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Determination of aquifer roof extending under the sea from variable-density flow modelling of groundwater response to tidal loading: case study of the Jahe River Basin, Shandong Province, China

机译:从潮汐响应的地下水变密度流模型确定海底含水层顶板-以山东省case河流域为例。

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摘要

The main task of studies on salt-water intrusion into coastal confined aquifers is to predict the position of the fresh- salt-water interface, which can be determined from the length of the aquifer roof extending under the sea. Records of groundwater level affected by tides can be used to infer hydrological conditions and determine hydraulic parameters of an aquifer extending under the sea. In this paper, a three-dimensional, variable-density groundwater flow model has been developed to determine the equivalent roof length of an aquifer extending under the sea from the tidal-effected data of groundwater level in the Jahe River Basin, Shandong Province, China. The seaward boundary is obtained by converging hydraulic head fluctuations observed in drill holes with calculated values, and the aquifer parameters in the extending zone are estimated. The impacts of aquifer roof length and aquifer parameters on the fluctuation of tidal groundwater are studied. It is concluded that the length of the aquifer roof extending under the sea should correspond with certain aquifer parameters in the extrapolation zone. Therefore, the seaward boundary determined from tidal-effect information is the equivalent boundary in hydrodynamic characteristics rather than the true boundary of the confined aquifer.
机译:盐水侵入沿海密闭含水层的研究的主要任务是预测淡盐水界面的位置,该位置可以从在海底延伸的含水层屋顶的长度确定。受潮汐影响的地下水位记录可用于推断水文条件并确定在海底延伸的含水层的水力参数。本文建立了三维可变密度地下水流模型,通过潮汐影响的山东省Jahe流域数据,确定海底延伸的含水层的等效顶板长度。 。向海边界是通过将在钻孔中观察到的水力压头波动与计算值进行收敛而获得的,并且可以估算延伸区域中的含水层参数。研究了含水层顶板长度和含水层参数对潮汐地下水波动的影响。结论是,在海底延伸的含水层顶板的长度应与外推区内的某些含水层参数相对应。因此,由潮汐影响信息确定的向海边界是水动力特性中的等效边界,而不是承压含水层的真实边界。

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