厚松散层薄基岩条件下马头门支护结构优化分析

    Optimization analysis of ingate supporting structure under the condition of thick loose layer and thin bedrock

    • 摘要: 针对厚松散层薄基岩条件下马头门支护技术难题,以祁南矿东风井马头门为工程背景,利用FLAC3D对原支护设计方案进行分析,探究了马头门衬砌应力场的分布规律及上覆薄基岩的竖向位移演化规律;提出了马头门支护结构优化设计,并结合数值模拟与现场实测对优化支护方案的可靠性进行验证。结果表明:原支护方案下,马头门衬砌应力集中现象明显,上覆薄基岩竖向沉降位移过大,支护失效风险较高;支护方案优化后,马头门衬砌最大主应力、上覆薄基岩竖向沉降位移及支护结构的塑性区体积均有所降低。现场监测显示,最大围岩压力均未超过预警值的20%,钢筋最大拉应力也均小于钢筋的屈服强度,验证了优化支护方案的可靠性。

       

      Abstract: Aiming at the technical problems of ingate support under the condition of thick loose layer and thin bedrock, taking ingate of Dongfeng Well in Qinan Mine as the engineering background, we analyzed the original support design scheme by using FLAC3D, and explored the distribution law of stress field of ingate lining and the vertical displacement evolution law of overlying thin bedrock; we proposed the optimization design of ingate support structure, and verified the reliability of the optimized support scheme by numerical simulation and field measurement. The results show that: the original support scheme exhibits evident stress concentration in the ingate lining, excessive vertical settlement displacement in the overlying thin bedrock, and a high risk of support failure. Following optimization of the support scheme, there is a reduction observed in the maximum principal stress of the ingate lining, vertical settlement displacement in the overlying thin bedrock, and plastic zone volume of the support structure. On-site monitoring shows that the maximum monitoring pressure exerted by surrounding rock does not exceed 20% of the warning value, and the maximum tensile stress experienced by steel bars remains below their yield strength. These findings validate the reliability of the optimized support scheme.

       

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