CN217765080U - Water meter and pipe network running state monitoring system - Google Patents

Water meter and pipe network running state monitoring system Download PDF

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Publication number
CN217765080U
CN217765080U CN202222017973.9U CN202222017973U CN217765080U CN 217765080 U CN217765080 U CN 217765080U CN 202222017973 U CN202222017973 U CN 202222017973U CN 217765080 U CN217765080 U CN 217765080U
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data
module
water meter
pipe network
acquisition
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CN202222017973.9U
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李奡
罗林聪
刘秉承
钟明松
王刚
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Chongqing Academy of Metrology and Quality Inspection
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Chongqing Academy of Metrology and Quality Inspection
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Abstract

The utility model discloses a water meter and pipe network running state monitoring system in the technical field of pipe network detection, which comprises a data acquisition unit, a data processing unit and a data application unit; the data acquisition unit comprises a flow acquisition module, a pressure acquisition module, a water quality acquisition module, a temperature acquisition module and a remote intelligent water meter; the data processing unit comprises a data transmission module, a data storage module, a data analysis module and a data conversion module, and the data application unit comprises a data display module, a data operation module and an alarm module; the operation method comprises the following steps: 001. collecting data; 002. processing data; 003. displaying and analyzing data; 004. judging whether to process according to the analysis result; the utility model discloses compare in prior art's beneficial effect for carrying out the subregion management to the area, through long-range receipt data, carry out the analysis contrast to the data received, the discovery problem is timely, overhauls in time, compares current manual work and patrols and examines and uses manpower more, has appeared the problem and has just gone to overhaul, need not patrol and examine.

Description

Water meter and pipe network running state monitoring system
Technical Field
The utility model relates to a pipe network detects technical field, specifically indicates water gauge and pipe network running state monitoring system.
Background
In recent years, the urbanization process of China is accelerated continuously, and as an important component in urbanization construction, the quality of municipal water supply networks has important significance for urban development. The urban water supply system plays an important role in urban public utilities in China and is the basis of urban development. Meanwhile, the urban water supply network also gradually becomes an important embodiment of urban civilization and modernization level, but compared with developed countries, the leakage rate of the urban water supply network is higher.
According to the information of the department of construction, the average leakage rate of the pipe network of the Chinese city in 2046 years reaches 15.3%, the leakage rate of the pipe network of partial cities exceeds 25%, and particularly the leakage rate of the pipe network of partial cities in the northern region reaches even 40%. The problems of aging of water supply pipelines, irregular construction, improper pipe selection and the like are all reasons for leakage of water supply.
Traditional maintenance adopts the workman regularly to patrol and examine more, regularly patrols and examines the discovery problem that can not be timely to carry out many times when not having the problem and patrol and examine and consume the manpower, improved the human cost. At present, DMA partition management is mostly adopted for town pipe network control, namely, regional metering management is adopted for selecting an independent water supply region, and the leakage level is determined by utilizing night minimum flow analysis.
In summary, the applicant provides a water meter and pipe network running state monitoring system based on DMA partition.
SUMMERY OF THE UTILITY MODEL
In view of the water gauge and pipe network that prior art exists detect consume the manpower, problem discovery untimely problem, the utility model discloses technical scheme provides the water gauge and the pipe network running state monitoring system who has solved above-mentioned problem.
In order to realize the technical purpose, the utility model discloses a technical scheme as follows:
a water meter and pipe network running state monitoring system comprises a data acquisition unit, a data processing unit and a data application unit; the data acquisition unit comprises a flow acquisition module, a pressure acquisition module, a temperature acquisition module, a water quality acquisition module and a remote intelligent water meter; the data processing unit comprises a data transmission module, a data storage module, a data analysis module and a data conversion module; the data application unit comprises a data display module, a data operation module and an alarm module; the flow collection module, the pressure collection module, the remote intelligent water meter, the temperature collection module and the water quality collection module are all connected with the data transmission module, the data transmission module is connected with the data conversion module, the data conversion module is connected with the data storage module, the data analysis module and the data display module, and the data display module is connected with the data storage module, the data analysis module, the data operation module and the alarm module.
Flow data that will gather through data transmission module, pressure data water gauge reading, intraductal water temperature and quality of water data transmission to data conversion module, we can carry out audio-visual monitoring to data from control terminal's data display module after the data conversion, data analysis module also can compare with the early warning threshold value of settlement according to received multiple data, make the processing whether send alarm signal, we can confirm whether need send the staff to overhaul according to whether sending alarm signal, need not patrol and examine, manpower and materials are saved, running state is more directly perceived, find problem and overhaul more timely.
Further limiting, the data acquisition unit, the data processing unit and the data application unit are used as a DMA partition to monitor by taking a cell as a unit; the range is defined into a cell which is used as a DMA monitoring partition, so that the method can be more accurate, the route is closer, and the found problems can be solved in time.
Further limited, the flow acquisition module is an ultrasonic flowmeter and is installed on a main water supply pipe of each building.
Further limiting, the pressure acquisition module is a pressure transmitter, and the remote intelligent water meter, the water quality acquisition module and the temperature acquisition module are all installed on a main water supply pipe of each building.
Further, the data transmission module transmits data through a 4G, 5G, wifi or GPRS mobile network.
The operation method of the water meter and pipe network operation state monitoring system comprises the following steps:
001. the flow acquisition module, the pressure acquisition module, the water quality acquisition module, the temperature acquisition module and the remote intelligent water meter transmit the acquired data to the data transmission module and transmit the data once every 20 minutes;
002. the data transmission module transmits the data to the data conversion module after receiving the data to be converted into data which can be stored and observed, and the converted data is stored in the data storage module and simultaneously transmitted to the data display module to be read and observed by people;
003. the data display module also transmits the converted data to the data analysis module for analysis, the analyzed content is also displayed from the data display module, and a plurality of measured data such as flow, water pipe pressure, water meter reading and the like are compared and analyzed with a set early warning threshold value;
004. the analysis result comprises water use data analysis and rest data analysis, the water use data analysis time is from five morning points to two morning points, the rest data analysis time is from two morning points to five morning points, the water use data analysis is that the water use data exceeds a set early warning threshold value by 10% and lasts for more than ten minutes, an early warning signal is sent to an alarm module to send out an early warning, and a person is informed to carry out maintenance; the data operation module is used for functions of data restoration, data calling and the like after alarming.
The utility model discloses compare in prior art's beneficial effect for carrying out the subregion management to the water supply network, through long-range real-time supervision data to water gauge and pipe network, handle the data received, analysis water gauge metering state and pipe network running state find that the measurement is inaccurate or pipe network leakage scheduling problem is timely, compare current manual work and patrol and examine more accurate high-efficient, labour saving and time saving, the problem has appeared just going to overhaul, need not patrol and examine.
The utility model discloses compare in prior art's beneficial effect for carrying out the subregion management to the area, through long-range receipt data, carry out the analysis contrast to the data received, the discovery problem is timely, overhauls in time, compares current manual work and patrols and examines and more uses manpower sparingly, has appeared the problem and has just gone to overhaul, need not patrol and examine.
Drawings
Fig. 1 is a working principle diagram of the present invention.
The corresponding labels in the figures are: the intelligent water meter monitoring system comprises a data acquisition unit 1, a flow acquisition module 11, a pressure acquisition module 12, a remote intelligent water meter 13, a temperature acquisition module 14, a water quality acquisition module 15, a data processing unit 2, a data transmission module 21, a data storage module 22, a data analysis module 23, a data conversion module 24, a data application unit 3, a data display module 31, a data operation module 32 and an alarm module 33.
Detailed Description
In order to make the technical solution of the present invention more comprehensible to those skilled in the art, the present invention is further described with reference to the accompanying drawings and examples.
Example (b):
as shown in fig. 1, a system for monitoring the running states of a water meter and a pipe network comprises a data acquisition unit 1, a data processing unit 2 and a data application unit 3; the data acquisition unit 1 comprises a flow acquisition module 11, a pressure acquisition module 12, a temperature acquisition module 14, a water quality acquisition module 15 and a remote intelligent water meter 13; the data processing unit 2 comprises a data transmission module 21, a data storage module 22, a data analysis module 23 and a data conversion module 24; the data application unit 3 comprises a data display module 31, a data operation module 32 and an alarm module 33; the flow acquisition module 11, the pressure acquisition module 12, the remote intelligent water meter 13, the temperature acquisition module 14 and the water quality acquisition module 15 are all connected with the data transmission module 21, the data transmission module 21 is connected with the data conversion module 24, the data conversion module 24 is connected with the data storage module 22, the data analysis module 23 and the data display module 31, and the data display module 31 is connected with the data storage module 22, the data analysis module 23, the data operation module 32 and the alarm module 33; the data acquisition unit 1, the data processing unit 2 and the data application unit 3 are monitored by taking a cell as a DMA partition; the flow acquisition module 11 is an ultrasonic flow meter, and the flow acquisition module 11 is arranged on a main water supply pipe of each building; the pressure acquisition module 12 is a pressure transmitter, and the pressure transmitter, the temperature acquisition module 14, the water quality acquisition module 15 and the remote intelligent water meter 13 are all arranged on a main water supply pipe of each building; the data transmission module 21 transmits data through a 4G, 5G, wifi or GPRS mobile network, the temperature acquisition module 14 adopts a pt100 temperature sensor, and the water quality acquisition module 15 is a water quality monitoring system which detects water quality including but not limited to turbidity, residual chlorine, pH, conductivity, dissolved oxygen sensors and matched multi-parameters in the prior art.
The collected flow data, pressure data, water meter reading, water temperature and water quality data in the pipe are transmitted to the data conversion module 24 through the data transmission module 21, after data conversion, data can be visually monitored from the data display module 31 of the control terminal 3, the data analysis module 23 can also compare various received data with a set early warning threshold value to process whether an alarm signal is sent out, and whether a human hand needs to be dispatched to overhaul or not can be determined according to whether the alarm signal is sent out or not, so that manpower and material resources are saved, the operation state is more visual, problems are found and overhaul is more timely; the range is divided into a cell which is used as a DMA monitoring subarea, so that the DMA monitoring subarea can be more accurate, the route is closer, and the discovered problems can be solved in time.
The operation method of the water meter and pipe network operation state monitoring system comprises the following steps:
001. the flow acquisition module 11, the pressure acquisition module 12, the remote intelligent water meter 13, the water quality acquisition module 15 and the temperature acquisition module 14 transmit acquired data to the data transmission module 21, and the data is transmitted once every 20 minutes;
002. after receiving the data, the data transmission module 21 transmits the data to the data conversion module 24 for conversion into data which can be stored and read for observation, and the converted data is stored in the data storage module 22 and simultaneously transmitted to the data display module 31 for reading and observation;
003. the data display module 31 also transmits the converted data to the data analysis module 23 for analysis, the analyzed content is also displayed on the data display module 31, and a plurality of measured data such as flow, water pipe pressure, water meter reading and the like are compared with a set early warning threshold value for analysis;
004. the analysis result is divided into water use data analysis and rest period data analysis, the water use data analysis time is from five morning to two morning, the rest period data analysis time is from two morning to five morning, the water use data analysis is that the water use data exceeds the preset early warning threshold value by 10% and lasts for more than ten minutes, the early warning signal is sent to the warning module 33 to send out early warning, the personnel are informed to carry out maintenance, if all the data are within the error range of the preset early warning threshold value, the system normally operates, the data analysis of the rest period is to set a maximum flow value in unit time, if the night data flow in unit time exceeds the preset maximum flow value, the personnel are required to be informed to carry out investigation and maintenance, the system normally operates if the data do not exist, and the maximum flow value in unit time of the rest period is determined by multiplying the number of households in the previous district and the maximum night water consumption of each household per hour; the data operation module 32 is used for resetting the data after alarm processing, calling out the data and other functions, the data takes months as units, and the data of the previous month is cleared at the beginning of each month to release the storage space.
The utility model discloses compare in prior art's beneficial effect for carrying out the subregion management to the water supply network, through long-range real-time supervision data to water gauge and pipe network, handle the data received, analysis water gauge metering state and pipe network running state find that the measurement is inaccurate or pipe network leakage scheduling problem is timely, compare current manual work and patrol and examine more accurate high-efficient, labour saving and time saving, the problem has appeared just going to overhaul, need not patrol and examine.
It is right above the utility model provides a water gauge and pipe network running state monitoring system has carried out detailed introduction, and the description of specific embodiment is only used for helping understanding the utility model discloses a method and core thought thereof. It should be noted that, for those skilled in the art, without departing from the principle of the present invention, the present invention can be further modified and modified, and such modifications and modifications also fall within the scope of the appended claims.

Claims (5)

1. A water meter and pipe network running state monitoring system is characterized in that: the system comprises a data acquisition unit, a data processing unit and a data application unit;
the data acquisition unit comprises a flow acquisition module, a pressure acquisition module, a temperature acquisition module, a water quality acquisition module and a remote intelligent water meter;
the data processing unit comprises a data transmission module, a data storage module, a data analysis module and a data conversion module;
the data application unit comprises a data display module, a data operation module and an alarm module;
the flow collection module, the pressure collection module, the remote intelligent water meter, the temperature collection module and the water quality collection module are all connected with the data transmission module, the data transmission module is connected with the data conversion module, the data conversion module is connected with the data storage module, the data analysis module and the data display module, and the data display module is connected with the data storage module, the data analysis module, the data operation module and the alarm module.
2. The water meter and pipe network operating condition monitoring system of claim 1, wherein: the data acquisition unit, the data processing unit and the data application unit are used as a DMA partition to monitor by taking a cell as a unit.
3. The water meter and pipe network operating condition monitoring system of claim 1, wherein: the flow acquisition module is an ultrasonic flow meter and is installed on a main water supply pipe of each building.
4. The water meter and pipe network operating condition monitoring system of claim 1, wherein: the pressure acquisition module is a pressure transmitter, and the pressure transmitter, the remote intelligent water meter, the water quality acquisition module and the temperature acquisition module are all installed on a main water supply pipe of each building.
5. The water meter and pipe network operating condition monitoring system of claim 1, wherein: the data transmission module transmits data through a 4G, 5G, wifi or GPRS mobile network.
CN202222017973.9U 2022-08-02 2022-08-02 Water meter and pipe network running state monitoring system Active CN217765080U (en)

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CN202222017973.9U CN217765080U (en) 2022-08-02 2022-08-02 Water meter and pipe network running state monitoring system

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Application Number Priority Date Filing Date Title
CN202222017973.9U CN217765080U (en) 2022-08-02 2022-08-02 Water meter and pipe network running state monitoring system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116734969A (en) * 2023-06-16 2023-09-12 深圳乐租宝科技有限公司 Intelligent anomaly monitoring method for water meter metering data

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116734969A (en) * 2023-06-16 2023-09-12 深圳乐租宝科技有限公司 Intelligent anomaly monitoring method for water meter metering data
CN116734969B (en) * 2023-06-16 2024-02-20 深圳乐租宝科技有限公司 Intelligent anomaly monitoring method for water meter metering data

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