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Surface water–groundwater interactions of Xiluodu Reservoir based on the dynamic evolution of seepage, temperature, and hydrochemistry due to impoundment

机译:基于蓄水,温度和水化动态演化的Xiluodu储层的表面水土水域相互作用

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摘要

Reservoir construction greatly affects the regional ecological environment, particularly surface water-groundwater interactions around the reservoir. Xiluodu Reservoir, a representative large-scale reservoir in China, has had substantial impacts on surface water-groundwater interactions at the dam site since impoundment. This study analysed the dynamic characteristics of surface water-groundwater level, temperature, and hydrochemistry to determine the evolution of surface water-groundwater interaction before and after the impoundment. The levels of groundwater and some surface water rose by more than 100 m after impoundment and the water level of saturated limestone gradually stabilized, whereas basalt saturation in the affected area continued to expand. The groundwater temperature did not decrease significantly, whereas the hydrochemical types and ion contents of both surface water and groundwater experienced significant changes. Calculation of the saturation index indicated spatiotemporal changes in the saturation state of minerals. The replenishment source of each type of water and their mutual relationships were determined using cluster analysis and isotope characteristics. The results confirmed continuous, significant, and variable surface water-groundwater interactions at the dam site, which were partially reversed after impoundment. Changes in surface water-groundwater interactions were due to impoundment, the impact of which decreases with distance from the dam, as well as the unique geological conditions and artificial construction.
机译:水库建设极大地影响了地区生态环境,特别是水库周围的地表水土水域相互作用。 Xiluodu水库是中国代表性的大型水库,自蓄水以来对大坝部位的地表水地互动产生了大幅影响。本研究分析了地表水地水平,温度和水化学的动态特性,以确定蓄水前后表面水土水域相互作用的演变。蓄水后地下水和一些地表水的水平升高超过100米,饱和石灰石的水位逐渐稳定,而受影响区域的玄武岩饱和持续扩张。地下水温度没有显着降低,而两种地表水和地下水的水化学类型和离子含量经历了显着的变化。饱和度指数的计算表明矿物质饱和状态的时空变化。使用聚类分析和同位素特征确定每种水和它们的相互关系的补充来源。结果证实了坝址的连续,显着和可变的表面水土水域相互作用,在蓄水后部分反转。表面水土水域相互作用的变化是由于蓄水量,其影响随着距离大坝的距离而减少,以及独特的地质条件和人工结构。

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