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首页> 外文期刊>Engineering Geology >The impact of tunneling construction on the hydrogeological environment of 'Tseng-Wen Reservoir Transbasin Diversion Project' in Taiwan
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The impact of tunneling construction on the hydrogeological environment of 'Tseng-Wen Reservoir Transbasin Diversion Project' in Taiwan

机译:隧道建设对台湾“曾温水库调水工程”水文地质环境的影响

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摘要

Groundwater flow and the associated surface water flow are potential negative factors on underground tunnels. Early detection of environmental impacts on water resources is of significant importance to planning, design and construction of tunnel projects, as early detection can minimize accidents and project delays during construction. The groundwater modeling software package Groundwater Modeling System (GMS), which supports the groundwater numerical codes MODFLOW and FEMWATER, was utilized to determine the impact of tunneling excavation on the hydrogeological environment in a regional area around the tunnel and a local hot springs area, at the "Tseng-Wen Reservoir Transbasin Diversion Project", in Taiwan. A hydrogeological conceptual model was first developed to simplify structures related to the site topography, geology and geological structure. The MODFLOW code was then applied to simulate groundwater flow pattern for the hydrogeological conceptual model in the tunnel area. The automated parameter estimation method was applied to calibrate groundwater level fluctuation and hydrogeological parameters in the region. Calibration of the model demonstrated that errors between simulated and monitored results are smaller than allowable errors. The study also observed that tunneling excavation caused groundwater to flow toward the tunnel. No obvious changes in the groundwater flow field due to tunnel construction were observed far away in the surrounding regions. Furthermore, the FEMWATER code for solving 3-D groundwater flow problems, in which hydrogeological characteristics are integrated into a geographic information system (G1S), is applied to evaluate the impact of tunnel construction on an adjacent hot spring. Simulation results indicated that the groundwater drawdown rate is less than the groundwater recharge rate, and the change to the groundwater table after tunnel construction was insignificant for the hot spring area. Finally, the groundwater flow obtained via the GMS indicated that the hydrogeological conceptual model can estimate the possible quantity of tunnel inflow and the impact of tunnel construction on the regional and local groundwater resources regime of the transbasin diversion project.
机译:地下水流量和相关的地表水流量是地下隧道的潜在负面因素。尽早发现环境对水资源的影响对隧道项目的规划,设计和施工具有重要意义,因为尽早发现可以最大程度地减少施工过程中的事故和项目延误。利用支持地下水数字代码MODFLOW和FEMWATER的地下水建模软件包Groundwater Modeling System(GMS),来确定隧道开挖对隧道周围区域和当地温泉区的水文地质环境的影响。台湾的“曾温水库跨流域调水项目”。首先开发了水文地质概念模型,以简化与现场地形,地质和地质结构有关的结构。然后,将MODFLOW代码应用于隧道区域水文地质概念模型的地下水流模式。应用自动参数估计方法来校准该地区的地下水位波动和水文地质参数。模型的校准表明,模拟结果与监视结果之间的误差小于允许的误差。研究还发现,隧道开挖导致地下水流向隧道。在附近地区,没有观察到由于隧道建设造成的地下水流场的明显变化。此外,用于解决3-D地下水流问题的FEMWATER代码(其中将水文地质特征集成到地理信息系统(G1S)中)用于评估隧道建设对相邻温泉的影响。模拟结果表明,地下水的回灌率小于地下水的补给率,隧道施工后地下水位对温泉区的变化不明显。最后,通过GMS获得的地下水流量表明,水文地质概念模型可以估算出隧道可能流入的数量以及隧道建设对跨流域调水工程的区域和局部地下水资源状况的影响。

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