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Groundwater transit time distribution and mean from streambed sampling in an agricultural coastal plain watershed, North Carolina, USA

机译:地下水运输时间分布及均值 在美国北卡罗来纳州的一个农业沿海平原流域进行河床采样

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摘要

We measured groundwater apparent age (s) and seepage rate (v) in a sandy streambed using point-scale sampling and seepage blankets (a novel seepage meter). We found very similar MTT estimates from streambed point sampling in a 58 m reach (29 years) and a 2.5 km reach (31 years). The TTD for groundwater discharging to the stream was best fit by a gamma distribution model and was very similar for streambed point sampling in both reaches. Between adjacent point-scale and seepage blanket samples, water from the seepage blankets was generally younger, largely because blanket samples contained a fraction of ‘‘young’’ stream water. Correcting blanket data for the stream water fraction brought s estimates for most blanket samples closer to those for adjacent point samples. The MTT estimates from corrected blanket data were in good agreement with those from sampling streambed points adjacent to the blankets. Collectively, agreement among age-dating tracers, general accord between tracer data and piston-flow model curves, and large groundwater age gradients in the streambed, suggested that the piston flow apparent ages were reasonable estimates of the groundwater transit times for most samples. Overall, our results from two field campaigns suggest that groundwater collected in the streambed can provide reasonable estimates of apparent age of groundwater discharge, and that MTT can be determined from different agedating tracers and by sampling with different groundwater collection devices. Coupled streambed point measurements of groundwater age and groundwater seepage rate represent a novel, reproducible, and effective approach to estimating aquifer TTD and MTT.
机译:我们使用点规模采样和防渗毯(新型防渗仪)测量了沙质河床中的地下水表观年龄(s)和渗透率(v)。我们在58 m的范围(29年)和2.5 km的范围(31年)中从流点采样中发现了非常相似的MTT估计。伽马分布模型最适合将地下水排放到河流中的TTD,并且对于两个河段的河床点采样都非常相似。在相邻的点尺度和渗流毯样本之间,渗流毯的水通常较年轻,这主要是因为覆盖物样本中含有少量的“年轻”水流。校正河床水含量的覆盖数据可以使大多数覆盖样品的估计值更接近于相邻点样品的估计值。根据校正后的覆盖层数据得出的MTT估算值与对覆盖层附近的流化点进行采样得到的估算值高度吻合。总的来说,年龄追溯示踪剂之间的一致性,示踪剂数据与活塞流模型曲线之间的总体吻合以及河床中较大的地下水年龄梯度,表明大多数样品的活塞流表观年龄都是对地下水过渡时间的合理估计。总体而言,我们从两次野外活动获得的结果表明,在河床中收集的地下水可以合理估算出地下水的表观年龄,并且可以从不同的老化追踪器和通过使用不同的地下水收集装置进行采样来确定MTT。地下水年龄和地下水渗流率的流床耦合测量代表了一种新颖,可重复且有效的估算含水层TTD和MTT的方法。

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