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Fluctuations of fresh-saline water interface and of water table induced by sea tides in unconfined aquifers

机译:海水在无限制含水层中引起的咸淡水界面和地下水位的波动

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This study examines effects of tides on fluctuations of the fresh-saline water interface and the groundwater level in unconfined coastal aquifers using a two-dimensional numerical model. The time-lags of the simulated hydraulic heads and salinities fluctuations compared to sea level fluctuations are analyzed using cross-correlation analysis. The results show that both the fresh-saline water interface and the groundwater level are affected harmonically by sea tide fluctuations. However, significantly different time-lags are obtained between the hydraulic head in the deeper and upper parts of the aquifer, and between head and salinity in the fresh-saline water interface. The hydraulic head in the deeper part of the aquifer responses much faster to sea level fluctuations than in the upper part: Surprisingly, a similar difference is detected between the time-lag of the hydraulic head in the fresh-saline water interface and the time-lag of the salinity at the same location. Furthermore, the time-lag of the salinity in the fresh-saline water interface is similar to the time-lag of the water table. We suggest a comprehensive mechanism for tidal influence on the coastal groundwater system, in which two main processes act simultaneously. First, sea tide causes a pressure head wave which propagates into the saturated zone of the aquifer, governed by the diffusivity of the aquifer (K-s/S-s). Second, this pressure head wave is attenuated at the water table due to the unsaturated flow within the capillary fringe which occurs during groundwater level oscillations. Because the tidal forcing acts on the sea-floor boundary and the attenuation of the groundwater level due to capillary effect acts on the groundwater table, two dimensional distributions of time-lag and hydraulic head amplitude are created. The capillary effect in the unsaturated zone plays a key role not only in the water table fluctuations as shown previously, but also on the salinity fluctuations in the fresh-saline water interface. Unsaturated flow dynamics controls the actual movement of the entire fresh water body, which results in simultaneous fluctuations of the groundwater level and the fresh-saline water interface. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究使用二维数值模型研究了潮汐对无限制沿海含水层中淡盐水界面和地下水位波动的影响。使用互相关分析来分析模拟水头和盐度波动与海平面波动相比的时滞。结果表明,潮汐涨落对食盐水界面和地下水位均产生谐波影响。但是,在含水层的较深部分和上部的水力压头之间以及在淡盐水接口中的压头和盐度之间获得了明显不同的时滞。含水层较深处的液压头对海平面波动的响应要比上部高得多:令人惊讶的是,在淡盐水接口处的液压头的时滞与同一地点的盐度滞后。此外,淡盐水界面的盐度时滞与地下水位的时滞相似。我们提出了一种潮汐对沿海地下水系统的影响的综合机制,其中两个主要过程同时起作用。首先,潮汐引起压头波,该压头波传播到含水层的饱和区,受含水层的扩散率(K-s / S-s)控制。其次,由于在地下水位振荡过程中出现的毛细条纹内的不饱和流,该压力头波在地下水位被衰减。由于潮汐强迫作用在海底边界上,毛细作用导致的地下水位衰减作用在地下水位上,因此产生了时滞和水头高度的二维分布。不饱和区的毛细作用不仅在如前所示的地下水位波动中起着关键作用,而且在淡盐水接口中的盐度波动中也起着关键作用。不饱和流动动力学控制着整个淡水体的实际运动,从而导致地下水位和淡盐水界面的同时波动。 (C)2016 Elsevier Ltd.保留所有权利。

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