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Through online monitoring devices (data acquisition terminals, wireless networks, water quality and pressure meters, etc.), the operating status of the urban water supply and drainage system can be monitored in real time. By integrating these devices closely with geographic information systems (GIS), water management agencies and water supply and drainage facilities can be effectively combined in a visual manner, thereby creating an \"urban water IoT\" system. This system enables timely analysis and processing of large amounts of water-related data, generating insights that can serve as a basis for decision-making. It allows for a more precise and dynamic management of all aspects related to the production, management, and service of water systems, thus achieving a \"smart\" operational approach. Chongqing Qingtian Tekke Technology produces explosion-proof electromagnetic flowmeters, simplifying highly complex systems. Here, we will provide a brief introduction to the application platforms of AR in smart water plants, covering aspects such as platforms, smart water plants, 3D pipeline networks, secondary pressure boosting, users, and mobile devices. Smart water management does not involve any systematic divisions or boundaries; there are only functions and requirements. Functions are combined according to requirements; when functions are put together, they form a system, and when systems are combined, they form a platform. The core technology in this platform is AR and 3D technology – the question is whether these technologies can be shared on this platform. Moreover, any system needs to enable seamless operation across platforms, devices, and mobile terminals. The platform we have built is designed to eliminate information silos, achieving unity in terms of platform, portal, computing resources, database, permissions, and configuration management. The control system for 3D smart water plants is virtualized, allowing access to the parameters of each device.