隧道开挖引起的地面变形数值模拟及控制

Q4 Earth and Planetary Sciences
V. Maji, A. Adugna
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引用次数: 5

摘要

隧道穿越软土城市,通常与隧道周围的土壤移动和随后的地表沉降有关。隧道掘进过程中地表移动及最佳支护压力的预测可采用解析法、经验法或数值法。常用的土压平衡式掘进机,在开挖过程中,利用加压头仓内的开挖土对巷道工作面施加支撑压力。工作面压力在EPB掘进中起着至关重要的作用,因为压力的变化会导致工作面坍塌。本研究的目的是通过观察隧道开挖过程中土体的垂直变形和水平位移来确定临界支护面压力和注浆压力。工作面压力和灌浆压力是不同的,以观察它们如何影响地表沉降/隆起的大小。利用PLAXIS-3D隧道建立了一个数值模型,分析了隧道周围土体的运动,包括各种岩土条件。隧道周围的地面对工作面压力和灌浆压力非常敏感,地表沉降和土体塌陷明显加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modeling of tunneling induced ground deformation and its control
Tunnelling through cities underlain by soft soil, commonly associated with soil movement around the tunnels and subsequent surface settlement. The predication of ground movement during the tunnelling and optimum support pressure could be based on analytical, empirical or the numerical methods. The commonly used Earth pressure balance (EPB) tunneling machines, uses the excavated soil in a pressurised head chamber to apply a support pressure to the tunnel face during excavation. This face pressure is a critical responsibility in EPB tunnelling because as the varying pressure can lead to collapse of the face. The objective of the present study is to evalute the critical supporting face pressure and grout pressure by observing the vertical deformation and horizontal displacement of soil body during tunneling. The face pressure and grout pressures were varied to see how they might influence the magnitude of surface settlements/heave. A numerical model using PLAXIS-3D tunnel has been developed to analyse the soil movement around the tunnel that includes various geotechnical conditions. The ground surrounding the tunnel found to be very sensitive to the face pressure and grout pressure in terms of surface settlement and collapse of the soil body.
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
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0
审稿时长
12 weeks
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