Two-dimensional flow response to tidal fluctuation in a heterogeneous aquifer-aquitard system

Two-dimensional flow response to tidal fluctuation in a heterogeneous aquifer-aquitard system
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非均质含水层-弱透水系统中潮汐波动的二维流动响应

DOI:
10.1002/hyp.10207
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发表时间:
2015
影响因子:
3.2
通讯作者:
Tang Zhonghua
Tang Zhonghua
中科院分区:
地球科学3区
文献类型:
--
作者:
Wang Quanrong;Zhan Hongbin;Tang Zhonghua

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In alluvial coastal aquifers, finer sediments are preferentially deposited along the downstream direction, so the hydraulic conductivity is generally heterogeneous and changes with distance from the coastline. To investigate the influence of aquifer heterogeneity on seawater‐groundwater interaction, a new two‐dimensional model characterising groundwater flow in an aquifer‐aquitard system was developed assuming that the hydraulic conductivity of the aquifer linearly increases with the distance from the coastline along the inland direction. A closed‐form analytical solution was derived using the separation‐of‐variables method. Comparing the new solution with the numerical solution bycomsolMultiphysics (Sweden) based on the finite‐element method, one can see that the new solution agreed with the numerical solution very well except at the early time. We found that both aquitard leakance and the heterogeneity factor (b) could result in the propagation bias. The propagation bias represents the inconsistency between the theoretical calculation and the observed strong attenuation and small time lag between the head and tide fluctuations. The attenuation decreased with perpendicular distance from the coastline (x‐axis), whereas the time lag increased with distance along thex‐axis. The relationship between the time lag and the distance along thex‐axis seemed to be linear whenbwas 0.001 m−1, whereas it obeyed a power function whenbwas greater than 0.01 m−1. Copyright © 2014 John Wiley & Sons, Ltd.