Application of Internet of Things Technology in Underground Pipeline Monitoring

With the rapid development of today’s world, my country’s energy structure has also undergone corresponding reforms. Water, electricity, and gas have now become daily necessities for every family and business. Traditional monitoring relies entirely on human detection, is not timely, has low efficiency, and has high maintenance costs, which greatly hinders the informatization process of the water and electricity industry. Moreover, due to insufficient monitoring of underground pipelines, many pipelines cannot be discovered by managers when they have minor problems in the early stage. Only when major faults occur later will they be discovered by the public, who will notify the corresponding maintenance personnel to deal with them. This is often During the maintenance period, water, power, and gas outages will occur on the street, causing great inconvenience to the public’s daily life. In addition, the pipeline monitoring data cannot be collected in time, and the new pipeline laying project will be carried out according to its own design. This will cause the problem of repeated digging on a certain section of the route, causing serious damage to the road surface on that section of the road, and will also bring some resources. The problem of waste.

DTU/Edge Gateway/Plate-forme IoT/Module de passerelleDTU/Edge Gateway/Plate-forme IoT/Module de passerelle

However, with the support of Internet of Things technology, these problems in underground pipeline monitoring will be solved. Through the on-site flow meter, pressure transmitter, differential pressure transmitter, temperature transmitter and other equipment arranged on the pipeline, real-time data collection and equipment control of the pipeline can be realized in time for abnormal conditions of the pipeline. Pipelines are treated promptly, and there is no need to wait until the problem becomes serious and is discovered by the public before repairs are carried out.

Daily monitoring data passes through the Zongheng Intelligent Control RTU terminal and uses 4G/3G/2G wireless transmission methods to transmit the data to the monitoring center through the Internet. At the same time, unnecessary data can be filtered to reduce the transmission pressure and allow abnormal data to be It is transmitted to the monitoring center immediately. Using wireless data transmission can not only monitor data in real time, but also save a lot of manpower and material resources, making it easy to deploy and maintain.

The monitoring center analyzes and categorizes the received data in real time based on the data processing and analysis servers such as the dispatch center SCADA server, front-end server, and WEB server, and displays the necessary parts to the WEB, so that the data obtained by the staff is accurate in real time and solves problems. be resolved in a timely manner.

Through this set of solutions, monitoring and early warning of water pipe network pressure, flow, water quality, pumping stations, etc. can be realized; monitoring and early warning of temperature, pressure, flow, heat exchange stations, etc. of thermal pipe network can be realized; pressure, flow, temperature, etc. of gas pipe network can be realized. Monitoring and early warning of gas concentration, pressure regulating station, etc.; monitoring and early warning of liquid level, water quality, meteorology, etc. in the drainage pipe network, etc., so that underground pipelines can operate under stable conditions for a long time.

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