Against the backdrop of accelerated urbanization and a surge in the number of motor vehicles, underground parking garages, as important parking spaces in cities, face severe air pollution and safety challenges. The carbon monoxide (CO) emitted by vehicle engines during operation is colorless, odorless, and highly toxic. It is prone to accumulate in relatively enclosed underground spaces. When the concentration exceeds the standard, it not only causes irreversible damage to the nervous and cardiovascular systems of drivers, passengers, and management personnel, but may even lead to poisoning and suffocation accidents. Meanwhile, the traditional management mode that relies on manual inspection or extensive ventilation cannot perceive changes in carbon monoxide concentration in real time, resulting in low ventilation efficiency and energy waste. Therefore, building a precise, intelligent, and real-time carbon monoxide monitoring system for underground garages is of great significance for ensuring personnel´s life and health, optimizing ventilation management, and reducing safety risks.
Introduction to Carbon Monoxide Monitoring System Equipment for Underground Garage
Building an intelligent environment monitoring and management system that integrates "environmental monitoring, remote alarm, device control, and intelligent monitoring service platform" can effectively ensure the safety of the garage environment. The system is based on various IoT communication technologies such as RS485, Ethernet, 4G, etc., and achieves centralized online monitoring of carbon monoxide concentration in different areas of the garage.
In addition, the system also has a fan start stop control management function, ensuring that when harmful gases exceed the standard, ventilation equipment can be quickly activated to reduce carbon monoxide concentration and ensure personnel safety. Not only does it improve efficiency in daily management, but it also provides timely remote operation and maintenance support in emergency situations, meeting the reliable control requirements of intelligent remote operation and maintenance. This provides effective technical support for the intelligence, visualization, automation, and interactivity of the new underground garage, making garage management more scientific and efficient, while also significantly improving the safety performance of the garage.
Construct a topology diagram
System Characteristics
Real time monitoring: Continuously monitor the concentration of carbon monoxide in the garage to ensure environmental safety.
High precision: The use of high-precision sensors has high sensitivity to ammonia and can respond quickly. Over limit alarm: When the safety threshold is exceeded, the system will sound and light an alarm to remind personnel to take measures. Over limit linkage: When the safety threshold is exceeded, the system will link the fan to record ventilation data: record monitoring data for post analysis and tracking. Remote monitoring: Through the communication module, remote monitoring and data transmission are achieved. Easy to install and maintain: The system design is simple and easy to install and maintain on a daily basis.