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现代矿业 ›› 2025, Vol. 41 ›› Issue (12): 47-50.

• 采矿工程 • 上一篇    下一篇

高寒地区露天采场爆破振动传播特征及边坡动态响应机理研究

侯 敏   

  1. 国能神东煤炭集团有限责任公司
  • 出版日期:2025-12-25 发布日期:2026-01-23

Research on the Propagation Characteristics of Blasting Vibration and the Dynamic Response Mechanism of Slopes in Open-pit Mines in High-cold Regions

  1. CHN Energy Shendong Coal Group Co.,Ltd.
  • Online:2025-12-25 Published:2026-01-23

摘要: 高寒地区露天矿山爆破作业受低温冻结作用显著影响,冻土层与未冻层力学性能差 异导致振动传播异常,边坡动态响应复杂化。为揭示温度场对振动衰减机制与边坡稳定性的影响 规律,选取某高寒地区露天磷矿为研究对象,通过严寒期、冷凉期、融化期 3 个时段的对比监测试 验,获取不同温度条件下的振动传播参数。采用 ANSYS/LS-DYNA 建立考虑冻融效应的三维边坡 动力响应模型,设置 4种冻结深度工况,系统分析温度-爆破耦合作用机理。研究结果表明,低温环 境下,振动衰减系数降低 15%~23%,主频向低频偏移 8%~12%;冻融界面对入射能量的 32% 产生反 射;边坡在冻结状态下的刚度有所提高,但冻融界面应力集中显著,坡脚最大有效应力较融化期增 大 80.1%,塑性应变梯度达 0.000 18 m-1 ,爆动振动-边坡响应双向耦合效应明显。研究建立了基于 温度分区的爆破振动控制方法,通过分区阈值设置与药量温度修正以及延时优化与界面减量装 药,为高寒地区露天矿山安全生产提供科学依据。

关键词: 高寒地区, 爆破振动传播, 边坡动态响应, 冻融效应, 数值模拟

Abstract: Blasting operations in open-pit mines in high-cold regions are significantly affected by low-temperature freezing. The difference in mechanical properties between frozen and unfrozen layers leads to abnormal vibration propagation and complicates the dynamic response of slopes. To reveal the in‐ fluence law of temperature field on the vibration attenuation mechanism and slope stability,an open-pit phosphate mine in a high-cold region was selected as the research object. Through comparative monitoring experiments in 3 periods of the severe cold period,the cool period and the melting period,the vibration propagation parameters under different temperature conditions were obtained. A 3D dynamic response mod‐ el of the slope considering the freeze-thaw effect was established by using ANSYS/LS-DYNA. Four freez‐ ing depth conditions were set,and the mechanism of the temperature-blasting coupling effect was system‐ atically analyzed. The research results show that in a low-temperature environment,the vibration attenua‐ tion coefficient decreases by 15% to 23%,and the main frequency shifts towards the low frequency by 8% to 12%. The freeze-thaw interface reflects 32% of the incident energy. The stiffness of the slope increases in the frozen state,but the stress concentration at the freeze-thaw interface is significant. The maximum ef‐ fective stress at the foot of the slope increases by 80.1% compared with the melting period,the plastic strain gradient reaches 0.000 18 m-1 ,and the bidirectional coupling effect of blasting vibration and slope response is obvious. A blasting vibration control method based on temperature zoning was established through research. By setting the threshold of the zoning,correcting the temperature of the charge quantity,optimizing the delay and reducing the charge at the interface,it provides a scientific basis for the safe pro‐ duction of open-pit mines in high-cold regions.

Key words: high-cold regions, blasting vibration propagation, dynamic response of slopes, freeze?thaw effect, numerical simulation