CN214332342U - Intelligent analysis system for intelligent water affair pipe explosion - Google Patents

Intelligent analysis system for intelligent water affair pipe explosion Download PDF

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Publication number
CN214332342U
CN214332342U CN202023346614.5U CN202023346614U CN214332342U CN 214332342 U CN214332342 U CN 214332342U CN 202023346614 U CN202023346614 U CN 202023346614U CN 214332342 U CN214332342 U CN 214332342U
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monitoring
water supply
community
supply network
district
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陈方亮
陈芊羽
李伟
张帆
魏琪
彭丁丁
梁帅锋
王欣
刘杰
朱琳
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Zhengzhou Litong Water Co ltd
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Zhengzhou Litong Water Co ltd
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Abstract

The utility model discloses a wisdom water utilities explosion intelligent analysis system, including water supply network monitoring unit, cloud ware and host computer, water supply network monitoring unit, including water supply network, intermediate data collection station, senior data collection station and communication module, water supply network is equipped with a plurality of monitoring websites, flow detection spare and pressure detection spare in the monitoring website are connected with data collection station respectively, intermediate data collection station is connected with the data collection station of at least one monitoring website, senior data collection station is connected with an intermediate data collection station at least, senior data collection station passes through communication module and is connected with cloud ware, the host computer passes through network module and is connected with cloud ware. The utility model discloses carry out the parallel monitoring relation to every water supply network, the cloud ware is handled respectively, has improved the transmission efficiency of data, has also improved the efficiency of cloud ware to data processing, can learn to dawn which water supply network to appear the booster more pertinence sooner, avoids the water source extravagant.

Description

Intelligent analysis system for intelligent water affair pipe explosion
Technical Field
The utility model belongs to the technical field of supply pipe reason, concretely relates to wisdom water utilities intelligent analysis system that explodes.
Background
Along with the acceleration of the process of local urbanization, the urban framework is continuously enlarged, the problem of water supply safety is more and more prominent, and especially the safe operation of a transmission and distribution pipe network is receiving more and more attention. The leakage control of water supply networks in cities and towns in China has a large gap with the advanced level in the world. Water supply network leakage not only leads to the waste of water resource, also easily causes secondary disasters such as road surface collapse, is the important factor that influences water supply safety and public safety.
The pipe explosion is not defined clearly and uniformly at present, and according to data, the pipe explosion refers to the condition that the structural damage of the pipeline, a large amount of water leakage of the pipeline rises to the road surface, and the emergency repair is required to be carried out immediately. Especially, large-diameter pipelines and pipe explosion cause a large amount of running water loss and regional pressure reduction, so that economic loss is brought to water supply enterprises, and certain negative social influence is caused. Then there is currently no effective pipe burst monitoring system for the entire water supply network.
SUMMERY OF THE UTILITY MODEL
Not enough to the description among the above-mentioned prior art, the utility model provides a wisdom water utilities explodes pipe intelligent analysis system.
The utility model discloses the technical scheme who adopts does:
an intelligent water service pipe burst analysis system comprises a water supply network monitoring unit, a cloud server and an upper computer, wherein the water supply network monitoring unit comprises a water supply network, a middle-level data collector, a high-level data collector and a communication module; the flow detection part and the pressure detection part in one monitoring station are respectively connected with the data acquisition units, one intermediate data acquisition unit is connected with the data acquisition unit of at least one monitoring station, one high-grade data acquisition unit is connected with at least one intermediate data acquisition unit, the high-grade data acquisition unit is connected with the cloud server through the communication module, and the upper computer is connected with the cloud server through the network module.
As the utility model discloses an optimal scheme, cloud ware still communicates with mobile terminal, and mobile terminal receives the instruction that cloud ware host computer sent, also accessible visit cloud ware and acquire real-time pipe network monitoring site information.
As a preferred scheme of the utility model, the water supply network monitoring unit comprises a water supply network monitoring subunit, a district water supply network monitoring subunit, a community water supply network monitoring subunit and a unit user water supply network monitoring subunit; the water supply network monitoring subunit, the district water supply network monitoring subunit, the community water supply network monitoring subunit and the unit user water supply network monitoring subunit are arranged in parallel and are in communication connection with the cloud server through respective communication modules.
Specifically, the water supply network monitoring subunit comprises a water supply network I, a medium-level data collector I, a high-level data collector I and a communication module I, wherein the water supply network I supplies water to a water supply network in the jurisdiction of the water supply network monitoring subunit in the jurisdiction; be equipped with a plurality of monitoring sites I on the water supply network I, every monitoring site I all is equipped with at least three monitoring pipe way I, all install flow detection spare I and pressure detection spare I on every monitoring pipe way I, flow detection spare I and pressure detection spare I in a monitoring site I are connected with data collection station I respectively, a medium level data collection station I is connected with at least one monitoring site I's data collection station I, a senior data collection station I is connected with a medium level data collection station I at least, senior data collection station I passes through communication module I and is connected with cloud server.
The district water supply network monitoring subunit comprises a district water supply network, a district middle-level data collector, a district high-level data collector and a district communication module, wherein the district water supply network supplies water to a community water supply network of the community water supply network monitoring subunit; the system comprises a plurality of district monitoring stations arranged on a district water supply network, wherein each district monitoring station is provided with at least three district monitoring pipelines, each district monitoring pipeline is provided with a district flow detection piece and a district pressure detection piece, the district flow detection piece and the district pressure detection piece in one district monitoring station are respectively connected with a district data collector, one district middle-level data collector is connected with at least one district data collector of the district monitoring station, one district high-level data collector is at least connected with one district middle-level data collector, and the district high-level data collector is connected with a cloud server through a district communication module.
The community water supply network monitoring subunit comprises a community water supply network, a community medium-grade data collector, a community high-grade data collector and a community communication module, wherein the community water supply network supplies water to unit users of the unit user water supply network monitoring subunit; be equipped with a plurality of community monitoring sites on the water supply pipe network of community, every community monitoring site all is equipped with at least three community monitoring pipe way, all install community flow detection spare and community pressure detection spare on every community monitoring pipe way, community flow detection spare and community pressure detection spare in a community monitoring site are connected with community data collection station respectively, a community intermediate data collection station is connected with the community data collection station of at least one community monitoring site, a community advanced data collection station is connected with a community intermediate data collection station at least, community advanced data collection station passes through the community communication module and is connected with cloud ware.
The unit user water supply network monitoring subunit comprises a unit user water supply network, a unit user intermediate data collector, a unit user high data collector and a unit user communication module; the unit user water supply pipe network is provided with a plurality of unit user monitoring stations, each unit user monitoring station is provided with at least three unit user monitoring pipes, each unit user monitoring pipe is provided with a unit user flow detection piece and a unit user pressure detection piece, the unit user flow detection piece and the unit user pressure detection piece in one unit user monitoring station are respectively connected with a unit user data collector, one unit user intermediate data collector is connected with a unit user data collector of at least one unit user monitoring station, one unit user high-grade data collector is at least connected with one unit user intermediate data collector, and the unit user high-grade data collector is connected with a cloud server through a unit user communication module.
The utility model discloses with the water supply network in whole city according to region and functional partitioning, monitor respectively every water supply network, and each water supply network is the parallel monitoring relation, the cloud ware is handled respectively, do not need to upload data step by step between each water supply network, the transmission efficiency of data has been improved, the efficiency of cloud ware to data processing has also been improved, can learn which water supply network appears exploding the pipe more rapidly and pertinence, and let maintainer arrive at the scene through mobile terminal and handle as early as possible, the valve on the pipeline that will explode the pipe is closed, avoid the water source extravagant.
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In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a control schematic diagram of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without any creative effort belong to the protection scope of the present invention.
Example (b):
an intelligent water service pipe burst intelligent analysis system comprises a water supply network monitoring unit, a cloud server, an upper computer and a mobile terminal, wherein the water supply network monitoring unit comprises a water supply network monitoring subunit, a district water supply network monitoring subunit, a community water supply network monitoring subunit and a unit user water supply network monitoring subunit; the system comprises a water supply network monitoring subunit, a district water supply network monitoring subunit, a community water supply network monitoring subunit and a unit user water supply network monitoring subunit, wherein the community water supply network monitoring subunit and the unit user water supply network monitoring subunit are arranged in parallel and are in communication connection with a cloud server through respective communication modules respectively, an upper computer is connected with the cloud server through a network module, a mobile terminal is in communication with the cloud server, receives an instruction sent by the upper computer of the cloud server, and also can acquire real-time pipe network monitoring site information through accessing the cloud server.
Specifically, the water supply network monitoring subunit comprises a water supply network I, a medium-level data collector I, a high-level data collector I and a communication module I, wherein the water supply network I supplies water to a water supply network in the jurisdiction of the water supply network monitoring subunit in the jurisdiction; be equipped with a plurality of monitoring sites I on the water supply network I, every monitoring site I all is equipped with at least three monitoring pipe way I, all install flow detection spare I and pressure detection spare I on every monitoring pipe way I, flow detection spare I and pressure detection spare I in a monitoring site I are connected with data collection station I respectively, a medium level data collection station I is connected with at least one monitoring site I's data collection station I, a senior data collection station I is connected with a medium level data collection station I at least, senior data collection station I passes through communication module I and is connected with cloud server. The data acquisition unit I, the middle-level data acquisition unit I and the high-level data acquisition unit I all adopt LTCC-303. The model of the flow detection part I is LTLL-100 series, the model of the pressure detection part I is LTYL-016 series, and the communication module I adopts LTTX-4G.
The monitoring pipeline I is arranged in a cloud server, the pressure of the flowing monitoring pipeline I is reduced, the flow rate of the flowing monitoring pipeline I is increased, the pressure of the flowing monitoring pipeline I is reduced, the flow rate of the flowing monitoring pipeline I is reduced, the pipe explosion of the flowing monitoring pipeline I can be known, the cloud server sends the monitoring site information of the pipe explosion to an upper computer for alarm reminding, and the upper computer obtains relevant monitoring information from the cloud server and sends the relevant monitoring information to the cloud server for storage after processing And the control instruction can be sent to the cloud server, and the cloud server sends the control instruction to the corresponding execution equipment.
The district water supply network monitoring subunit comprises a district water supply network, a district middle-level data collector, a district high-level data collector and a district communication module, wherein the district water supply network supplies water to a community water supply network of the community water supply network monitoring subunit; the system comprises a plurality of district monitoring stations arranged on a district water supply network, wherein each district monitoring station is provided with at least three district monitoring pipelines, each district monitoring pipeline is provided with a district flow detection piece and a district pressure detection piece, the district flow detection piece and the district pressure detection piece in one district monitoring station are respectively connected with a district data collector, one district middle-level data collector is connected with at least one district data collector of the district monitoring station, one district high-level data collector is at least connected with one district middle-level data collector, and the district high-level data collector is connected with a cloud server through a district communication module. And the district data collector, the district middle-level data collector and the district high-level data collector all adopt LTCC-303. The model of the traffic detection part in the district is LTLL-100 series, the model of the pressure detection part in the district is LTYL-016 series, and the communication module in the district adopts LTTX-4G.
The district flow detection piece and the district pressure detection piece transmit detected information to the district data collector, the district data collector transmits data to the district middle-level data collector, the district middle-level data collector transmits the data to the district high-level data collector, the district high-level data collector uploads the data to the cloud server through the district communication module, the cloud server processes the monitoring information of each monitoring station, compares the monitoring information, sorts the monitoring information according to the size of the monitoring information, if the pressure and the flow rate on the district monitoring pipeline of water intake in one monitoring station are reduced and increased, the pressure and the flow rate on the circulating district monitoring pipeline are increased, and the pressure and the flow rate on the flowing district monitoring pipeline are reduced, the explosion of the circulating district monitoring pipeline can be known, the cloud server sends the monitoring station information of the explosion to the host computer for warning, the upper computer obtains relevant monitoring information from the cloud server, processes the relevant monitoring information, sends the relevant monitoring information to the cloud server for storage, and can send a control instruction to the cloud server, and the cloud server sends the control instruction to corresponding execution equipment.
The community water supply network monitoring subunit comprises a community water supply network, a community medium-grade data collector, a community high-grade data collector and a community communication module, wherein the community water supply network supplies water to unit users of the unit user water supply network monitoring subunit; be equipped with a plurality of community monitoring sites on the water supply pipe network of community, every community monitoring site all is equipped with at least three community monitoring pipe way, all install community flow detection spare and community pressure detection spare on every community monitoring pipe way, community flow detection spare and community pressure detection spare in a community monitoring site are connected with community data collection station respectively, a community intermediate data collection station is connected with the community data collection station of at least one community monitoring site, a community advanced data collection station is connected with a community intermediate data collection station at least, community advanced data collection station passes through the community communication module and is connected with cloud ware. The community data collector, the community middle-level data collector and the community high-level data collector all adopt LTCC-303. The model of the community flow detection part is LTLL-100 series, the model of the community pressure detection part is LTYL-016 series, and the community communication module adopts LTTX-4G.
The community flow detection piece and the community pressure detection piece transmit detected information to a community data collector, the community data collector transmits data to a community medium-level data collector, the community medium-level data collector transmits the data to a community high-level data collector, the community high-level data collector uploads the data to a cloud server through a community communication module, the cloud server processes monitoring information of each monitoring station, compares the monitoring information, sorts the monitoring information according to the size of the monitoring information, if the pressure on a community monitoring pipeline for water inflow in one monitoring station is reduced and the flow rate is increased, the pressure on the circulating community monitoring pipeline is reduced and the flow rate is increased, the pressure on the flowing community monitoring pipeline is reduced and the flow rate is reduced, the pipe burst of the circulating community monitoring pipeline can be known, and the cloud server sends the monitoring station information for pipe burst to an upper computer for warning, the upper computer obtains relevant monitoring information from the cloud server, processes the relevant monitoring information, sends the relevant monitoring information to the cloud server for storage, and can send a control instruction to the cloud server, and the cloud server sends the control instruction to corresponding execution equipment.
The unit user water supply network monitoring subunit comprises a unit user water supply network, a unit user intermediate data collector, a unit user high data collector and a unit user communication module; the unit user water supply pipe network is provided with a plurality of unit user monitoring stations, each unit user monitoring station is provided with at least three unit user monitoring pipes, each unit user monitoring pipe is provided with a unit user flow detection piece and a unit user pressure detection piece, the unit user flow detection piece and the unit user pressure detection piece in one unit user monitoring station are respectively connected with a unit user data collector, one unit user intermediate data collector is connected with a unit user data collector of at least one unit user monitoring station, one unit user high-grade data collector is at least connected with one unit user intermediate data collector, and the unit user high-grade data collector is connected with a cloud server through a unit user communication module. The unit user data collector, the unit user middle-grade data collector and the unit user high-grade data collector all adopt LTCC-303. The model of the unit user flow detection part is LTLL-100 series, the model of the unit user pressure detection part is LTYL-016 series, and the unit user communication module adopts LTTX-4G.
The unit user flow detection piece and the unit user pressure detection piece transmit detected information to the unit user data collector, the unit user data collector transmits data to the unit user middle-level data collector, the unit user middle-level data collector transmits the data to the unit user high-level data collector, the unit user high-level data collector uploads the data to the cloud server through the unit user communication module, the cloud server processes monitoring information of each monitoring station, compares the monitoring information, sorts the monitoring information according to the size of the monitoring information, if the pressure and the flow rate on a unit user monitoring pipeline of water inflow in one monitoring station are reduced, the pressure and the flow rate on a circulating unit user monitoring pipeline are increased, and the pressure and the flow rate on the flowing unit user monitoring pipeline are reduced, so that the circulating unit user monitoring pipeline can be known to have pipe burst, the cloud server sends monitoring site information of pipe explosion to the upper computer for alarm reminding, the upper computer obtains relevant monitoring information from the cloud server, processes the monitoring information and sends the monitoring information to the cloud server for storage, and control instructions can be sent to the cloud server, and the cloud server sends the monitoring information to corresponding execution equipment.
In the description herein, references to the description of "one embodiment," "an example," "a specific example" or the like are intended to mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (8)

1. The utility model provides an wisdom water utilities intelligent analysis system that explodes pipe which characterized in that: including water supply pipe network monitoring unit, cloud ware and host computer, water supply pipe network monitoring unit, including water supply pipe network, medium level data collection station, senior data collection station and communication module, be equipped with a plurality of monitoring sites on water supply pipe network, every monitoring site all is equipped with at least three monitoring pipe way, all install flow detection spare and pressure detection spare on every monitoring pipe way, flow detection spare and pressure detection spare in a monitoring site are connected with data collection station respectively, a medium level data collection station is connected with the data collection station of at least one monitoring site, a senior data collection station is connected with a medium level data collection station at least, senior data collection station passes through communication module and is connected with cloud ware, the host computer passes through network module and is connected with cloud ware.
2. The intelligent analysis system for intelligent water affair pipe explosion according to claim 1, wherein: the cloud server is also communicated with the mobile terminal.
3. The intelligent analysis system for intelligent water affair pipe explosion according to claim 1, wherein: the flow detection piece is a flowmeter, and the pressure detection piece is a pressure gauge.
4. The intelligent analysis system for intelligent water affair pipe explosion according to claim 1, wherein: the water supply network monitoring unit comprises a water supply network monitoring subunit, a district water supply network monitoring subunit, a community water supply network monitoring subunit and a unit user water supply network monitoring subunit; the water supply network monitoring subunit, the district water supply network monitoring subunit, the community water supply network monitoring subunit and the unit user water supply network monitoring subunit are arranged in parallel and are in communication connection with the cloud server through respective communication modules.
5. The intelligent analysis system for intelligent water affair pipe explosion according to claim 4, wherein: the water supply network monitoring subunit comprises a water supply network I, a middle-level data collector I, a high-level data collector I and a communication module I, wherein the water supply network I supplies water to a water supply network in the jurisdiction of the water supply network monitoring subunit in the jurisdiction; be equipped with a plurality of monitoring sites I on the water supply network I, every monitoring site I all is equipped with at least three monitoring pipe way I, all install flow detection spare I and pressure detection spare I on every monitoring pipe way I, flow detection spare I and pressure detection spare I in a monitoring site I are connected with data collection station I respectively, a medium level data collection station I is connected with at least one monitoring site I's data collection station I, a senior data collection station I is connected with a medium level data collection station I at least, senior data collection station I passes through communication module I and is connected with cloud server.
6. The intelligent analysis system for intelligent water affair pipe explosion according to claim 4, wherein: the district water supply network monitoring subunit comprises a district water supply network, a district middle-level data collector, a district high-level data collector and a district communication module, wherein the district water supply network supplies water to a community water supply network of the community water supply network monitoring subunit; the system comprises a plurality of district monitoring stations arranged on a district water supply network, wherein each district monitoring station is provided with at least three district monitoring pipelines, each district monitoring pipeline is provided with a district flow detection piece and a district pressure detection piece, the district flow detection piece and the district pressure detection piece in one district monitoring station are respectively connected with a district data collector, one district middle-level data collector is connected with at least one district data collector of the district monitoring station, one district high-level data collector is at least connected with one district middle-level data collector, and the district high-level data collector is connected with a cloud server through a district communication module.
7. The intelligent analysis system for intelligent water affair pipe explosion according to claim 4, wherein: the community water supply network monitoring subunit comprises a community water supply network, a community medium-grade data collector, a community high-grade data collector and a community communication module, wherein the community water supply network supplies water to unit users of the unit user water supply network monitoring subunit; be equipped with a plurality of community monitoring sites on the water supply pipe network of community, every community monitoring site all is equipped with at least three community monitoring pipe way, all install community flow detection spare and community pressure detection spare on every community monitoring pipe way, community flow detection spare and community pressure detection spare in a community monitoring site are connected with community data collection station respectively, a community intermediate data collection station is connected with the community data collection station of at least one community monitoring site, a community advanced data collection station is connected with a community intermediate data collection station at least, community advanced data collection station passes through the community communication module and is connected with cloud ware.
8. The intelligent analysis system for intelligent water affair pipe explosion according to claim 4, wherein: the unit user water supply network monitoring subunit comprises a unit user water supply network, a unit user intermediate data collector, a unit user high data collector and a unit user communication module; the unit user water supply pipe network is provided with a plurality of unit user monitoring stations, each unit user monitoring station is provided with at least three unit user monitoring pipes, each unit user monitoring pipe is provided with a unit user flow detection piece and a unit user pressure detection piece, the unit user flow detection piece and the unit user pressure detection piece in one unit user monitoring station are respectively connected with a unit user data collector, one unit user intermediate data collector is connected with a unit user data collector of at least one unit user monitoring station, one unit user high-grade data collector is at least connected with one unit user intermediate data collector, and the unit user high-grade data collector is connected with a cloud server through a unit user communication module.
CN202023346614.5U 2020-12-30 2020-12-30 Intelligent analysis system for intelligent water affair pipe explosion Active CN214332342U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112560291A (en) * 2020-12-30 2021-03-26 郑州力通水务有限公司 Wisdom water utilities water supply pipe network explodes a tub analytic system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112560291A (en) * 2020-12-30 2021-03-26 郑州力通水务有限公司 Wisdom water utilities water supply pipe network explodes a tub analytic system

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