首页|基于Midas/GTS对铜矿破碎机硐室边坡施工的稳定性分析

基于Midas/GTS对铜矿破碎机硐室边坡施工的稳定性分析

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基于某铜矿破碎机硐室支护施工难度大,围岩稳定性差等特点,采用圆管支撑+锚杆+板桩墙联合支护,利用MIDAS/GTS建立二维有限元数值模型,分析圆管支撑+锚杆+板桩墙联合支护在硐室边坡施工的可行性.研究表明,围护结构变形及整体稳定性满足相关规范要求,整体安全可靠,在不平衡土压力作用下,围护结构产生最大位移位于最下一道钢管支撑至坑底2/3处,后期硐室边坡开挖至硐室底时,应立即施做硐室结构,减少硐室边坡暴露时间.为类似铜矿破碎机硐室边坡设计及施工提供参考.
Stability analysis of copper mine crusher chamber slope construction based on Midas/GTS
Based on the difficult construction and poor stability of the surrounding rock in the crusher chamber of a certain copper mine,a combined support of circular pipe support,anchor rod,and sheet pile wall is adopted.A two-dimensional finite element numerical model is established using MIDAS/GTS to analyze the feasibility of the combined support of circular pipe support,anchor rod,and sheet pile wall in the construction of the chamber slope.Research has shown that the deformation and overall stability of the enclosure structure meet the requirements of relevant regulations,and it is safe and reliable as a whole.Under the action of unbalanced soil pressure,the maximum displacement of the enclosure structure is located at 2/3 of the bottom of the pit supported by the lowest steel pipe.When the tunnel slope is excavated to the bottom of the tunnel in the later stage,the tunnel structure should be immediately constructed to reduce the exposure time of the tunnel slope.Provide reference for the design and construction of similar copper mine crusher chamber slopes.

copper mine crusher chamberFinite element methodSlopeOverall stability

周堃

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江西省勘察设计研究院有限公司,江西 南昌 330224

铜矿破碎机硐室 有限元 边坡 整体稳定性

2024

世界有色金属
有色金属技术经济研究院

世界有色金属

影响因子:0.138
ISSN:1002-5065
年,卷(期):2024.(15)
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