煤炭工程 ›› 2026, Vol. 58 ›› Issue (3): 44-53.doi: 10.11799/ce202603006

• 专题论坛 • 上一篇    下一篇

硬故障下矿井主通风机最优切换式离线维修决策

白国庆,秦彦凯,贾文强,贺志凯,张永飞   

  1. 1. 太原学院 机电与车辆工程系,山西 太原 030004

    2. 中国煤炭科工集团太原研究院有限公司,山西 太原 030006

    3. 太原重工轨道交通设备有限公司,山西 太原 030002

    4. 太原科技大学 工业与系统工程研究所,山西 太原 030024

  • 收稿日期:2025-09-04 修回日期:2025-11-05 出版日期:2026-03-10 发布日期:2026-04-14
  • 通讯作者: 秦彦凯 E-mail:qyk12@163.com

Optimal switching offline maintenance decisions for mine main ventilation fan under hard failure

  • Received:2025-09-04 Revised:2025-11-05 Online:2026-03-10 Published:2026-04-14

摘要:

矿井主通风机作为矿井安全作业的核心,其通常由两台同型设备冷贮备构成,在系统运行过程中往往需要定期切换和维护以保证其高效运行。对于此类系统,设备交替运行导致系统故障受设备状态的耦合影响,且不同维修对应不同效果、时间及成本并对系统后续运行产生不同的影响,因此,系统故障特性和切换维修策略直接影响运行可靠性和成本。该研究以矿井主通风机为研究对象,首先在结构及故障模式分析的基础上,定义了离线式切换式维修策略并引入了维修度概念对维修效果、时间、成本、次数进行统一建模;其次推导了硬故障、维修策略及维修度影响下的系统随机故障模型;然后构建了有限时域内的费用率模型以优化维修间隔和维修度。最后通过数值实验验证了模型的正确性和有效性。结果表明所制定的考虑维修度的维修策略可以有效降低系统的运维成本,同时设备报废成本的变化对系统最优费用率的影响较为灵敏,管理者可以通过精细化管理设备的报废成本以进一步提高系统的经济效益。

关键词: 矿井主通风机, 冷贮备, 可修系统, 离线切换式维修, 维修度, 费用率模型

Abstract:

The mine main ventilation fan, as the core of mine safety operations, consists of two cold storage units of the same type of equipment, which often need to be switched and maintained periodically to ensure its efficient operation. For such systems, the characteristics of alternating equipment operation lead to system failures that are affected by the coupling of equipment states, and different repairs correspond to different effects, times and costs and have different impacts on the subsequent operation of the system. Therefore, the failure analysis of the system and the reasonable maintenance strategy are crucial for the system's reliable operation. This research takes the Mine main ventilation fan as the research object. Firstly, based on the analysis of structure and failure mode, the offline switching maintenance strategy is defined, and the concept of maintenance degree is introduced to model the effect, time, cost and frequency of maintenance in a unified way. Secondly, the stochastic failure model of the system under the influence of the offline switching maintenance and the maintenance degree is deduced. Then, a cost rate model is constructed in the finite time domain to optimize the maintenance period and the maintenance degree. Finally, the validity of the model is verified by numerical experiments. The results show that the offline switching maintenance strategy considering the maintenance degree can effectively reduce the operation and maintenance cost of the mine main ventilation system. Meanwhile, the change of the scrap cost of components has a more sensitive impact on the optimal cost rate of the system, and the manager can further improve the system's economic efficiency through the refinement of the management of the scrap cost of the equipment.

中图分类号: