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Regional Groundwater Flow Assessment in a Prospective High-Level Radioactive Waste Repository of China

机译:中国未来高放废物处置库中的区域地下水流量评估

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The production of nuclear energy will result in high-level radioactive waste (HLRW), which brings potential environmental dangers. Selecting a proper disposal repository is a crucial step in the development of nuclear energy. This paper introduces firstly the hydrogeological conditions of the Beishan area in China. Next, a regional groundwater model is constructed using a multiphase flow simulator to analyze the groundwater flow pattern in the Beishan area. Model calibration shows that the simulated and observed hydraulic heads match well, and the simulated regional groundwater flow pattern is similar to the surface flow pattern from the channel network, indicating that the groundwater flow is mainly dependent on the topography. In addition, the simulated groundwater storage over the period from 2003 to 2014 is similar to the trend derived from the Gravity Recovery and Climate Experiment satellite-derived results. Last, the established model is used to evaluate the influences of the extreme climate and regional faults on the groundwater flow pattern. It shows that they do not have a significant influence on the regional groundwater flow patterns. This study will provide a preliminary reference for the regional groundwater flow assessment in the site of the HLRW in China.
机译:核能的生产将导致高放废物(HLRW),带来潜在的环境危险。选择合适的处置库是发展核能的关键步骤。本文首先介绍了中国北山地区的水文地质条件。接下来,使用多相流模拟器构建区域地下水模型,以分析北山地区的地下水流型。模型标定表明,模拟和观测到的水力压头匹配良好,模拟的区域地下水流模式与来自渠道网络的地表流模式相似,表明地下水流主要取决于地形。此外,2003年至2014年期间的模拟地下水存储量与重力恢复和气候实验卫星得出的结果得出的趋势相似。最后,建立的模型用于评估极端气候和区域断层对地下水流型的影响。结果表明,它们对区域地下水流动模式没有显着影响。这项研究将为中国高铁工程现场的区域地下水流量评估提供初步参考。

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