煤炭工程 ›› 2025, Vol. 57 ›› Issue (6): 9-16.doi: 10. 11799/ ce202506002

• 设计技术 • 上一篇    下一篇

超深矿井施工中提升系统动态安全系数研究

王国元,葛世荣,王大刚,等   

  1. 1. 中煤建设集团有限公司,北京 102218

    2. 中国矿业大学(北京),北京 100083

    3. 中国矿业大学,江苏 徐州 221116

  • 收稿日期:2025-02-24 修回日期:2025-03-24 出版日期:2025-06-11 发布日期:2025-07-15
  • 通讯作者: 王大刚 E-mail:wangdg@cumt.edu.cn

Dynamic safety factor of hoisting system in ultra-deep mine construction

  • Received:2025-02-24 Revised:2025-03-24 Online:2025-06-11 Published:2025-07-15

摘要:

针对我国超深立井施工中提升系统承载最小安全系数计算未充分考虑时变动载荷,以及与国外最小安全系数标准存在差异等问题,以三山岛矿为研究对象,对比分析了国内外钢丝绳最小承载安全系数计算理论下的极限提升高度与提升载荷差异。建立了提升机-钢丝绳-提升容器多体耦合动力学模型,提出了基于时变载荷谱的动态安全系数计算方法,揭示了提升系统在加速、匀速、减速全过程的振动特性、动张力演化规律及动态安全系数变化规律。研究结果表明:在提升过程中,随着提升高度的增加,钢丝绳和吊桶的纵向与扭转振动幅度和频率逐渐增大,而横向振动则呈现先增大后下降、最终趋于平稳的变化趋势;基于国内外钢丝绳承载安全系数计算理论,钢丝绳动态承载安全系数在提升阶段随提升高度的增加呈递增趋势,而在下放阶段则随下放深度的增加呈递减趋势,且在加速阶段动态波动幅值达到最大。

关键词: 超深立井 , 提升系统 , 动态承载安全性 , 振动特性 , 安全系数

Abstract:

As the core equipment for the development and utilization of deep resources, the hoisting system during the construction of ultra-deep shafts faces complex dynamic loads and extreme working condition challenges. The dynamic load-bearing safety of hoisting wire ropes directly restricts the safe construction and operational efficiency of ultra-deep shafts. In response to the issues that the calculation of the minimum safety factor for the load-bearing capacity of hoisting systems in China's ultra-deep shaft construction does not fully consider time-varying loads and the differences with international minimum safety factor standards, this paper takes the Sanshandao Gold Mine as the research object. It compares and analyzes the differences in the ultimate hoisting height and hoisting load under the theoretical calculations of the minimum load-bearing safety factor for wire ropes in domestic and international contexts. Furthermore, a multi-body coupled dynamics model of the hoist-wire rope-hoisting container is established, and a dynamic safety factor calculation method based on time-varying load spectra is proposed. This method reveals the vibration characteristics, dynamic tension evolution, and dynamic safety factor variation patterns of the hoisting system during the acceleration, constant speed, and deceleration phases. Additionally, the influence mechanisms of key factors such as sudden changes in hoisting speed, elastic vibration of the wire rope, and load fluctuations on system safety are analyzed. The research results indicate that during the hoisting process, as the hoisting height increases, the amplitude and frequency of longitudinal and torsional vibrations of the wire rope and bucket gradually increase, while the lateral vibration shows a trend of initially increasing, then decreasing, and finally stabilizing. Based on the domestic and international theoretical calculations of the wire rope load-bearing safety factor, the dynamic safety factor of the wire rope increases with the hoisting height during the hoisting phase, while it decreases with the lowering height during the lowering phase, with the maximum dynamic fluctuation amplitude occurring during the acceleration phase.

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