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Swash zone moisture dynamics and unsaturated infiltration in two sandy beach aquifers

机译:两个沙滩含水层的冲积带水分动力学和非饱和渗透

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The intertidal zone of coastal aquifers is a dynamic region of mixing between saline surface water and fresh groundwater. Groundwater circulation in this zone is affected by complex forcing mechanisms that operate on a range of timescales and can regulate chemical fluxes to marine environments. We evaluated wave swash-induced infiltration and associated flow dynamics in the unsaturated region of two sandy beach aquifers with differing wave conditions and beach morphologies. Moisture and pressure sensors were used to measure fluctuations in water content, water table elevation, and hydraulic gradients at high frequencies (5 Hz) in the swash zone at mean lower low water, mean sea level, and mean higher high water. Water content in the unsaturated region of the swash zone responded to wave overtopping and swash infiltration, with a rapid rise in water content followed by a slower decline. Swash-induced unsaturated infiltration rates, calculated from water content response, were lowest near low tide and increased up the beachface with inflow highest near high tide at both sites, consistent with an increase in water table depth up the beach. Unsaturated infiltration was 1.6 m~3/m per tidal cycle at the wave-dominated beach and 0.4 m~3/m per tidal cycle at the tide-dominated beach. Saturated pore pressure measurements show that a water table mound formed as a consequence of swash infiltration that migrated up the beach during rising tide, leading to divergent seaward/landward groundwater flow. The results demonstrate the significant and spatially variable effects of wave swash on moisture dynamics in the unsaturated zone of beach aquifers, and show that these effects depend on wave conditions and beach characteristics. Results have implications for understanding transport and reaction of solutes in this biogeochemically active zone.
机译:沿海含水层的潮间带是盐水地表水和新鲜地下水之间混合的动态区域。该区域的地下水循环受到复杂的强迫机制的影响,这些机制在一定的时间范围内起作用,并且可以调节化学物质向海洋环境的通量。我们在两个波浪条件和海滩形态不同的沙滩含水层的非饱和区域中评估了波浪斜流引起的入渗和相关的水流动力学。湿度和压力传感器用于测量斜率较低的平均水位,平均海平面和较高的高水位的斜带中高频(5 Hz)的水含量,地下水位高程和水力梯度的波动。斜流带非饱和区的水含量对波浪超顶和斜流渗透有响应,水含量快速上升,随后缓慢下降。根据含水量响应,由斜流引起的不饱和渗透率在低潮附近最低,并在滩面向上增加,而在两个地点在高潮附近流入量最高,这与沿海滩的地下水位增加一致。在以波浪为主的海滩上,每个潮汐周期的不饱和渗入量为1.6 m〜3 / m,在以潮汐为主的海滩上,每个潮汐周期的不饱和渗透量为0.4 m〜3 / m。饱和孔隙压力测量结果表明,由于潮水渗透而形成的地下水位丘在潮汐上升期间在海滩上向上迁移,导致地下水向海/陆向扩散。结果表明,斜波冲刷对海滩含水层非饱和区水分动力学的显着和空间可变影响,并表明这些影响取决于波浪条件和海滩特征。结果对于理解该生物地球化学活性区中溶质的运移和反应具有重要意义。

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