CN217637568U - Pipeline backwater monitoring equipment - Google Patents

Pipeline backwater monitoring equipment Download PDF

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Publication number
CN217637568U
CN217637568U CN202221847590.8U CN202221847590U CN217637568U CN 217637568 U CN217637568 U CN 217637568U CN 202221847590 U CN202221847590 U CN 202221847590U CN 217637568 U CN217637568 U CN 217637568U
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pipeline
monitoring
branch pipe
water level
water
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CN202221847590.8U
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Chinese (zh)
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陈青青
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Individual
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Abstract

The utility model provides a reverse water monitoring facilities of pipeline, including the external water level monitoring pipeline on sewer pipe, water level monitoring pipe mounting has the monitoring mechanism who is used for monitoring whether the water level changes, and when monitoring mechanism monitored the interior water level of pipeline and rises, monitoring mechanism sent the signal of telecommunication and handles the backstage for the thing networking. Through installing water level monitoring pipeline on sewer pipe, realize real-time supervision through the thing networking, in case sewer pipe blocks up or anti-water phenomenon appears, the thing networking is handled the backstage and can be sent the signal immediately and give owner or property's mobile client to realize rapid processing, avoid just coming loss of property and unnecessary trouble for the resident family because of sewer anti-water.

Description

Pipeline backwater monitoring equipment
Technical Field
The utility model relates to a house blowdown drainage application, in particular to anti-water monitoring facilities of pipeline.
Background
At present, residential buildings and residential buildings adopt single water drainage for the first floor, floors above the second floor share the same sewer pipe for water drainage and pollution discharge, the second floor is positioned at the lowest water outlet floor of a shared pipeline, the phenomena of pipeline blocking, water return and the like can often occur, inconvenience is brought to life of residents, certain damage can be caused to facilities in the households when the sewer water return is serious, and the later cleaning is very troublesome;
however, no equipment or method capable of effectively solving the problem exists in the current market, the pipeline blockage can be found until the water is returned to the household, then the property or maintenance personnel are informed to maintain, and the damage to the facilities in the house due to the water return can be caused because no people exist in the house in the daytime, so that the problem can be effectively solved by the pipeline water return monitoring equipment.
SUMMERY OF THE UTILITY MODEL
Not enough to current technique, the utility model provides a reverse water monitoring facilities of pipeline.
In order to realize the purpose, the utility model adopts the technical scheme that: the utility model provides a pipeline anti-water monitoring facilities, includes the water level monitoring pipeline of external on the drainage pipeline that gives off water, water level monitoring pipe mounting has the monitoring mechanism who is used for monitoring whether the water level changes, and when monitoring mechanism monitored the interior water level of pipeline and rises, monitoring mechanism sent the signal of telecommunication and handles the backstage for the thing networking.
The water level monitoring pipeline comprises a branch pipe, the upper end and the lower end of the branch pipe are respectively communicated with the sewage draining pipeline, and the highest horizontal height of the upper end of the branch pipe is higher than the height of the communicated part of the branch pipe and the sewage draining pipeline.
The monitoring mechanism is arranged in the branch pipe and is an inductive probe.
The branch pipe is internally provided with a floating piece which floats on the liquid and is convenient for the induction probe to induce, when the water level in the branch pipe rises, the horizontal height of the floating piece changes along with the rise of the water level, and when the induction probe induces the floating piece, an electric signal is sent.
The upper end and the lower end of the branch pipe are respectively provided with a filter screen for preventing impurities in the sewage draining pipeline from entering the branch pipe.
The upper end and the lower end of the branch pipe are respectively communicated with the side wall of the sewage draining pipeline in a sealing way, and the integral strength of the sewage draining pipeline is enhanced through the reinforcing piece and the clamping ring.
The upper end and the lower end of the branch pipe are respectively and longitudinally communicated with the joint, and the upper end and the lower end of the joint are hermetically communicated with a sewage draining pipeline.
The connector is characterized by further comprising an observation window, wherein the observation window is arranged on the connector, and the horizontal height position of the observation window is consistent with that of the monitoring mechanism.
The utility model has the advantages that: the utility model provides a pipeline anti-water monitoring facilities through installing water level monitoring pipeline on sewer pipe, realizes real-time supervision through the thing networking, in case sewer pipe blocking or anti-water phenomenon appear, the thing networking is handled the backstage and can be sent the signal immediately and give owner or property's mobile client to realize rapid processing, avoid just coming loss of property and unnecessary trouble for the resident family because of the sewer is anti-water.
The utility model discloses still have simple structure, processing convenience and the easy characteristics of assembly, the practicality is strong.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
fig. 2 is an exploded view of an embodiment of the present invention;
FIG. 3 is a schematic view of the installation position of the water level monitoring device of the present invention;
fig. 4 is a schematic structural diagram of a second embodiment of the present invention.
Detailed Description
The first embodiment is as follows: as shown in fig. 1-3, a pipeline anti-water monitoring equipment, including the water level monitoring pipeline 200 that cup joints on offal sewage pipes 100, water level monitoring pipeline 200 installs and is used for monitoring whether the water level changes monitoring mechanism 300, when monitoring mechanism 300 monitored the interior water level of pipeline and rises, monitoring mechanism 300 sends the signal of telecommunication for the thing networking and handles the backstage, when the water level phenomenon appears in offal sewage pipes 100, sewage in offal sewage pipes 100 can rise, when rising, sewage can get into in water level monitoring pipeline 200, monitoring mechanism 300 in water level monitoring pipeline 200 senses the water level and rises and can send the signal of telecommunication for the thing networking at once and handle the backstage, thing networking is handled the backstage and can be given signal transmission for the property owner very first time, owner or maintainer's mobile client, thereby realize quick processing, avoid bringing property loss and unnecessary trouble for the property owner.
The water level monitoring pipeline 200 comprises a branch pipe 210, the upper end and the lower end of the branch pipe 210 are respectively communicated with the sewage drainage pipeline 100, the highest level at the upper end of the branch pipe 210 is higher than the height of the communicated part of the branch pipe 210 and the sewage drainage pipeline 100, a connector at the lower end of the branch pipe 210 is used for enabling sewage to enter the branch pipe 210 when the sewage drainage pipeline 100 runs backwards, the upper end of the branch pipe 210 is used for discharging air in the branch pipe 210 when the branch pipe 210 feeds water, negative pressure is prevented from being formed, and therefore normal work of the monitoring device is prevented from being influenced, meanwhile, the upper end of the branch pipe 210 adopts a bending structure, namely, the highest level of the branch pipe 210 is higher than the height of the communicated part of the branch pipe 210 and the sewage drainage pipeline 100, due to the height difference, sewage can be prevented from entering the branch pipe 210 from the upper end of the branch pipe 210 during normal drainage, the branch pipe 210 is externally arranged on the sewage drainage pipeline 100, and is convenient to install, and is convenient for subsequent maintenance and inspection and repair.
The monitoring mechanism 300 is arranged inside the branch pipe 210, the monitoring mechanism 300 is an inductive probe, and a water level monitoring sensor is adopted in the embodiment, is a mature technology at present, can be purchased directly from the market, and is not described in detail for the specific working principle.
The branch pipe 210 is internally provided with a floating piece 220 which is used for floating on liquid and is convenient for an inductive probe to sense, when the water level in the branch pipe 210 rises, the horizontal height of the floating piece 220 changes along with the rise of the water level, and when the inductive probe senses the floating piece 220, an electric signal is sent out.
The upper end and the lower end of the branch pipe 210 are respectively provided with a filter screen 230 for preventing impurities in the sewage draining pipeline 100 from entering the branch pipe 210, and as the sewage draining pipeline 100 is blocked by reverse water, the impurities such as toilet paper and sanitary towel can be blocked basically, so that the filter screen 230 is arranged, the impurities can be prevented from entering the branch pipe 210, the sewage can not enter the branch pipe 210, and the monitoring accuracy of the monitoring mechanism 300 can be ensured.
The branch pipe 210 both ends respectively launch sewage pipes 100 lateral wall seal intercommunication about to strengthen launch sewage pipes 100 bulk strength through reinforcement 400 and snap ring 500, what adopt in this embodiment is at launch sewage pipes 100 lateral wall trompil, do sealed intercommunication through the trompil with both ends and launch sewage pipes 100 about branch pipe 210 and handle, and ensure launch sewage pipes 100's intensity through reinforcement 400 and a plurality of snap ring 500, avoid it to cause structural damage because of the trompil, influence the intensity of its trompil department.
In fig. 3, a is a position where the sewage draining pipeline is easy to block; b is the ground; c is a septic tank; d is the mounted position of water level monitoring pipeline in this embodiment, and water level monitoring pipeline generally installs in the high position of one floor sewer drain pipe 0.8m-1m apart from ground, and this position generally all can set up the access hole, consequently installs in this position, can not destroy building structure, and simple to operate, follow-up maintenance are also very convenient.
Example two: as shown in fig. 4, the present embodiment further comprises a joint 600, the upper end and the lower end of the branch pipe 210 are respectively and longitudinally communicated with the joint 600, and the upper end and the lower end of the joint 600 are in sealed communication with the sewage drain 100, the present embodiment is different from the first embodiment in that the installation structure of the present embodiment is that the sewage drain 100 is disconnected from the joint 600, the sewage drain 100 is communicated through the joint 600, the branch pipe 210 is directly and hermetically communicated with the joint 600, and the branch pipe 210 and the joint 600 can be manufactured as an integral structure during production, so as to ensure the strength thereof.
The monitoring device further comprises an observation window 610, the observation window 610 is arranged on the joint 600, the horizontal height position of the observation window 610 is consistent with that of the monitoring mechanism 300, the observation window 610 is designed in the first embodiment and the second embodiment, in the first embodiment, the branch pipe 210 and the sewage drainage pipeline 100 are independently installed, the observation window 610 is arranged on the joint 600, the sewage drainage pipeline 100 is disconnected from the first embodiment, the upper and lower sealing communication is realized through the joint 600, in the second embodiment, the branch pipe 210 and the joint 600 are installed together, and the observation window 610 is arranged on the joint 600; the observation window 610 is used to observe a clogging condition in the sewage drain pipe 100.
The utility model provides an use monitoring system of pipeline anti-water monitoring facilities, this system is including being used for installing water level monitoring pipeline 200 on sewer sewage pipes 100 and the monitoring mechanism 300 who is used for the signal of telecommunication, when monitoring mechanism 300 monitors that the water level in water level monitoring pipeline 200 rises, monitoring mechanism 300 sends the signal of telecommunication, still include thing networking processing backstage, when monitoring mechanism 300 sends the signal of telecommunication for thing networking processing backstage, thing networking processing backstage sends the signal of pipeline blocking anti-water to property, owner or maintainer's mobile client, the monitoring system that this embodiment provided is a monitoring software, monitoring mechanism 300 carries the signal of telecommunication to the treater of thing networking processing backstage through the wire, thing networking processing backstage sends the blocking anti-water condition to owner through mobile network, on the mobile APP on the property cell-phone, can be equipped with bee calling organ simultaneously, when thing networking processing backstage receives the signal of blocking anti-water, thing networking processing backstage control bee calling organ sends the police to report to the police, can realize real-time monitoring sewer pipes of user health, waste water pipes, kitchen pipe, balcony pipe, the waste water pipe is not used for the house owner and the furniture is decorated and is lost, the waste water loss of indoor sanitation is avoided.
The utility model has the advantages that: the utility model provides a pipeline anti-water monitoring facilities through installing water level monitoring pipeline on sewer pipe, realizes real-time supervision through the thing networking, in case sewer pipe blocking or anti-water phenomenon appear, the thing networking is handled the backstage and can be sent the signal immediately and give owner or property's mobile client to realize rapid processing, avoid just coming loss of property and unnecessary trouble for the resident family because of the sewer is anti-water.
The utility model discloses still have simple structure, processing convenience and the easy characteristics of assembly, the practicality is strong.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only illustrative of the principles of the present invention, and that simple modifications and substitutions by those skilled in the art are within the scope of the present invention without departing from the spirit and scope of the present invention.

Claims (8)

1. The utility model provides a pipeline anti-water monitoring facilities, its characterized in that, includes the water level monitoring pipeline of cup jointing on launching sewage pipes, water level monitoring pipeline installs and is used for monitoring the monitoring mechanism that whether the water level changes, and when monitoring mechanism monitored the interior water level of pipeline and rises, monitoring mechanism sent the signal of telecommunication and handles the backstage for the thing networking.
2. The pipeline backwater monitoring device as claimed in claim 1, wherein the water level monitoring pipeline comprises a branch pipe, the upper end and the lower end of the branch pipe are respectively communicated with the sewage draining pipeline, and the highest level of the upper end of the branch pipe is higher than the communicated part of the branch pipe and the sewage draining pipeline.
3. The apparatus according to claim 2, wherein the monitoring means is disposed inside the branch pipe, and the monitoring means is an inductive probe.
4. A pipeline backwash monitoring device as claimed in claim 2 or 3 wherein the manifold is provided with a float for floating on the liquid to facilitate sensing by the sensing probe, the level of the float varying with rising water level as the water level in the manifold rises and the sensing probe generates an electrical signal when it senses the float.
5. A pipeline backwater monitoring device as claimed in claim 2, wherein the upper and lower ends of the branch pipe are respectively provided with a filter screen for preventing impurities in the sewage drain pipe from entering the branch pipe.
6. The pipeline anti-water monitoring device as claimed in claim 2, wherein the upper and lower ends of the branch pipe are respectively in sealed communication with the side wall of the sewage drain pipeline, and the overall strength of the sewage drain pipeline is enhanced by the reinforcing member and the snap ring.
7. The pipeline anti-water monitoring device as claimed in claim 2, further comprising a joint, wherein the upper end and the lower end of the branch pipe are respectively and longitudinally communicated with the joint, and the upper end and the lower end of the joint are hermetically communicated with a sewage drainage pipeline.
8. The pipeline anti-water monitoring device as claimed in claim 6 or 7, further comprising a viewing window, wherein the viewing window is arranged on the joint, and the horizontal height position of the viewing window is consistent with the horizontal height position of the monitoring mechanism.
CN202221847590.8U 2022-07-18 2022-07-18 Pipeline backwater monitoring equipment Active CN217637568U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221847590.8U CN217637568U (en) 2022-07-18 2022-07-18 Pipeline backwater monitoring equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221847590.8U CN217637568U (en) 2022-07-18 2022-07-18 Pipeline backwater monitoring equipment

Publications (1)

Publication Number Publication Date
CN217637568U true CN217637568U (en) 2022-10-21

Family

ID=83635248

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221847590.8U Active CN217637568U (en) 2022-07-18 2022-07-18 Pipeline backwater monitoring equipment

Country Status (1)

Country Link
CN (1) CN217637568U (en)

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