Analysis and prediction of surface settlements during the digging of underground mining works (Algeria)

Q3 Engineering
M. A. R. Morsli, S. Berdoudi, A. Hafsaoui, A. I. Kanli, M. Ferfar
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Abstract

Purpose. To analyze, study and predict surface settlements during the digging of a tunnel in an urban area located in the Algerian capital and to take the necessary measures. Methodology. Based on the physical and mechanical parameters and the geological characteristics of the actual traversed layer, and taking into account the geometric parameters of the tunnel, the mechanical model is established, and the numerical simulation is designed to determine the settlement deformation and displacement of the overlying zone under mining disturbance. Findings. Due to the impact of the excavation works, the land will undergo large deformations such as collapse. So, it is necessary to take corrective measures to limit its effect on the surrounding environment and protect urban areas. Originality. The application of a complex of methods allowed providing a predictive assessment of the safety of mining workings in urban conditions. The study was conducted in two main stages; a geotechnical characterization in situ and in the laboratory to determine the necessary properties of the soil and rock mass used in our model, and in a second step, the development of feedback analysis using numerical modelling based on the data collected. Practical value. From this study, the results obtained seem to show vertical displacements that exceed international standards in urban areas (1/1000, which can induce significant ground movements and therefore an influence on the surrounding environment. As a solution, there is a possibility of reducing the deformations by improving the mechanical properties of the soil carrying the project using the Jet-Grouting technique – the technique has shown its effectiveness in reducing settlements with a reduction rate of 78 %.
地下采矿工程挖掘期间地表沉降的分析和预测(阿尔及利亚)
目的分析、研究和预测在阿尔及利亚首都城市地区挖掘隧道时的地表沉降,并采取必要的措施。方法。根据实际穿越层的物理力学参数和地质特征,并考虑到隧道的几何参数,建立力学模型,并设计数值模拟,以确定采矿扰动下上覆层的沉降变形和位移。研究结果。由于开挖工程的影响,土地会发生较大的变形,如塌陷。因此,有必要采取纠正措施,以限制其对周围环境的影响,保护城市区域。原创性。应用多种方法对城市采矿工程的安全性进行了预测评估。研究分两个主要阶段进行:在原地和实验室进行岩土工程特征描述,以确定模型中使用的土壤和岩体的必要属性;第二步,根据收集到的数据,使用数字模型进行反馈分析。实用价值。从这项研究中得出的结果显示,垂直位移似乎超过了城市地区的国际标准(1/1000),这可能会引起明显的地面运动,从而对周围环境造成影响。作为一种解决方案,有可能通过使用喷射路由技术改善承载工程的土壤的机械性能来减少变形--该技术在减少沉降方面显示出其有效性,减少率高达 78%。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
148
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