破碎岩体巷道失稳机理及支护数值模拟
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作者单位:

1.塞尔维亚紫金矿业有限公司, 塞尔维亚 波尔 19210 ; 2.福州大学 紫金地质与矿业学院, 福建 福州 350108

作者简介:

李国骁(1989—),男,福建上杭人,工程师,大学本科,主要从事采矿生产工作。

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中图分类号:

TD353

基金项目:

国家重点研发计划高寒及生态脆弱区大型矿山绿色开采技术(2017YFC0602900)


Mechanism of instability and support numerical simulation for fractured rock mass tunnels
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Affiliation:

1.Serbia Zijin Mining D.o.o.Bor,Bor 19210, Serbia ;2.Zijin School of Geology and Mining, Fuzhou University, Fuzhou 350108 , China

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    摘要:

    地下金属矿山复杂应力条件下围岩破碎和软弱性给巷道支护设计带来了重大挑战。本研究以塞尔维亚某铜金矿为研究对象,采用FLAC3D有限差分软件对3种巷道类型和两级破碎岩性进行数值模拟,评估现有支护设计的合理性,并优化适用于不同围岩条件的支护参数。结果表明,-200m中段巷道的失稳主要由高地应力、围岩临空面变形共同引起,其典型破坏形式包括压顶破坏、尖顶破坏、锚杆支护系统失效以及喷射混凝土层的外鼓开裂等。Ⅳ、Ⅴ级围岩巷道的顶板沉降量大致在允许范围内,但两帮的累计相对位移普遍超限,表明现有支护设计在控制两帮变形方面存在不足。将-200m中段Ⅳ、Ⅴ级围岩巷道,支护参数优化为锚杆间距0.8m×1.0m、锚索间距2.0m×3.0m以及喷射混凝土厚度125mm,从而满足了符合安全要求,研究成果为地下金属矿山破碎岩体支护优化提供了理论支持。

    Abstract:

    The fragmentation and weakness of surrounding rock under complex stress conditions in underground metal mines pose significant challenges to tunnel support design. This study focuses on a copper-gold mine in Serbia, employing the FLAC3D finite difference software to conduct numerical simulations on three types of tunnels and two levels of fractured rock masses. The research evaluates the rationality of the existing support design and proposes optimized support parameters tailored to varying surrounding rock conditions. The results indicate that the instability of the -200m level tunnels is primarily caused by the combined effects of high geostress, deformation of the exposed rock surfaces, and rock corrosion. Typical failure modes include roof settlement within the permissible range for IV and V grade surrounding rock tunnels, whereas the cumulative relative displacement of the two sides generally exceeds the allowable limit, highlighting deficiencies in the current support design for controlling sidewall deformation. The optimized support parameters for the IV and V grade surrounding rock tunnels at the -200m level include an anchor bolt spacing of 0.8m×1.0m, an anchor cable spacing of 2.0m×3.0m, and a shotcrete thickness of 125mm, meeting safety requirements. These findings provide theoretical support for optimizing support systems for fractured rock masses in underground metal mines.

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李国骁,黄泽隆,薛小蒙,等.破碎岩体巷道失稳机理及支护数值模拟[J].有色设备,2025,39(1):41-49.

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  • 收稿日期:2024-10-15
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  • 在线发布日期: 2025-11-13
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