, be convenient for mend the electricity to removing the desilting device, and need not to set up the electric wire, and then also need not to set up the device of receiving and releasing the electric wire for the urban sewage piping system structure of back siphon formula is simpler.
Specifically, the wheel distance between the two driven wheels on the same bottom cross beam is larger than or equal to the diameter of the water inlet.
Through adopting above-mentioned technical scheme, can guarantee to remove the desilting device and can pass through from the water inlet and move to the moisturizing room and mend the electricity.
In summary, the present application includes at least one of the following beneficial effects:
The water flow in the inverted siphon pipeline is large or small, the water flow is ascending when flowing from the water pipeline to the water outlet pipeline, and the ascending water flow is difficult to lift all silt to the outlet of the water outlet pipeline, so that the silt deposition at the joint of the water pipeline and the water outlet pipeline is easy to cause blockage, therefore, the silt in the joint of the water pipeline and the water outlet pipeline can be collected by the design of the silt collecting part, the collected silt can be pumped out from the inverted siphon pipeline through the silt pumping pipe under the action of the negative pressure pumping device, so as to realize dredging and blocking prevention, and in addition, when the water flow in the inverted siphon pipeline is smaller, the water in the inverted siphon pipeline can be pumped out through the silt pumping pipe under the action of the negative pressure pumping device, so that the liquid level in the water pipeline is maintained in a lower state, so that the silt in the water pipeline can be put into the water pipeline, the silt in the silt collecting part can be pushed into the silt collecting part by the silt moving the silt pumping device, and the silt in the push plate in the silt collecting part can be pumped out through the pumping pipe under the action of the negative pressure pumping device, so that the silt in the inverted siphon cleaning in the inverted siphon pipeline can be realized.
Drawings
Fig. 1 is a perspective view of an inverted siphon municipal sewage piping system according to the application;
FIG. 2 is a cross-sectional view of the inverted siphon municipal sewage pipeline system of FIG. 1 taken along the pipeline, showing the pipeline internal structure and the mobile dredging device;
FIG. 3 is an enlarged view of area B of FIG. 2;
FIG. 4 is an enlarged view of area A of FIG. 2;
FIG. 5 is a cross-sectional view taken along the direction E-E in FIG. 3;
FIG. 6 is a cross-sectional view taken in the direction F-F in FIG. 5;
FIG. 7 is an enlarged view of region C of FIG. 2;
Fig. 8 is an enlarged view of the region D in fig. 2.
The reference numerals are 1, an inverted siphon pipeline, 11, a water inlet pipeline, 111, a dredging device inlet and outlet, 112, a water inlet, 12, a water outlet pipeline, 13, a water pipeline, 14, a dredging part, 15, a dredging pipe, 16, a gas supply pipe, 17, a gas equalizing ring, 171, a gas equalizing hole, 18, a gas pump, 2, a movable dredging device, 211, a bottom frame, 2111, a bottom girder, 2112, a bottom girder, 21121, a bending part, 212, a driven wheel, 213, a top frame, 2131, a top girder, 2132, a top girder, 21321, a bearing seat, 2133, a rotating shaft, 2134, a waterproof shell, 21341, a transmission shaft bearing seat, 214, a driving wheel, 215, a driving unit, 2151, a power battery, 2152, a driving motor, 2153, a transmission shaft, 2154, a power receiving electromagnetic resonator, 216, a lifting unit, 2161, a lifting driver, 2162, a sleeve, 2163, a screw, 22, a push plate, 3, a suction device, 4, a power supplementing station, 41, a power generating unit, 411, a solar panel, 412, a storage battery, 42, a power supply chamber, and an electromagnetic resonator.
Detailed Description
Fig. 1 is a perspective view of an inverted siphon municipal sewage pipe system according to the application, and fig. 2 is a sectional view of the inverted siphon municipal sewage pipe system of fig. 1 along a pipe, showing the internal structure of the pipe and a mobile dredging device. Referring to fig. 1 and 2, the inverted siphon municipal sewage pipeline system provided by the application comprises an inverted siphon pipeline 1 and a mobile dredging device 2 arranged in the inverted siphon pipeline 1, wherein the inverted siphon pipeline 1 comprises a water inlet pipeline 11, a water outlet pipeline 12 and a water pipeline 13, one end of the water pipeline 13 is connected with the water inlet pipeline 11, the other end is connected with the water outlet pipeline 12, the water pipeline 13 is positioned below a water outlet of the water inlet pipeline 11 and a water outlet of the water outlet pipeline 12, and the water inlet pipeline 11, the water outlet pipeline 12 and the water pipeline 13 can be all arranged as pipelines with circular sections, so that the water inlet pipeline 11, the water outlet pipeline 12 and the water pipeline 13 have higher structural strength.
The connection part of the water pipeline 13 and the water pipeline 12 is provided with a concave sludge collecting part 14, the sludge collecting part 14 is internally provided with a sludge pumping pipe 15, one end of the sludge pumping pipe 15 extends out of the inverted siphon pipeline 1 and is connected with a negative pressure suction device 3 arranged on the ground so as to suck out slurry or sludge in the sludge collecting part 14 through the negative pressure suction device 3, and the mobile dredging device 2 can be arranged in the water pipeline 13 and move in the water pipeline 13.
Fig. 3 is an enlarged view of a region B in fig. 2, and as shown in fig. 3, the mobile dredging device 2 includes a mobile seat and a push plate 22 connected to the mobile seat, so that the push plate 22 can push sludge in the water pipe 13 to the sludge collecting portion 14 to clean sludge in the water pipe 13 under the drive of the mobile seat.
It will be appreciated that no matter how large the water flow rate in the inverted siphon pipe 1 is, the lower water pipe 13 is in the heavy disaster area where the silt is deposited, in particular, the water flow rises when flowing from the water pipe 13 to the water outlet pipe 12, the rising water flow is difficult to lift all the silt to the outlet of the water outlet pipe 12, so that the deposition of the silt is easier to form at the junction of the water pipe 13 and the water outlet pipe 12 to cause blockage, therefore, the silt collecting part 14 can collect the silt deposited at the junction of the water pipe 13 and the water outlet pipe 12, and the collected silt can be pumped out from the inverted siphon pipe 1 through the silt pumping pipe 15 under the action of the negative pressure pumping device 3, so as to realize dredging and blocking prevention.
In addition, when the water flow in the inverted siphon pipe 1 is smaller, the water flow can pump out the water in the inverted siphon pipe 1 through the pumping pipe 15 under the action of the negative pressure pumping device 3, so that the liquid level in the water pipe 13 is kept in a lower state, the mobile dredging device 2 can be conveniently put into the water pipe 13, the sludge in the water pipe 13 can be pushed into the sludge collecting part 14 by moving the push plate 22 on the dredging device 2, and the sludge in the sludge collecting part 14 is pumped out through the pumping pipe 15 under the action of the negative pressure pumping device 3, so that the sludge in the inverted siphon pipe 1 can be cleaned.
Fig. 4 is an enlarged view of a region a in fig. 2, fig. 5 is a sectional view in a direction E-E in fig. 3, and as shown in fig. 4 and 5, in order to facilitate sucking out the slurry in the slurry collecting portion 14, an air supply pipe 16 and an air equalizing ring 17 may be provided in the slurry collecting portion 14, the air equalizing ring 17 is provided at the bottom of the slurry collecting portion 14, the air supply pipe 16 is connected with the air equalizing ring 17, and a plurality of air equalizing holes 171 are provided on the air equalizing ring 17, and the other end of the air supply pipe 16 extends out of the inverted siphon pipe 1 and is connected with an air pump 18, so that the gas can be blown into the slurry collecting portion 14 by the air pump 18, and the bottom of the entire slurry collecting portion 14 can be blown out upwards under the action of the air equalizing ring 17, so that the slurry in the slurry collecting portion 14 is not easy to settle, and thus the slurry can be conveniently pumped out from the pumping pipe 15.
As shown in fig. 3, the movable seat comprises a bottom frame 211, a driven wheel 212, a top frame 213, a driving wheel 214, a driving unit 215 and a lifting unit 216, specifically, the bottom frame 211 is connected with a plurality of driven wheels 212 and can be abutted against the pipe wall of the water pipeline 13 through the driven wheels 212, the top frame 213 is connected with the driving unit 215 and a plurality of driving wheels 214, the driving wheels 214 are in transmission connection with the driving unit 215 so as to be capable of rotating under the driving of the driving unit 215, the top frame 213 is abutted against the pipe wall of the water pipeline 13 through the driving wheels 214, one end of the lifting unit 216 is connected with the bottom frame 211, the other end of the lifting unit 216 is connected with the top frame 213, the lifting unit 216 can drive the top frame 213 to be close to or far away from the bottom frame 211, so that when the top frame 213 is far away from the bottom frame 211, the driving wheels 214 connected with the top frame 213 can be abutted against the pipe wall of the water pipeline 13, and then the driving wheels 214 of the driving unit 215 are rotated to realize the movement of the movable seat in the inverted siphon pipeline 1, so that sludge can be pushed to perform dredging operation.
Furthermore, it will be appreciated that the driving wheel 214 may be provided as a rubber wheel, such that the driving wheel 214 has a certain elastic deformability, so that the friction force can be increased in a manner of increasing the contact area between the driving wheel 214 and the wall of the water pipe 13 or increasing the abutment force between the two, so as to ensure that the mobile dredging device 2 is not easy to slip when moving in the inverted siphon pipe 1.
In addition, the lifting unit 216 can lift and adjust the top frame 213, so that the driving wheel 214 can be always abutted against the pipe wall of the inverted siphon pipe 1, and the movable dredging device 2 can be ensured to move to perform dredging operation.
Fig. 6 is a cross-sectional view in the direction F-F in fig. 5, and as shown in fig. 3 and 6, the chassis 211 is configured to include a pair of side sills 2111 and a pair of bottom cross members 2112 connected to the pair of side sills 2111, each of both ends of the bottom cross members 2112 is provided with a bent portion 21121 bent upward, each of the bent portions 21121 is provided with a driven wheel 212, the driven wheel 212 is freely sleeved on the bent portion 21121 and rotatable about the bent portion 21121, and a track between the driven wheels 212 on the same bottom cross member 2112 is equal to or greater than one half of the diameter of the water pipe 13 and smaller than the diameter of the water pipe 13. By the design, after the driven wheel 212 is abutted against the pipe wall of the circular inverted siphon pipe 1, the driven wheel 212 can be perpendicular to the pipe wall of the inverted siphon pipe 1, so that the driven wheel 212 is not easy to bend and damage, and the driven wheel 212 is not easy to contact with sludge at the bottom of the water pipeline 13 due to the arrangement of the wheel spacing, so that the movement of the movable dredging device 2 is not easy to be influenced by the sludge at the bottom of the water pipeline 13.
Referring to fig. 3, in particular, the top frame 213 may be configured to include a pair of top stringers 2131, a pair of top beams 2132 connected to the pair of top stringers 2131, and a pair of rotation shafts 2133, wherein the top beams 2132 may be disposed on one side of the top stringers 2131 toward the bottom frame 211, and each of both ends of the top beams 2132 is provided with a bearing seat 21321 extending in a direction away from the bottom frame 211, the rotation shafts 2133 may be rotatably connected to the bearing seat 21321, and each of both ends of each of the rotation shafts 2133 is connected to a driving wheel 214, the driving unit 215 may be configured to include a power battery 2151, a driving motor 2152, and a transmission shaft 2153, wherein the power battery 2151 and the driving motor 2152 may be connected to the top beams 2132 in a driving manner to enable the transmission shaft 2153 to rotate, and the transmission shaft 2153 is connected to the rotation shaft 2133 in a driving manner to enable the rotation of the rotation shafts 2133, thereby realizing the movement of the movement dredging device 2 without requiring no electric wires, and the power battery 1 may supply power to the movement dredging device 2 through the electric wires, thereby providing an electric wire, and the reverse electric wire and the line dredging system may be configured to enable a simpler structure.
It should be understood that, as shown in fig. 3, the top frame 213 should further include a waterproof shell 2134, a waterproof accommodating cavity is formed in the waterproof shell 2134, a top longitudinal beam 2131, a top transverse beam 2132, a power battery 2151, a driving motor 2152 and a driving shaft 2153 are all disposed in the waterproof accommodating cavity, two ends of each driving shaft 2133 penetrate through the waterproof accommodating cavity and are connected with the driving wheel 214, a lip seal ring is disposed between the waterproof shell 2134 and the driving shaft 2133, a driving shaft bearing seat 21341 for connecting with the driving shaft 2153 can be disposed in the waterproof shell 2134, an output shaft of the driving motor 2152 penetrates through the top transverse beam 2132 and is connected with the driving shaft 2153, a matched bevel gear can be disposed between the output shaft of the driving motor 2152 and the driving shaft 2153 to realize transmission connection between the two, and a connection between the driving shaft 2153 and each driving shaft 2133 can also be disposed with a matched bevel gear, so that transmission connection between the driving shaft 2153 and each driving shaft 2133 can realize transmission connection between the driving shaft 2153 and each driving shaft 2133, and rotation of the driving wheel 214 can realize rotation.
Referring to fig. 3 and 6, the lifting unit 216 includes a lifting driver 2161, a sleeve 2162 and a screw 2163, the lifting driver 2161 (which may be a motor) is disposed in the waterproof housing and may be connected with the inner wall of the waterproof housing 2134 through a connection frame, an internal thread structure is disposed in the sleeve 2162, one end of the screw 2163 is disposed in the sleeve 2162 and is provided with an external thread structure matching with the internal thread structure of the sleeve 2162, the lifting driver 2161 is connected to the connection frame, and a through hole structure is disposed on the connection frame, the other end of the screw 2163 may pass through the waterproof housing 2134 and the through hole structure on the connection frame and be connected with the lifting driver 2161, so that the lifting driver 2161 may drive the screw 2163 to rotate, thereby realizing lifting adjustment of the top frame 213.
Fig. 7 is an enlarged view of a region C in fig. 2, fig. 8 is an enlarged view of a region D in fig. 2, referring to fig. 7 and 8, the inverted siphon municipal sewage pipeline system of the application further comprises a power supplementing station 4, the power supplementing station 4 comprises a power generating unit 41, a power supplying electromagnetic resonator 42 and a power supplementing chamber 43, the power supplementing chamber 43 is connected with the water inlet pipeline 11, a dredging device inlet and outlet 111 is arranged at the joint of the power supplementing chamber 43 and the water inlet pipeline 11, a water inlet 112 of the water inlet pipeline 11 is arranged below the dredging device inlet and outlet 111, the power supplying electromagnetic resonator 42 is arranged in the power supplementing chamber 43, and as shown in fig. 3, the driving unit 215 further comprises a power receiving electromagnetic resonator 2154, the power receiving electromagnetic resonator 2154 is electrically connected with a power battery 2151, the power generating unit 41 comprises a solar panel 411 and a storage battery 412, the solar panel 411 is electrically connected with the storage battery 412, and the storage battery 412 is electrically connected with the power supplying electromagnetic resonator 42.
The movable dredging device can move upwards along the water inlet pipeline 11 and enter the electricity supplementing chamber 43 through the dredging device inlet and outlet 111, before the inverted siphon pipeline 1 runs at full power, the movable dredging device 2 needs to return to the electricity supplementing chamber 43, and because the water inlet 112 of the water inlet pipeline 11 is positioned below the dredging device inlet and outlet 111, water flow is difficult to invade into the electricity supplementing chamber 43, so that the power supply electromagnetic resonator 42 can be prevented from being damaged, after the movable dredging device 2 returns to the electricity supplementing chamber 43, the power receiving electromagnetic resonator 2154 can be matched with the power supply electromagnetic resonator 42 to perform wireless charging on the power battery 2151, and the power receiving electromagnetic resonator 2154 and the power supply electromagnetic resonator 42 are of the existing wireless transmission technology and are not repeated here.
In addition, it is understood that the wheel distance between the two driven wheels 212 on the same bottom beam 2112 is greater than or equal to the diameter of the water inlet 112, so as to ensure that the mobile dredging device 2 can pass through the water inlet 112 and move up to the electricity supplementing chamber 43 for electricity supplementing.
The working principle of the inverted siphon type urban sewage pipeline system is as follows:
the water flow is lifted when flowing from the water pipeline 13 to the water outlet pipeline 12, and the lifted water is difficult to lift all the sediment to the outlet of the water outlet pipeline 12, so that sediment is easily deposited at the joint of the water pipeline 13 and the water outlet pipeline 12 to cause blockage, therefore, the sediment collecting part 14 can be designed to collect the sediment deposited at the joint of the water pipeline 13 and the water outlet pipeline 12, the collected sediment can be pumped out of the inverted siphon pipeline 1 through the sediment pumping pipe 15 under the action of the negative pressure pumping device 3 to realize dredging and blocking prevention, and in addition, when the water flow in the inverted siphon pipeline 1 is smaller, the water in the inverted siphon pipeline 1 can be pumped out through the sediment pumping pipe 15 under the action of the negative pressure pumping device 3, so that the liquid level in the water pipeline 13 is maintained in a lower state, the movable dredging device 2 can be put into the water pipeline 13, the sediment in the sediment collecting part 14 can be pushed in by the sediment in the joint of the water pipeline 13 through the push plate 22 on the movable dredging device 2, and the sediment in the suction pipe 14 can be pumped out of the sediment collecting part 14 under the action of the negative pressure pumping device 3, so that the sediment in the inverted siphon 1 can be cleaned.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.
Claims (7)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202311004066.3A CN117051950B (en) | 2023-08-10 | 2023-08-10 | Inverted siphon type urban sewage pipeline system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202311004066.3A CN117051950B (en) | 2023-08-10 | 2023-08-10 | Inverted siphon type urban sewage pipeline system |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN117051950A CN117051950A (en) | 2023-11-14 |
| CN117051950B true CN117051950B (en) | 2026-04-14 |
Family
ID=88661882
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202311004066.3A Active CN117051950B (en) | 2023-08-10 | 2023-08-10 | Inverted siphon type urban sewage pipeline system |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN117051950B (en) |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108277843A (en) * | 2018-04-10 | 2018-07-13 | 安徽理工大学 | Automatic desilting pipe-line system |
| CN216273275U (en) * | 2021-11-25 | 2022-04-12 | 济南山源环保科技有限公司 | Wastewater pool |
| CN218204877U (en) * | 2022-08-31 | 2023-01-03 | 上海景铭建设发展有限公司 | Water pumping and mud sucking device for cleaning dead corners of pipeline |
Family Cites Families (10)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN104963383B (en) * | 2015-06-21 | 2016-09-14 | 浙江省水利水电勘测设计院 | A hydraulic automatic silting device for an inverted siphon in a pressurized water delivery pipeline |
| CN108166606A (en) * | 2018-01-31 | 2018-06-15 | 北京工业大学 | A kind of crawler type dredging robot |
| CN212053086U (en) * | 2018-10-18 | 2020-12-01 | 潘忠秀 | Return-shaped rainwater inverted siphon pipeline structure |
| CZ2020394A3 (en) * | 2020-07-07 | 2022-01-19 | Water Design Group Ltd | Equipment of gravity sewers - self-flushing gutters, method of overcoming watercourses or similar underground obstacles and use of this equipment |
| CN214461101U (en) * | 2020-12-23 | 2021-10-22 | 东莞嘉誉诚建设基础工程有限公司 | Municipal administration pipeline dredging device |
| CN215888504U (en) * | 2021-09-18 | 2022-02-22 | 湖北祖德水利水电工程有限公司 | Anti-clogging inverted siphon sewage pipeline system |
| CN216474857U (en) * | 2021-12-03 | 2022-05-10 | 窦姣 | Inverted siphon structure for canal |
| CN114215161A (en) * | 2021-12-03 | 2022-03-22 | 天津一冶建设工程有限公司 | Anti-clogging structure for inverted siphon pipeline and construction method thereof |
| CN217998359U (en) * | 2022-08-12 | 2022-12-09 | 云南硕同建设工程有限公司 | Water conservancy pipeline sediment removal device |
| CN219221646U (en) * | 2023-03-30 | 2023-06-20 | 中铁三局集团有限公司 | Mud discharging and emptying device for large-span inverted siphon water conveying pipeline |
-
2023
- 2023-08-10 CN CN202311004066.3A patent/CN117051950B/en active Active
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108277843A (en) * | 2018-04-10 | 2018-07-13 | 安徽理工大学 | Automatic desilting pipe-line system |
| CN216273275U (en) * | 2021-11-25 | 2022-04-12 | 济南山源环保科技有限公司 | Wastewater pool |
| CN218204877U (en) * | 2022-08-31 | 2023-01-03 | 上海景铭建设发展有限公司 | Water pumping and mud sucking device for cleaning dead corners of pipeline |
Also Published As
| Publication number | Publication date |
|---|---|
| CN117051950A (en) | 2023-11-14 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| KR101386420B1 (en) | Underwater cleaning robot | |
| KR102066976B1 (en) | Amphibious dredging robot device having screw shape wheel | |
| CN210263355U (en) | Underground pipeline dredging device | |
| CN108425395A (en) | A kind of underwater desilting machine people and its system | |
| CN210766938U (en) | High-protection underwater dredging and sewage discharging robot | |
| CN205189113U (en) | Wash soil pick -up car | |
| CN203270772U (en) | Water ring vacuum pump sewer suction vehicle | |
| CN117051950A (en) | An inverted siphon urban sewage pipe system | |
| CN113356251B (en) | Hydraulic engineering construction is with preventing blockking up drainage device | |
| CN223398454U (en) | Swimming pool cleaning device | |
| KR100550056B1 (en) | Underwater Robot Dredger | |
| CN210177566U (en) | Hydraulic engineering desilting device | |
| CN210393871U (en) | Biochemical pond silt suction system in level bottom | |
| CN220335796U (en) | Dust settling device for transportation road of open pit coal mine | |
| CN221778418U (en) | A hydraulic diversion ditch gate valve | |
| CN204266364U (en) | Light-duty submersible dredging vehicle | |
| CN110761390B (en) | Desilting and slag removal device for gravity flow sewage pipes | |
| CN210767185U (en) | Be provided with vacuum filter's soil pick-up car | |
| KR930005349Y1 (en) | Apparatus for emptying sewers | |
| CN106284458A (en) | Self-propulsion type sweeps hydraulic suction dredge | |
| CN113833045A (en) | Ditch dredging vehicle | |
| CN223061671U (en) | A ditch desilting device for water conservancy projects | |
| CN2654716Y (en) | Pipeline dredge sewage suction apparatus | |
| CN216108709U (en) | Efficient water conservancy construction sediment removal device | |
| CN219272428U (en) | Sedimentation tank for sewage treatment |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| PB01 | Publication | ||
| PB01 | Publication | ||
| SE01 | Entry into force of request for substantive examination | ||
| SE01 | Entry into force of request for substantive examination | ||
| GR01 | Patent grant | ||
| GR01 | Patent grant |