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Modelling Discharge Rates and Ground Settlement Induced by Tunnel Excavation

机译:隧道开挖引起的流量和地面沉降模拟

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摘要

Interception of aquifers by tunnel excavation results in water inflow and leads to drawdown of the water table which may induce ground settlement. In this work, analytical and numerical models are presented which specifically address these groundwater related processes in tunnel excavation. These developed models are compared and their performance as predictive tools is evaluated. Firstly, the water inflow in deep tunnels is treated. It is shown that introducing a reduction factor accounting for the effect of effective stress on hydrodynamic parameters avoids overestimation. This effect can be considered in numerical models using effective stress-dependent parameters. Then, quantification of ground settlement is addressed by a transient analytical solution. These solutions are then successfully applied to the data obtained during the excavation of the La Praz exploratory tunnel in the Western Alps (France), validating their usefulness as predictive tools.
机译:隧道开挖对含水层的拦截会导致水流入并导致地下水位下降,从而引起地面沉降。在这项工作中,提出了分析和数值模型,这些模型专门解决了隧道开挖中与地下水有关的过程。比较这些开发的模型并评估其作为预测工具的性能。首先,处理深层隧道的入水问题。结果表明,引入减小因子来考虑有效应力对流体力学参数的影响可以避免高估。可以在使用有效应力相关参数的数值模型中考虑这种影响。然后,通过瞬态分析解决方案解决地面沉降的量化问题。这些解决方案随后成功地应用于在西阿尔卑斯山(法国)La Praz探索性隧道的开挖过程中获得的数据,验证了其作为预测工具的有效性。

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