Quantification of the impact of lunar semidiurnal tides on groundwater dynamics in estuarine aquifers

crossref(2020)

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摘要
<p>The influences&#160;of lunar semidiurnal tides on coastal groundwater aquifers&#160;have&#160;been&#160;conceptualized&#160;for decades. However,&#160;in&#160;estuarine aquifers, comprehensive work is needed&#160;to quantify&#160;the impact of the tides&#160;on groundwater dynamics due to the widely distributed waterways and heterogeneous sediments.&#160;Taking the Pearl River estuary&#160;in southeast China as&#160;a&#160;study site, the tidal impacts on the&#160;groundwater dynamics&#160;have been investigated through wavelet and time series analysis.&#160;The groundwater level and electrical conductivity (EC)&#160;in four&#160;monitoring wells, along with waterway&#160;water&#160;level (tidal level) at three tidal stations, were monitored every 30&#160;minutes over a 2-month period to determine how nearshore groundwater responds to tidal forcing.&#160;The results&#160;show&#160;that&#160;the estuarine groundwater fluctuations have two&#160;significant short periodicities (0.51 and 1 day), which correspond to the major tidal constituents in the tides: M<sub>2</sub><sub>&#160;</sub>(semidiurnal), K<sub>1</sub><sub>&#160;</sub>and O<sub>1</sub>&#160;(diurnal) signals. The significant impacts decrease&#160;with increasing distance inland of&#160;the locations of the wells. Additionally, the coherence analysis displays a higher correlation between tides and groundwater levels for the spring&#160;tide than for the neap tide. The tidal influences on groundwater EC are weaker. In addition, when the tide&#160;level increases, the EC&#160;decreases in the wells&#160;located in the estuarine entrance. This&#160;phenomenon is&#160;related to the high salinity of retained paleo-seawater in&#160;the strata lens. A conceptual model is proposed to illustrate the complex groundwater flow&#160;dynamics, which provides&#160;useful insights into understanding&#160;groundwater&#160;systems in other geographically similar coastal estuarine regions.</p>
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