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首页> 外文期刊>Hydrogeology journal >Empirical relationships of groundwater head-salinity response to variations of sea level and vertical recharge in coastal confined karst aquifers
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Empirical relationships of groundwater head-salinity response to variations of sea level and vertical recharge in coastal confined karst aquifers

机译:地下水头盐度对沿海近距离喀斯特含水层海平面和垂直充电变化的实证关系

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Coastal aquifers are characterized by a mixing zone with freshwater-saltwater interactions, which have a strong relationship with hydrological forcings such as astronomical and storm tides, aquifer recharge and pumping effects. These forcings govern the aquifer hydraulic head, the spatial distribution of groundwater salinity and the saline interface position. This work is an empirical evaluation through time-series analysis between aquifer head and groundwater salinity associated with the sea-level dynamics and the aquifer recharge. Groundwater pressure, temperature and salinity were measured in a confined aquifer in the northwest coast of Yucatan (Mexico) during May 2017-May 2018, along with precipitation. Cross-correlation and linear Pearson correlation (r) analyses were performed with the data time series, separating astronomical and meteorological tides and vertical recharge effects. The results show that the astronomical and meteorological tides are directly correlated with the aquifer head response (0.71 r < 0.99). Salinity has a direct and strong relationship with the astronomical tide (0.76 r < 0.98), while the meteorological tide does not (r < 0.5). The vertical recharge showed a moderate correlation with the aquifer head (0.5 r < 0.7) and a nonsignificant correlation with the groundwater salinity (r < 0.5). In this study, the sea level (r > 0.7) is a more important forcing than the vertical recharge (with 0.5 r < 0.7). Empirical relationships through time-series analysis and the separation of individual hydrological forcings in the analysis are powerful tools to study, define and validate the conceptual model of the aquifer.
机译:沿海含水层的特点是含有淡水 - 盐水相互作用的混合区,具有与天文和风暴潮汐等水文强制相关的强有力的关系,含水层充电和泵送效果。这些强迫控制含水层液压,地下水盐度的空间分布和盐水界面位置。这项工作是通过与海平动态相关的含水层头部和地下水盐度之间的时间序列分析进行实证评价。在2017年5月至2018年5月,在2017年5月至2018年5月,在2017年5月至2018年5月,在尤卡坦桑那州(墨西哥)的狭窄含水层中测量了地下水压,温度和盐度。用数据时间序列进行互相关和线性Pearson相关(R)分析,分离天文和气象潮汐和垂直充电效果。结果表明,天文和气象潮汐与含水层响应直接相关(0.71 r <0.99)。盐度与天文潮(0.76R <0.98)具有直接和强大的关系,而气象潮并不是(R <0.5)。垂直充电显示与含水层头(0.5R <0.7)的中等相关性,与地下水盐度的无显着性相关性(R <0.5)。在这项研究中,海平面(R> 0.7)是比垂直充电更重要的强制(0.5R <0.7)。通过时间序列分析和分离分析的经验关系是研究,定义和验证含水层的概念模型的强大工具。

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