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基于光纤感温的智能防灭火控制系统研究

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针对当前多数煤矿胶带运输防灭火系统存在的主要靠传统的人工巡检测温及手动控制工作劳动强度大、人员数量多、系统运行稳定性不高等问题,提出了一种基于光纤感温的智能防灭火无人值守控制系统研究.实现了煤矿皮带运输过程中多源火灾相关系统监测信息的统一动态采集、融合分析和预测预警、智能联动、统一控制.当监测区域发生火灾隐患时,智能防灭火控制系统能实现与防灭火系统的融合联动灭火功能,减轻了胶带运输系统人工巡检劳动强度、有效降低了火灾事故风险、全面提升了煤矿安全、生产管控能力与信息化水平,为煤矿安全生产活动带来显著的经济效益和社会效益,对煤矿企业智慧化矿山建设具有重要的积极意义.
Research on intelligent fire prevention and control system based on optical fiber temperature sensing
Based on the experience of designing and implementing fiber optic temperature sensing based fire prevention and extinguishing systems in recent years,a research on an intelligent unmanned control system for fire prevention and extinguishing based on fiber optic temperature sensing is proposed to address the problems of traditional manual inspection,temperature measurement and control,high labor intensity,large number of personnel,and unstable system operation in most coal mine belt transportation fire prevention and extinguishing systems.It realizes the unified dynamic collection,integrated analysis,prediction and early warning,intelligent linkage and unified control of monitoring information of multi-source fire-related systems in the process of coal mine belt transportation.When fire hazards occur in the monitoring area,it realizes the integrated linkage fire extinguishing function with the fire prevention and fire extinguishing system.It has reduced the labor intensity of manual inspection of the belt transpor-tation system,effectively reduced the risk of fire accidents,comprehensively improved the ability of coal mine safety and production control and informatization,brought significant economic and social benefits to coal mine safety production activities,and achieved good application results.It has a positive and impor-tant significance for the intelligent mine construction of coal mining enterprises.

fire preventiontape transportfiber temperature sensingunattendedintelligent control

万勇

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中煤科工集团重庆研究院有限公司,重庆 400039

煤矿灾害防控全国重点实验室,重庆 400037

防灭火监测监控 胶带运输 光纤感温 无人值守 智能化控制

2024

工业仪表与自动化装置
陕西鼓风机(集团)有限公司

工业仪表与自动化装置

CSTPCD
影响因子:0.393
ISSN:1000-0682
年,卷(期):2024.(6)