齐俊铭, 王凯, 王志静, 焦志远, 吴建宾, 王健. 转龙湾煤矿矿井智能化通防系统与信息平台构建[J]. 煤矿安全, 2022, 53(9): 212-220.
    引用本文: 齐俊铭, 王凯, 王志静, 焦志远, 吴建宾, 王健. 转龙湾煤矿矿井智能化通防系统与信息平台构建[J]. 煤矿安全, 2022, 53(9): 212-220.
    Construction of mine intelligent ventilation and prevention system and information platform for Zhuanlongwan Coal Mine[J]. Safety in Coal Mines, 2022, 53(9): 212-220.
    Citation: Construction of mine intelligent ventilation and prevention system and information platform for Zhuanlongwan Coal Mine[J]. Safety in Coal Mines, 2022, 53(9): 212-220.

    转龙湾煤矿矿井智能化通防系统与信息平台构建

    Construction of mine intelligent ventilation and prevention system and information platform for Zhuanlongwan Coal Mine

    • 摘要: 以转龙湾煤矿应用实践探讨通防系统的构建方法。提出了通风网络关键参数精准感知技术,通过传感器优化布置,运用最少监测点实现全矿井通风阻力路线的关联参数分析;提取了安全监测监控系统的通防信息,开发了主要通风机、局部通风机、通风设施的远程软件模块,模块融合了束管监测、粉尘监测、注浆监测、人员定位系统等功能模块;提出了通防系统状态智能分析技术,建立了矿井通风网络三维仿真模型,实现了通风网络实时解算、通防参数可视化展现和趋势分析、通风异常诊断与预警;将通风、瓦斯、火灾、粉尘等通防安全信息有机融合,提出了多元异构信息融合的矿井通防系统分阶管控模式,研发了矿井智能通防和应急管控平台。通过现场实践,验证了相关参数研判与联动调控模型,为矿井智能通防系统建设提供了应用经验。

       

      Abstract: This paper discusses the construction method of ventilation and prevention system based on the application practice of Zhuanlongwan Coal Mine. A precise perception technology for key parameters of ventilation network is proposed. Through the optimal arrangement of sensors and the use of the least monitoring points, the correlation parameter analysis of the whole mine ventilation resistance route is achieved; the remote software modules of the main ventilator, local ventilator, and ventilation facilities are developed by extracting the ventilation and prevention information of the safety monitoring system, and the modules such as beam pipe monitoring, dust monitoring, grouting monitoring, and personnel positioning system are integrated; the intelligent analysis technology for the state of the ventilation and prevention system is proposed, and the three-dimensional simulation model of the mine ventilation network is established, which achieves the real-time calculation of the ventilation network, the visual display and trend analysis of the ventilation and prevention parameters, and the diagnosis and early warning of ventilation anomalies. By organically integrating ventilation, gas, fire, dust and other ventilation and prevention safety information, a hierarchical management and control mode of mine ventilation and prevention system based on multi heterogeneous information integration is proposed, a mine intelligent ventilation and prevention platform is developed, and mine emergency management and control platform is invented. Through field practice, the relevant parameter judgment and control model are verified, which provides application experience for the construction of mine intelligent ventilation and prevention system.

       

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