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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
基于煤岩动力系统能量的冲击地压矿井临界深度判别
  • Title

    Determination of critical depth in rockburst mine based on the energy of coal rock dynamic system

  • 作者

    荣海于世棋张宏伟梁冰韩军兰天伟杨振华

  • Author

    RONG Hai,YU Shiqi,ZHANG Hongwei,LIANG Bing,HAN Jun,LAN Tianwei,YANG ZHENhua

  • 单位

    辽宁工程技术大学 矿业学院辽宁工程技术大学 力学与工程学院

  • Organization
    School of Mines,Liaoning Technical University; School of Mechanics and Engineering,Liaoning Technical University
  • 摘要

    为了定量计算典型冲击地压矿井的临界深度,实现煤矿冲击地压的有效防控。应用地质动力环境评价方法,将冲击地压矿井划分为“典型冲击地压矿井”和“非典型冲击地压矿井”2种类型。通过构建的煤岩动力系统模型,研究了煤岩动力系统的能量特征及其与冲击地压显现的关系。分析了自重应力场和构造应力场下煤岩动力系统的能量特征,并分别确定了不同应力场条件下的煤岩动力系统能量计算方法,在此基础上提出了典型冲击地压矿井的临界深度计算方法,并在3个典型冲击地压矿井进行了准确性验证。研究结果表明:在自然地质条件下,煤岩动力系统的总能量与构造应力场下煤岩动力系统的能量相等,自重应力场下煤岩动力系统的能量为基础能量,煤岩动力系统释放的能量为构造应力场下能量与基础能量的差值。对于典型冲击地压矿井,煤岩动力系统的总能量主要源于构造应力场,在构造应力场条件下煤岩动力系统积聚的能量已经能够支撑冲击地压发生,在开采活动诱发下就会发生冲击地压;对于非典型冲击地压矿井,在构造应力场条件下煤岩动力系统积聚的能量不足以支撑冲击地压发生,需要其他工程条件补充能量,在开采活动诱发下才有可能发生冲击地压。根据验证结果,典型冲击地压矿井的临界深度计算方法,以及煤岩动力系统能量计算方法准确性较高,可达93%以上,可以广泛应用于矿井冲击地压的预测与危险性评价工作中。非典型冲击地压矿井的煤岩动力系统能量补充因素较多,如采掘活动、煤柱应力、顶板活动等,将在后续研究工作中深入研究。

  • Abstract
    In order to calculate the critical depth in a typical rockburst coal mine quantitatively for preventing and controlling rockburst effectively,the types of rockburst mine have been divided into typical rockburst mine and atypical rockburst mine based on the geo-dynamic environment evaluation method.Energy characteristics of coal-rock dynamic system,the relationship between occurrence of rockburst and the system are analyzed by the constructed model of coal-rock dynamic system.Energy characteristics of coal-rock dynamic system in gravity stress field,tectonic stress field,and mining stress field are determined respectively,and the corresponding calcu-lation methods are put forward.Subsequently,the calculation method of the critical depth in typical rockburst coal mine is put forward,and the accuracy of which is validated in three typical coal mines.The results show that the total energy of coal-rock dynamic system is consisted of the energy in self-weight stress field,tectonic stress field and mining stress field.The energy in self-weight stress field is defined as the basic energy,the released energy is the difference between the basic energy and the energy in tectonic stress field or mining stress field.For a typical rockburst mine,the total energy of the coal-rock dynamic system mainly comes from the tectonic stress field,the energy accumulated by the system can support the occurrence of rockburst,which induced by some mining activities.For an atypical rockburst mine,the energy accumulated by the system in tectonic stress field cannot support the occurrence of rockburst,which additional energy is needed.According to the verification results,the calculation method of critical depth in typical rockburst mines,and the calculation method of energy of coal-rock dynamic system are accurate,the accuracy rate can be more than 93%,which could be widely used in forecasting the risk of rockburst.There are many energy supplement factors in coal-rock dynamic system for atypical rockburst mines,such as coal pillar stress,roof movement,etc.,which will be further researched in the future.
  • 关键词

    冲击地压煤岩动力系统能量特征典型冲击地压矿井临界深度准确性验证

  • KeyWords

    rockburst;coal-rock dynamic system;energy characteristics;typical rockburst mine;critical depth;accuracy validate

  • 基金项目(Foundation)
    国家自然科学基金资助项目(51904145);辽宁省自然科学基金指导计划资助项目(2019-ZD-0045);辽宁省教育厅科研经费资助项目(LJ2019JL007)
  • 文章目录

    1 冲击地压矿井类型的划分

      1.1 冲击地压矿井类型与煤岩动力系统能量的关系

      1.2 煤岩动力系统模型的建立

    2 煤岩动力系统的能量特征及与冲击地压动力显现的关系

      2.1 煤岩动力系统能量的来源与能量构成

      2.2 自重应力场下煤岩动力系统的能量表征

      2.3 构造应力场下煤岩动力系统的能量表征

      2.4 煤岩动力系统释放能量的计算方法

      2.5 典型冲击地压矿井的临界深度计算方法

    3 研究成果应用

    4 结论

  • 引用格式
    荣海,于世棋,张宏伟,等.基于煤岩动力系统能量的冲击地压矿井临界深度判别[J].煤炭学报,2021,46(4):1263-1270.
    RONG Hai,YU Shiqi,ZHANG Hongwei,et al.Determination of critical depth in rockburst mine based on the energy of coal-rock dynamic system[J].Journal of China Coal Society,2021,46(4):1263-1270.
  • 相关文章
  • 图表
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    • 煤岩动力系统与冲击地压显现关系模型

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