Design of a Zero-Power Forest Fire Suppression Product Interaction System
摘要
With global climate change and increased industrial activities, the frequency of forest fires has risen, posing significant threats to forest ecosystems and socio-economic development. However, most existing forest fire suppression equipment relies on manual operation, resulting in delayed response times and difficulty in effectively addressing early-stage fires. To solve this problem, this paper designs a zero-power automatic forest fire suppression product and interaction system based on temperature-sensitive fire detection tube technology. This system can autonomously suppress fires and monitor fire data. The device consists of temperature-sensitive fire detection tubes, pressure valves, fire suppressant injection systems, monitoring probes, and wireless data transmission components. It can automatically trigger fire suppression mechanisms in the early stages of a fire by detecting changes in environmental temperature and gas concentration, while transmitting fire data via wireless communication to the corresponding interaction platform, forming an integrated system. The system is equipped with an integrated user interface that provides visualized fire data and supports dynamic map tracking, allowing users to monitor the fire’s progress in real-time. Users can remotely control the suppression equipment through terminal devices to trigger coordinated spraying, forming a fire suppression network. This product will significantly improve the efficiency of early-stage forest fire suppression and provide a new approach for global forest fire prevention and control.