CN209620210U - Cut-off equipment, shunting well and its control system with utricule - Google Patents

Cut-off equipment, shunting well and its control system with utricule Download PDF

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Publication number
CN209620210U
CN209620210U CN201821773098.4U CN201821773098U CN209620210U CN 209620210 U CN209620210 U CN 209620210U CN 201821773098 U CN201821773098 U CN 201821773098U CN 209620210 U CN209620210 U CN 209620210U
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outlet
water
cut
wall
diversion
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周超
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Wuhan Shengyu Smart Ecological Environmental Protection Co ltd
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Wuhan Shengyu Drainage Systems Co Ltd
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Abstract

A kind of cut-off equipment with utricule, shunting well and its control system, comprising: utricule, utricule are enclosed in the flow channel passed through for fluid, it is internal have accommodate air cavity perhaps water cavity and utricule be equipped with import and communicate with air cavity or water cavity;Outer cover, it covers at outside utricule, and the inside of outer cover is bonded with the outer wall outer surface of utricule, when air cavity or water cavity have been filled with when calming the anger body or pressure water body, the outer wall of utricule is bonded with the inner wall of outer cover and the inner wall of utricule is deformed inward expansion, so that the sectional area of circulation passage becomes smaller.Because its inside of the utricule of double layers, which has, accommodates air cavity or water cavity, and utricule is equipped with import and communicates with air cavity or water cavity, that is, whole device can be less to only there are two components, without other fasteners, so only need to be replaced utricule pull-out outer cover, it is easy to operate.

Description

Cut-off device with utricule, reposition of redundant personnel well and control system thereof
Technical Field
The utility model relates to a municipal works field, concretely relates to cut-off equipment, install this cut-off equipment's reposition of redundant personnel well and control system thereof.
Background
At present, in a diversion well, a abandoning well and an intercepting well system, the system is composed of a water inlet pipe, a water outlet pipe and a sewage intercepting pipe, domestic sewage or initial rainwater and later stage rainwater in a drain pipe are diverted, wherein the domestic sewage or the initial rainwater is intercepted to a sewage pipe and then is conveyed to a sewage treatment plant for treatment and then is discharged after reaching the standard (further, the initial rainwater can be stored or intercepted to the sewage treatment plant for treatment and then is discharged after reaching the standard), and the rainwater or the middle and later stage rainwater is directly discharged to natural water.
No matter in reality be the rainwater pipe of reposition of redundant personnel system or the confluent pipe of sewer or confluence system, the device that its realization reposition of redundant personnel or dammed all uses gate or weir door to carry out the switch that corresponds outlet pipe and cut off the dirty pipe and switch, and the power supply of gate valve is electricity or hydraulic pressure. However, in reality, the following problems exist in the electric control: 1. flammable and explosive biogas is generally generated in a closed pipeline and a sewage environment, and a general electric control device is easy to explode and unsafe, so that an electric control part in contact with the biogas is required to have an explosion-proof function when the electric control device is applied, and therefore, an electric control system is expensive and high in cost; 2. under the environment of severe stormy weather, the condition of power failure can occur, and equipment in a diversion well, a flow abandoning well or a closure well can not work normally after the power failure, so that the conditions of urban waterlogging and the like can occur; 3. under the condition of heavy rain, the flooding conditions of the diversion well, the abandoning well and the intercepting well are between hours and days, so that the redundancy and the cost are too high by adopting an electric control device which is completely suitable for underwater use, and the flooding capacity of the common electric control device with the IP68 grade is insufficient within hours; 4. the device of the electric control system uses non-safe voltage, and the high voltage is unsafe and easy to have accidents; 5. after the electrical equipment is flooded, the electric leakage is easy to occur, and the electric shock danger exists; 6. the electric control equipment (a gate and a weir gate) needs an upward or downward stroke during operation, the urban ground is exposed, the urban landscape beautiful traffic is influenced, and the excavation area is large during construction; 7. the electric control system uses 380V three-phase power, and a municipal power grid cannot supply power, so that the problem of difficulty in power supply is solved.
Particularly, for the occasion requiring the concealed installation, the power supply and the generated cost of the electric control system are not easy to be solved. Hydraulic control also has certain problems: the hydraulic station uses a high-pressure oil pipe, and the cost of the hydraulic station and the high-pressure oil pipe is high; the high-pressure oil pipe is broken and leaks oil to pollute the environment; after the electrical equipment is flooded, the electric leakage is easy to occur, and the electric shock danger exists; the electric control equipment (the gate and the weir gate) needs an upward or downward stroke during operation, the urban ground is exposed, the urban landscape beautiful traffic is influenced, and the excavation area is large during construction.
In summary, a device which can replace a gate or a weir gate, is convenient to install and maintain, and is safe and reliable is urgently needed.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides an intercepting device, install this intercepting device's reposition of redundant personnel well and control system uses integral dual gasbag, and its installation, maintenance are convenient, reduce the time of staff in the operation in the pit.
In order to achieve the above purpose, the utility model adopts the technical proposal that:
the utility model provides an intercepting device with utricule, include:
the bag body is enclosed into a flow channel for fluid to pass through, an accommodating air cavity or a water cavity is arranged in the bag body, and an inlet arranged on the bag body is communicated with the air cavity or the water cavity;
and the outer cover is covered outside the bag body, the inner side of the outer cover is attached to the outer surface of the outer wall of the bag body, and when the air cavity or the water cavity is filled with pressurized air or pressurized water, the outer wall of the bag body is attached to the inner wall of the outer cover, and the inner wall of the bag body deforms and expands inwards, so that the sectional area of the flow channel is reduced.
The utility model provides a cut-off equipment with utricule can also have such characteristic:
wherein the inlet is provided on a side wall of the capsule.
The utility model provides a cut-off equipment with utricule can also have such characteristic:
the inner wall of the outer cover is provided with a front limiting piece and a rear limiting piece,
the capsule body is clamped into the two limiting parts and is fixed by the clamping.
The utility model provides a cut-off equipment with utricule can also have such characteristic:
the limiting part is a circular ring, and the outer end of the limiting part is fixedly connected to the inner wall of the outer cover.
The utility model provides a cut-off equipment with utricule can also have such characteristic:
wherein the housing is cylindrical and the bladder is cylindrical.
The utility model provides a cut-off equipment with utricule can also have such characteristic:
wherein, the bag body is made of rubber;
and/or the capsule body is formed by casting a lost foam.
The utility model also provides a be provided with foretell diverging well that has cut-off equipment of utricule, its characterized in that:
the diversion well comprises a diversion well body, a water inlet and two outlets are arranged on the diversion well body, and a first outlet and a second outlet are respectively arranged on the diversion well body, the water inlet is used for being communicated with a drainage pipeline at the upstream of the diversion well body, the first outlet is used for being communicated with a drainage pipeline or a natural water body at the downstream of the diversion well body through a communicating pipe, and the second outlet is used for being connected with a sewage pipe or an initial rain pipe or a sewage treatment facility or an initial rainwater treatment facility or a regulation and storage pool through a communicating pipe;
the second outlet is internally provided with the cut-off device, namely a second cut-off device, one end of the second cut-off device extends out of the second outlet to be connected with the communicating pipe, a circulation channel of the second cut-off device is in butt joint with the communicating pipe, the outer wall of the outer cover is attached to the inner wall of the first outlet, when the air cavity or the water cavity is filled with pressure gas or pressure water, the sectional area of the circulation channel is deformed to be reduced, the second outlet is controlled to be closed, and when the pressure gas or the pressure water in the air cavity or the water cavity is discharged, the sectional area of the circulation channel is enlarged by the deformation of the capsule, and the second outlet is controlled to be opened.
The utility model provides a be provided with reposition of redundant personnel well that has cut-off equipment of utricule can also have such characteristic:
the diversion well body is also provided with a third outlet, the third outlet is used for being connected with an initial rain pipe or an initial rainwater treatment facility or a regulation and storage pool through a communicating pipe, a third interception device is arranged on the third outlet, the outer wall of the outer cover is attached to the inner wall of the third outlet, and a circulation channel of the third interception device is butted with the communicating pipe corresponding to the third outlet and used for controlling the opening and closing of the third outlet; or,
the diversion well body is also provided with a third outlet, the third outlet is used for being connected with an initial rain pipe or an initial rainwater treatment facility or a regulation and storage tank through a communicating pipe, a third intercepting device and a first intercepting device are respectively and correspondingly arranged on the third outlet and the first outlet, the outer walls of the outer covers of the third intercepting device and the first intercepting device are respectively attached to the inner walls of the corresponding third outlet and the corresponding first outlet, and a circulation channel of the first intercepting device is butted with the communicating pipe corresponding to the first outlet and is used for controlling the opening and closing of the first outlet; or,
the first outlet is provided with a first cut-off device, the outer wall of the outer cover of the first cut-off device is attached to the inner wall of the first outlet, and the flow passage of the first cut-off device is in butt joint with the communicating pipe corresponding to the first outlet and used for controlling the opening and closing of the first outlet.
The utility model also provides a foretell control system who is provided with diverging well of cut-off equipment that has utricule, its characterized in that:
the gas source or the water source is used for supplying pressure gas or water;
the conveying pipeline is connected with the cut-off device and the gas source or the water source and is used for conveying gas or water body under pressure;
the control valve is arranged on the conveying pipe and used for controlling the cut-off device to charge and discharge the pressurized gas or the water body;
the measuring instrument is arranged in or outside the shunt well body and used for detecting measuring information;
the controller is respectively electrically connected with the measuring instrument and the control valve and is used for controlling the control valve to be switched on and off according to the measuring information, and the control valve correspondingly controls the cut-off device to be filled and discharged with pressure gas or water so as to control the opening and closing of the outlet of the diversion well; wherein,
when the diversion well is provided with two outlets and the second outlet is provided with the closure assembly, the controller is used for controlling the second outlet to conduct and divert the fine day sewage and/or the initial rainwater and controlling the second outlet to stop diverting the rainwater or the middle and later stage rainwater;
when the diversion well is provided with two outlets, and the first outlet and the second outlet are respectively provided with the first closure assembly and the second closure assembly, the controller is used for controlling the second outlet to be communicated, the first outlet to be closed and to divert sewage and/or initial rainwater in sunny days, and controlling the second outlet to be closed, the first outlet to be communicated and to divert rainwater or middle and later stage rainwater;
when the diversion well is provided with three outlets, and the second outlet and the third outlet are respectively provided with the second diversion assembly and the third diversion assembly, the controller is used for controlling the second outlet to be communicated and the third outlet to be cut off to divert sewage in sunny days, the third outlet is communicated and diverted to initial rainwater, and the second outlet is controlled to be cut off to divert rainwater or middle and later stage rainwater;
when the diversion well is provided with three outlets, and the first outlet, the second outlet and the third outlet are respectively provided with the first diversion assembly, the second diversion assembly and the third diversion assembly, the controller is used for controlling the second outlet to be communicated and the first outlet and the third outlet to be cut off to divert sewage in sunny days, the third outlet to be communicated and the first outlet to be cut off to divert initial rainwater, and controlling the second outlet and the third outlet to be cut off and the first outlet to be communicated to divert rainwater in middle and later periods.
The utility model provides a be provided with control system of reposition of redundant personnel well that has cut-off equipment of utricule can also have such characteristic:
the measuring instrument comprises one or more of a rain gauge, a flow meter, a water gauge, a timer, a water quality monitor and a liquid level meter,
correspondingly, the measurement information comprises one or more of rainfall, instantaneous flow, accumulated flow, rainfall time, water quality and water level in the well body structure.
Utility model's advantage and beneficial effect lie in:
1. the cost is low: the working pressure of compressed air is lower and safer, the existing compressed air generating and controlling device is mature, reliable and economical, the power source of the pneumatic diversion well is a gas station, and the cost of the gas station is lower than that of a hydraulic station; the cost of the air pipe is lower as compared with that of a high-pressure oil pipe; a plurality of pneumatic flow dividing wells can share one gas source and one gas conveying main pipe, so that the cost is saved;
2. and (3) environmental protection: the compressed air can not introduce secondary pollution, and the compressed air device has no explosion risk; safety:
3. the construction is simple: the excavation amount is small;
4. does not occupy the height space: the earth surface can not be exposed, and the urban beauty and traffic are not disturbed;
5. safety: the pneumatic shunt well does not use non-safety voltage on site, and no safety accident of electricity utilization exists;
6. the power supply is easy to obtain: the power supply voltage of the pneumatic shunt well is 220V, and a civil power grid can be used and is conveniently obtained;
7. the reliability is high: the normal work of equipment is not influenced by urban inland inundation and flooding;
8. antiwind anti-clogging ability is strong: because the sewage contains more entanglement, sundries, floaters and the like, the overflowing channel and the flow channel of the pipeline are completely kept in consistent and smooth transition after the device is installed, and the entanglement blockage cannot be generated;
9. zero water loss: the flow passage of the device after installation and the flow passage of the pipeline are completely kept consistent and smoothly transited, and drainage and flood discharge are not influenced;
10. the service life is long: in the environment of using sewage, the electric or hydraulic equipment used in sewage can often break down, and the opening and closing piece of the pneumatic cut-off device is simple and can not break down.
11. Sealing is good: the general electric or hydraulic equipment has poor water leakage sealing caused by the blockage of sundries, and the pneumatic cut-off device adopts flexible rubber sealing and has a larger sealing surface, so the sealing effect is reliable.
12. Convenient dismantlement: according to the utility model provides an intercepting device, because the utricule on double layer is inside to have and to hold air cavity or water cavity, and is equipped with the import on the utricule and communicates with each other with air cavity or water cavity, that is to say, whole device can be few to only two parts, does not have other fasteners, and its installation, maintenance are convenient, reduce the time that the staff operated in the pit.
Drawings
Fig. 1 is a schematic view of a shut-off device installed in a diversion well in an embodiment of the present invention in a conducting state; and
fig. 2 is a schematic view of the shutoff device installed in the shutoff state of the diversion well according to an embodiment of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Fig. 1 is a schematic view of the shutoff device installed in the on-state of the diversion well in the embodiment of the present invention.
Fig. 2 is a schematic view of the shutoff device installed in the shutoff state of the diversion well according to an embodiment of the present invention.
Example 1
A flow stop device, comprising:
the utricule 1, the utricule encloses to close and is the flow channel that supplies fluid to pass through, and its inside has and holds air cavity or water cavity, and is equipped with import 3 and communicates with each other with air cavity or water cavity on the utricule. As shown in fig. 1, the bladder body is of a sandwich structure, and the hollow cavity between the sandwich layers is an air cavity or a water cavity. Wherein the inlet 3 is provided in the side wall of the capsule.
And the outer cover 2 is covered outside the bag body, the inner side of the outer cover is attached to the outer surface of the outer wall of the bag body, and when the air cavity or the water cavity is filled with pressurized air or pressurized water, the outer wall of the bag body is attached to the inner wall of the outer cover, and the inner wall of the bag body deforms and expands inwards, so that the sectional area of the flow channel is reduced.
In this case, the bladder is held in place by simply expanding it against the inner wall of the housing by its own resilience, in which case it will be apparent that the outer dimension is slightly larger than the inner wall of the housing. The bag body and the outer cover are not provided with redundant connecting pieces, the surface of the circulation channel of the bag body is smooth, the bag body is applied to a sewage environment, and the situation that garbage is accumulated to block the circulation channel can not occur
Example 2
On the basis of embodiment 1, in order to prevent the displacement of the capsule and the flushing of the fluid in the off state, a front limiting member and a rear limiting member may be provided on the inner wall of the housing, and the capsule is clamped and fixed by being clamped into the two limiting members.
Preferably, the limiting part is a circular ring, and the outer end of the limiting part is fixedly connected to the inner wall of the outer cover in a welding mode.
Example 3
As shown in fig. 1 and 2, on the basis of the above embodiments 1-2, the cross sections of the cover and the capsule are circular, and the cover and the capsule are coaxially arranged. The utricule is the rubber bag, forms by the integrative casting of disappearance mould, also can select for use the elastic material of different materials according to the fluidic nature of actual fluid, fills into pressurized gas or water in air cavity or the water cavity after, the inner wall of utricule is inside deformation under the pressure effect for the cross-sectional area of flow channel promptly crosses the water area and diminishes gradually, also can cut off, according to the water discharge of needs, can adjust the flow channel area of crossing, and rubber sleeve stops in the optional position.
Example 4
The embodiment provides a diversion well provided with the intercepting device of the above embodiments 1 to 3, and the specific structure is as follows:
the diversion well comprises a diversion well body, a water inlet and two outlets are arranged on the diversion well body, a first outlet and a second outlet are respectively arranged on the diversion well body, the water inlet is used for communicating with a drainage pipeline at the upper stream of the diversion well body, the first outlet is used for communicating with a drainage pipeline or natural water at the lower stream of the diversion well body through a communicating pipe, and the second outlet is used for connecting a sewage pipe or an initial rain pipe or a sewage treatment facility or an initial rain water treatment facility or a regulation and storage pool through a communicating pipe;
set up a cut-off equipment in the second export and be the second cut-off equipment, the one end of second cut-off equipment extends the second exit linkage communicating pipe, the circulation passageway and the butt joint of communicating pipe of second cut-off equipment, and the outer wall of dustcoat and the inner wall laminating of first export, when air cavity or water cavity wash into have pressure gas or have the pressure water, the sectional area that the utricule warp circulation passageway diminishes, control second export is closed, when the pressure gas of air cavity or water cavity or have the pressure water to emit, the utricule warp and makes the sectional area grow of circulation passageway, control second export is opened.
The forms of the diverter well body in the embodiment can also include the following forms:
the diversion well body is provided with a first outlet, a second outlet and a third outlet, the first outlet is used for being connected with a rainwater pipe or a natural water body through a connecting pipe, the second outlet is used for being connected with a regulation pool or a sewage pipe or a sewage treatment facility through a communicating pipe, the third outlet is used for being connected with a primary rainwater pipe or an initial rainwater treatment facility or a regulation pool through a communicating pipe, the second outlet and the third outlet are correspondingly provided with a second flow intercepting device and a third flow intercepting device, and the outer walls of the outer covers of the second flow intercepting device and the third flow intercepting device are correspondingly attached to the inner walls of the second outlet and the third outlet; or,
the diversion well body is provided with a first outlet, a second outlet and a third outlet, the first outlet is used for being connected with a rainwater pipe or a natural water body through a connecting pipe, the second outlet is used for being connected with a regulation pool or a sewage pipe or a sewage treatment facility through a communicating pipe, the third outlet is used for being connected with a primary rainwater pipe or an initial rainwater treatment facility or a regulation pool through a communicating pipe, the first, second and third outlets are correspondingly provided with a first flow intercepting device, a second flow intercepting device and a third flow intercepting device, and the outer walls of the outer covers of the first, second and third flow intercepting devices are correspondingly attached to the inner walls of the first, second and third outlets; or,
the diversion well body is provided with first export, second export, and first export is used for connecting downspout or natural water through the connecting pipe, and the second export is used for through communicating pipe and regulation pond or sewer pipe or sewage treatment facility or first rain pipe or initial stage rainwater treatment facility, and first, the correspondence sets up first, second cut-off equipment on the second export, and the outer wall correspondence of first, second cut-off equipment with the inner wall laminating of first, second export.
The following briefly describes the operation steps of the above embodiment of the entrapment device mounted to the diverter well body:
firstly, reserving a hole with the outer diameter larger than that of the outer cover on a well body;
then positioning the well body to a position required to be installed, plugging the whole cut-off device into the hole from the outside, and fixing the gap between the outer cover and the well body through secondary pouring of concrete;
and connecting the tail part of the cut-off device with an external connecting pipe, and finally backfilling and installing the periphery of the cut-off device.
The working principle of the cut-off device in the above embodiment is described below with reference to fig. 1 and 2:
the intercepting device is mainly installed in an underground pipeline to play a role in intercepting, domestic sewage enters a sewage pipeline through the intercepting device in a sunny day, and at the moment, the bag body is in an open state as shown in figure 1, and sewage can pass through.
When rainfall reaches later stage rainwater, aerify or the water injection in to the utricule, the utricule takes place deformation and closes the interception dirty pipe, and later stage rainwater passes through the drain pipe and gets into the natural water, plays the effect of damming like figure 2.
After the rainfall is finished, the air in the capsule body is discharged, the capsule body is restored to the original state under the action of the elastic force of the capsule body, and the domestic sewage can enter the sewage intercepting pipe.
In the embodiment, when the cut-off device is replaced, the capsule body only needs to be pulled out of the outer cover. In practice, the bladder is often deflated or drained and then slightly evacuated to allow the bladder to deflate, thus allowing the bladder to be easily pulled out of the housing.
Example 6
The present embodiment also provides a control system for a diverter well suitable for use in embodiment 5, comprising;
the gas source or the water source is used for supplying pressure gas or water;
the conveying pipeline is connected with the cut-off device and a gas source or a water source and is used for conveying pressurized gas or water;
the control valve is arranged on the conveying pipe and used for controlling the cut-off device to fill and discharge the pressurized gas or the water body;
the measuring instrument is arranged in or outside the shunt well body and used for detecting measuring information;
the controller is respectively electrically connected with the measuring instrument and the control valve and is used for controlling the switch of the control valve according to the measuring information, and the control valve correspondingly controls the inflation and deflation of the cut-off device with pressure gas or water so as to control the conduction and the cut-off of the outlet of the shunt well; wherein,
when the diversion well is provided with two outlets and the second outlet is provided with the interception component, the controller is used for controlling the second outlet to conduct and divert the sewage and/or the initial rainwater in sunny days and controlling the second outlet to stop diverting the rainwater or the rainwater in middle and later periods;
when the diversion well is provided with two outlets, and the first outlet and the second outlet are respectively provided with the first closure assembly and the second closure assembly, the controller is used for controlling the second outlet to be communicated, the first outlet to be closed and to divert sewage and/or initial rainwater in sunny days, and controlling the second outlet to be closed, the first outlet to be communicated and to divert rainwater or middle and later stage rainwater;
when the diversion well is provided with three outlets, and the second outlet and the third outlet are respectively provided with a second diversion assembly and a third diversion assembly, the controller is used for controlling the second outlet to be communicated and the third outlet to be stopped diverting sewage in sunny days, the third outlet is communicated and diverted initial rainwater, and the second outlet is controlled to be stopped diverting rainwater in middle and later periods;
when the diversion well is provided with three outlets, and the first outlet, the second outlet and the third outlet are respectively provided with the first diversion assembly, the second diversion assembly and the third diversion assembly, the controller is used for controlling the second outlet to be communicated and the first outlet and the third outlet to be cut off to divert sewage in fine days, the third outlet to be communicated and the first outlet to be cut off to divert initial rainwater, and the second outlet and the third outlet to be cut off and the first outlet to be communicated to divert rainwater in middle and later periods.
The measuring instrument in the embodiment comprises one or more of a rain gauge, a flow meter, a water gauge, a timer, a water quality monitor and a liquid level meter,
accordingly, the method of installing the cut-off device of the present embodiment to the diversion well will be described below with reference to one or more of rainfall, instantaneous flow rate, cumulative flow rate, rainfall time, water quality, and water level in the well structure.
The following description is given by taking the diversion well as a first outlet and a second outlet, wherein the first outlet and the second outlet are both provided with the intercepting component, and the rainfall selected by the measuring instrument is as an example:
the rainfall meter monitors rainfall in real time to obtain a rainfall value, and a first rainfall threshold value is arranged in the controller;
in sunny days, the controller controls the first intercepting component arranged at the first outlet to be filled with pressurized gas or pressurized liquid, the first outlet is stopped, the pressurized gas or pressurized liquid of the second intercepting component arranged at the second outlet is discharged, the second outlet is communicated, and the domestic sewage entering the diversion well is led out to enter a sewage pipe or a sewage treatment facility through the second outlet;
in rainy days, a rain gauge monitors rainfall in real time to obtain a rain value, when the rain value does not reach a first rain threshold value, the first outlet is kept closed, the second outlet is conducted, and initial rainwater entering the diversion well is led out through the second outlet and enters a sewage pipe or a sewage treatment facility;
when the rainfall value reaches the first rainfall threshold value, the first outlet is kept to be communicated, the second outlet is cut off, and the rainwater entering the diversion well or the rainwater in the middle and later periods is diverted to the natural water body or the rainwater pipe through the first outlet.
The advantages and benefits of the embodiments are: according to the utility model provides an intercepting device, because the utricule on double layer is inside to have and to hold air cavity or water cavity, and is equipped with the import on the utricule and communicates with each other with air cavity or water cavity, that is to say, whole device can be few to only two parts, does not have other fasteners, so only need with the utricule pull out the dustcoat change can, convenient operation is swift.
The intercepting device of the embodiment is installed in the space occupied by the diversion well, is compact in installation structure and does not occupy the upper or lower space of the diversion well.
The bag body of the cut-off device of the embodiment drives the bag body in an inflation or water filling mode, and is safe and reliable.
The mode of inflating or water-filling to extrude the inner wall of the bag body is used, when the bag is in a conducting state, the flow path is large, the overflowing amount is not influenced, other parts are not arranged in a flow channel, the passage of garbage is not hindered, and the bag is particularly suitable for urban sewage pipe networks.
Furthermore, only the inner wall of the bag body in the whole cut-off device is a movable part, and the movable part can be directly pulled out during replacement, so that the cut-off device is easy to replace, convenient and fast.
The diverter well using the entrapment device in the embodiments has the following advantages:
1. the cost is low: the working pressure of compressed air is lower and safer, the existing compressed air generating and controlling device is mature, reliable and economical, the power source of the pneumatic diversion well is a gas station, and the cost of the gas station is lower than that of a hydraulic station; the cost of the air pipe is lower as compared with that of a high-pressure oil pipe; a plurality of pneumatic flow dividing wells can share one gas source and one gas conveying main pipe, so that the cost is saved;
2. and (3) environmental protection: the compressed air can not introduce secondary pollution, and the compressed air device has no explosion risk;
3. the construction is simple: the excavation amount is small;
4. does not occupy the height space: the earth surface can not be exposed, and the urban beauty and traffic are not disturbed;
5. safety: the shunt well does not use non-safety voltage on site, and no safety accident of electricity utilization exists;
6. the power supply is easy to obtain: the power supply voltage of the shunt well is 220V, and the shunt well can use a municipal and civil power grid and is convenient to obtain;
7. the reliability is high: the normal work of equipment is not influenced by urban inland inundation and flooding;
8. antiwind anti-clogging ability is strong: because the sewage contains more entanglement, sundries, floaters and the like, the overflowing channel of the device after being installed and the flow channel of the municipal pipeline are completely kept in consistent and smooth transition, and the entanglement and blockage can not be generated;
9. zero water loss: the overflowing channel after the device is installed and the flow channel of the municipal pipeline are completely kept in consistent and smooth transition, and drainage and flood discharge are not influenced;
10. the service life is long: in the environment of using sewage, electric or hydraulic equipment used in the sewage can often generate faults, and the opening and closing piece of the pneumatic cut-off device is simple and cannot generate faults;
11. sealing is good: the general electric or hydraulic equipment has poor water leakage sealing caused by the blockage of sundries, and the pneumatic cut-off device adopts flexible rubber sealing and has a larger sealing surface, so the sealing effect is reliable.
The present invention is not limited to the above embodiments, and for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations are also considered to be within the protection scope of the present invention. Those not described in detail in this specification are within the skill of the art.

Claims (10)

1. A flow stop device having a bladder, comprising:
the bag body is enclosed into a flow channel for fluid to pass through, an accommodating air cavity or a water cavity is arranged in the bag body, and an inlet arranged on the bag body is communicated with the air cavity or the water cavity;
and the outer cover is covered outside the bag body, the inner side of the outer cover is attached to the outer surface of the outer wall of the bag body, and when the air cavity or the water cavity is filled with pressurized air or pressurized water, the outer wall of the bag body is attached to the inner wall of the outer cover, and the inner wall of the bag body deforms and expands inwards, so that the sectional area of the flow channel is reduced.
2. The shut-off device with a capsule according to claim 1, characterized in that:
wherein the inlet is provided on a side wall of the capsule.
3. The shut-off device with a bladder of claim 2, wherein:
the inner wall of the outer cover is provided with a front limiting piece and a rear limiting piece,
the capsule body is clamped into the two limiting parts and is fixed by the clamping.
4. The shut-off device with a bladder of claim 3, wherein:
the limiting part is a circular ring, and the outer end of the limiting part is fixedly connected to the inner wall of the outer cover.
5. The shut-off device with a capsule according to claim 1, characterized in that:
wherein the housing is cylindrical and the bladder is cylindrical.
6. The shut-off device with a capsule according to claim 1, characterized in that:
wherein, the utricule is the rubber material.
7. A diverter well provided with a shut-off device with a bladder according to any one of claims 1 to 6, characterized in that:
the diversion well comprises a diversion well body, a water inlet and two outlets are arranged on the diversion well body, and a first outlet and a second outlet are respectively arranged on the diversion well body, the water inlet is used for being communicated with a drainage pipeline at the upstream of the diversion well body, the first outlet is used for being communicated with a drainage pipeline or a natural water body at the downstream of the diversion well body through a communicating pipe, and the second outlet is used for being connected with a sewage pipe or an initial rain pipe or a sewage treatment facility or an initial rainwater treatment facility or a regulation and storage pool through a communicating pipe;
the second outlet is internally provided with the cut-off device, namely a second cut-off device, one end of the second cut-off device extends out of the second outlet to be connected with the communicating pipe, a circulation channel of the second cut-off device is in butt joint with the communicating pipe, the outer wall of the outer cover is attached to the inner wall of the first outlet, when the air cavity or the water cavity is filled with pressure gas or pressure water, the sectional area of the circulation channel is deformed to be reduced, the second outlet is controlled to be closed, and when the pressure gas or the pressure water in the air cavity or the water cavity is discharged, the sectional area of the circulation channel is enlarged by the deformation of the capsule, and the second outlet is controlled to be opened.
8. The diverter well provided with a shut-off device having a bladder according to claim 7, wherein:
the diversion well body is also provided with a third outlet, the third outlet is used for being connected with an initial rain pipe or an initial rainwater treatment facility or a regulation and storage pool through a communicating pipe, a third interception device is arranged on the third outlet, the outer wall of the outer cover is attached to the inner wall of the third outlet, and a circulation channel of the third interception device is butted with the communicating pipe corresponding to the third outlet and used for controlling the opening and closing of the third outlet; or,
the diversion well body is also provided with a third outlet, the third outlet is used for being connected with an initial rain pipe or an initial rainwater treatment facility or a regulation and storage tank through a communicating pipe, a third intercepting device and a first intercepting device are respectively and correspondingly arranged on the third outlet and the first outlet, the outer walls of the outer covers of the third intercepting device and the first intercepting device are respectively attached to the inner walls of the corresponding third outlet and the corresponding first outlet, and a circulation channel of the first intercepting device is butted with the communicating pipe corresponding to the first outlet and is used for controlling the opening and closing of the first outlet; or,
the first outlet is provided with a first cut-off device, the outer wall of the outer cover of the first cut-off device is attached to the inner wall of the first outlet, and the flow passage of the first cut-off device is in butt joint with the communicating pipe corresponding to the first outlet and used for controlling the opening and closing of the first outlet.
9. Control system of a diverter well provided with a shut-off device with a capsule according to claim 7 or 8, characterized in that:
the gas source or the water source is used for supplying pressure gas or water;
the conveying pipeline is connected with the cut-off device and the gas source or the water source and is used for conveying gas or water body under pressure;
the control valve is arranged on the conveying pipe and used for controlling the cut-off device to charge and discharge the pressurized gas or the water body;
the measuring instrument is arranged in or outside the shunt well body and used for detecting measuring information;
the controller is respectively electrically connected with the measuring instrument and the control valve and is used for controlling the control valve to be switched on and off according to the measuring information, and the control valve correspondingly controls the cut-off device to be filled and discharged with pressure gas or water so as to control the opening and closing of the outlet of the diversion well; wherein,
when the diversion well is provided with two outlets and the second outlet is provided with the closure assembly, the controller is used for controlling the second outlet to conduct and divert the fine day sewage and/or the initial rainwater and controlling the second outlet to stop diverting the rainwater or the rainwater at the middle and later stages;
when the diversion well is provided with two outlets, and the first outlet and the second outlet are respectively provided with the first closure assembly and the second closure assembly, the controller is used for controlling the second outlet to be communicated, the first outlet to be closed and to divert sewage and/or initial rainwater in sunny days, and controlling the second outlet to be closed, the first outlet to be communicated and to divert rainwater or middle and later stage rainwater;
when the diversion well is provided with three outlets, and the second outlet and the third outlet are respectively provided with the second diversion assembly and the third diversion assembly, the controller is used for controlling the second outlet to be communicated and the third outlet to be cut off to divert sewage in sunny days, the third outlet is communicated and diverted to initial rainwater, and the second outlet is controlled to be cut off to divert rainwater or middle and later stage rainwater;
when the diversion well is provided with three outlets, and the first outlet, the second outlet and the third outlet are respectively provided with the first diversion assembly, the second diversion assembly and the third diversion assembly, the controller is used for controlling the second outlet to be communicated and the first outlet and the third outlet to be cut off to divert sewage in sunny days, the third outlet to be communicated and the first outlet to be cut off to divert initial rainwater, and controlling the second outlet and the third outlet to be cut off and the first outlet to be communicated to divert rainwater in middle and later periods.
10. A control system for a diverter well provided with a shut-off device having a bladder according to claim 9, wherein: the measuring instrument comprises one or more of a rain gauge, a flow meter, a water gauge, a timer, a water quality monitor and a liquid level meter,
correspondingly, the measurement information comprises one or more of rainfall, instantaneous flow, accumulated flow, rainfall time, water quality and water level in the well body structure.
CN201821773098.4U 2018-10-30 2018-10-30 Cut-off equipment, shunting well and its control system with utricule Active CN209620210U (en)

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Application Number Priority Date Filing Date Title
CN201821773098.4U CN209620210U (en) 2018-10-30 2018-10-30 Cut-off equipment, shunting well and its control system with utricule

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115012515A (en) * 2022-04-29 2022-09-06 武汉圣禹排水系统有限公司 Capsule structure, new power cut-off device and control method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115012515A (en) * 2022-04-29 2022-09-06 武汉圣禹排水系统有限公司 Capsule structure, new power cut-off device and control method

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Address after: No. 509 Weihu Road, Shamao Street, Hannan District, Wuhan City, Hubei Province, 430000

Patentee after: Wuhan Shengyu Smart Ecological Environmental Protection Co.,Ltd.

Address before: 430000, No. 189, Minli North Road, Wuhan Economic and Technological Development Zone, Hubei Province

Patentee before: WUHAN SHENGYU DRAINAGE SYSTEM Co.,Ltd.