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主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
露天煤矿火区爆破技术现状与趋势
  • Title

    Status quo and trend of blasting technology in open-pit coal mine fire area

  • 作者

    王桂林费鸿禄刘秉轩郭纪委张建俊白润才

  • Author

    WANG Guilin;FEI Honglu;LIU Bingxuan;GUO Jiwei;ZHANG Jianjun;BAI Runcai

  • 单位

    国家能源集团 准能研究院辽宁工程技术大学 爆破技术研究院国家能源集团 神华哈尔乌素露天煤矿辽宁工程技术大学 土木工程学院辽宁工程技术大学 辽宁省高等学校 矿产资源开发利用技术及装备研究院

  • Organization
    Research Institute of CHN Energy Zhunneng Group Co., Ltd.
    Institute of Blasting Technology, Liaoning Technical University
    Shenhua Haerwusu Open-pit Mine of CHN Energy Co., Ltd.
    College of Civil Engineering, Liaoning Technical University
    Liaonig Academy of Mineral Resources Development and Utilization Technology and Equipment Research Institute
  • 摘要

    露天煤矿火区爆破威胁着爆破作业安全,近几十年来国内外工程技术人员在爆破器材耐热稳定性、高温火区温度场监测技术、高温爆破技术等方面已取得了一些成果,为火区爆破设计与施工提供了技术支持。然而,仍存在高温火区爆破技术瓶颈,如爆破施工过程炮孔温度实时监测、耐高温爆破器材研制、较大规模的火区爆破技术等。为实现露天煤矿火区安全高效爆破,对露天煤矿火区爆破技术进行总结与分析,提出了火区高效安全爆破技术体系和发展方向:构建火区温度场三维工程地质模型、利用光纤光栅进行全孔深测温、开发火区温度场实时监测系统,实现爆破施工过程温度监测与预警;优选耐高温炸药的抑制剂和闪点提高剂,优化炸药配方以及研发耐高温起爆器材;高温炮孔降温方法与隔热材料的选择及药包隔热防护装置设计;研制孔内装药超过温度安全阈值时的炸药失效装置;设计高温火区单向爆破网路;分区采用加强松动、松动爆破、弱松动爆破技术和“三小一长”相结合的施工方法;编制煤层高温火区爆破作业规程,实现火区爆破信息化与智能化。深入开展露天煤矿火区爆破关键技术研究,对提高露天煤矿火区爆破安全和效益具有重要的理论与工程价值。

  • Abstract

    Blasting in open-pit coal mine fire areas poses a threat to the safety of blasting operations. In recent decades, engineering and technical personnel at home and abroad have made some achievements in the heat stability of explosive materials, monitoring technology of high-temperature fire area temperature field, and high-temperature blasting technology, providing technical support for the design and construction of fire area blasting. However, there are still bottlenecks in high-temperature fire area blasting technology, such as intelligent monitoring of blast hole temperature during blasting construction, development of high temperature resistant explosive materials, and large-scale fire area blasting technology. In order to achieve safe and efficient blasting in open-pit coal mine fire areas, this paper summarizes and analyzes the blasting technology in open-pit coal mine fire areas, proposes a system and development direction for efficient and safe blasting technology in fire areas: constructing a three-dimensional engineering geological model of the temperature field in the fire area, using fiber Bragg gratings for full hole depth temperature measurement, developing a real-time monitoring system for the temperature field in the fire area, and realizing temperature monitoring and early warning during blasting construction process; Optimize inhibitors and flash point enhancers for high-temperature resistant explosives, optimize explosive formulations, and develop high-temperature resistant explosive materials; The selection of cooling methods and insulation materials for high-temperature blast holes, as well as the design of insulation protection devices for drug packaging; Develop a failure apparatus of charge when the temperature safety threshold is exceeded for the charge inside the hole; Design an one-way blasting network for high-temperature fire areas; The zoning adopts a construction method that combines strengthened loosening, loosening blasting, weak loosening blasting techniques, and the "three small and one long" approach; Develop regulations for blasting operations in high-temperature coal seam fire areas to achieve information and intelligence in fire area blasting. Conducting in-depth research on key technologies for open-pit coal mine fire area blasting has important theoretical and engineering value for improving the safety and efficiency of open-pit coal mine fire area blasting.

  • 关键词

    火区爆破孔温智能监测耐高温爆破器材炸药失效装置单向爆破网路

  • KeyWords

    fire area blasting;intelligent monitoring of blast hole temperature;high temperature resistant explosive materials;failure apparatus of charge;one-way blasting network

  • DOI
  • 引用格式
    王桂林,费鸿禄,刘秉轩,等. 露天煤矿火区爆破技术现状与趋势[J]. 煤炭科学技术,2025,53(1):145−160.
  • Citation
    WANG Guilin,FEI Honglu,LIU Bingxuan,et al. Status quo and trend of blasting technology in open-pit coal mine fire area[J]. Coal Science and Technology,2025,53(1):145−160.
  • 图表
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    • 测温方法与技术

    图(6) / 表(2)

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