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首页> 外文期刊>Journal of Hydrology >Analytical study of hydraulic, mechanical effects on tide-induced head fluctuation in a coastal aquifer system that extends under the sea
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Analytical study of hydraulic, mechanical effects on tide-induced head fluctuation in a coastal aquifer system that extends under the sea

机译:在海底延伸的沿海含水层系统中,水力,机械作用对潮汐引起的水头波动的影响的分析研究

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摘要

Head response to sea level fluctuations has been extensively used for characterizing coastal aquifers. When the aquifer is semiconfined, extends for a certain distance. D under the sea, head response results from the superposition of two types of effects: hydraulic (i.e., ground water flow connection through aquifer, aquitard), mechanical (induced by tidal loading onto the sea floor). Solutions are available for this problem that has been analyzed before, but only for. D zero or infinity. These solutions do not allow analyzing aquifer systems that extends for a finite. D, or identifying them, which is critical for coastal aquifer management. We derive an exact analytical solution that describes separately the mechanical, hydraulic effects. The proposed analytical solution is a generalization of most of existing analytical solutions. A simpler approximate analytical solution is also obtained for soft aquitards with low permeabilities. We find that the impact of the hydraulic component of the aquitard, the mechanical effects in the total head fluctuation at the shoreline is significant, but not very sensitive to the properties of the aquitard. The amplitude of these fluctuations relative to that of the sea tide ranges approximately between 1 (small. D), 0.5 (large. D). This implies that aquifer penetration under the sea can indeed be identified if it is below a certain threshold, beyond which the system responds as if. D was infinity. Surprisingly, the time lag is close to zero regardless of hydraulic parameters of the aquifer system.
机译:头部对海平面波动的反应已被广泛用于表征沿海含水层。半含水层时,延伸一定距离。在海中D处,头部响应是两种作用叠加的结果:水力作用(即通过含水层,阿奎塔德的地下水流连接),机械作用(由潮汐加载到海底引起的作用)。有针对此问题的解决方案,以前已经对此进行了分析,但仅针对此问题。 D零或无穷大。这些解决方案不允许分析扩展有限的含水层系统。 D或识别它们,这对沿海含水层的管理至关重要。我们得出一个精确的分析解决方案,该解决方案分别描述了机械,液压作用。提出的分析解决方案是对大多数现有分析解决方案的概括。对于渗透率低的软质水族箱,也可以获得更简单的近似分析解决方案。我们发现,在岸线的总压头波动中,水力学的水力分量的影响是很大的,但对水力学的特性不是很敏感。相对于海潮,这些波动的幅度大约在1(小D)到0.5(大D)之间。这意味着,如果低于某个阈值,则确实可以确定海底含水层的渗透,超过该阈值,系统就会做出响应。 D是无穷大。令人惊讶的是,无论含水层系统的水力参数如何,时间差都接近于零。

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