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首页> 外文期刊>Journal of Hydrology >Comparison of tracer methods to quantify hydrodynamic exchange within the hyporheic zone
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Comparison of tracer methods to quantify hydrodynamic exchange within the hyporheic zone

机译:比较示踪法以量化流变带内的流体动力交换

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摘要

Hydrodynamic exchange between surface-water and groundwater was studied at a river located within the Rhine Valley in Germany. Piezometric pressure heads and environmental tracers such as temperature, stable isotopes, chloride, X-ray contrast media, and artificial sweetener were investigated within the hyporheic zone and river water plume. Vertical profiles of environmental tracers were collected using multi-level wells within the neutral up-gradient zone, beneath the river bed, and within the horizontal proximal and distal down-gradient zone. Infiltration velocities were calculated from pressure heads, temperature fluctuations and gradients. The amount of river water within groundwater was estimated from vertical profiles of chloride, stable isotopes, and persistent pharmaceuticals. Profiles of stable isotopes and chloride reveal the existence of down-welling within the shallow hyporheic zone that is generated by river bed irregularities. Due to down-welling an above-average migration of river water into the hyporheic zone establishes even under upward hydraulic pressure gradients. The investigated environmental tracers could not distinctively display short-time-infiltration velocities representative for flood waves, while average infiltration velocities calculated over several months are uniform displayed. Based on vertical temperature profiles the down-gradient migration of the river water plume could be observed even after long periods of effluent conditions and over a distance of 200. m from the river bank. X-ray contrast media and artificial sweeteners were observed in high concentrations within the proximal zone, but were not detected at a distance of 200. m from the river bank. Using temperature as environmental tracer within the hyporheic zone may result in overestimating the migration of pollutants within the river water plume as the process of natural attenuation will be neglected. Furthermore, temperature was not able to display the effect of down-welling. Stable isotopes and chloride were found to be suitable environmental tracers to forecast the release and fate of organic contaminants within the hyporheic zone.
机译:在德国莱茵河谷内的一条河流上研究了地表水和地下水之间的水动力交换。在流变区和河水羽流中研究了压力测压头和环境示踪剂,例如温度,稳定的同位素,氯化物,X射线造影剂和人造甜味剂。使用中性上坡度带,河床下方以及水平近端和远端下坡带区域内的多级井收集环境示踪剂的垂直剖面。从压头,温度波动和梯度计算渗透速度。根据氯化物,稳定同位素和持久性药物的垂直剖面估算地下水中的河水量。稳定同位素和氯化物的分布图揭示了由河床不规则性引起的浅水流带中存在向下流。由于井下运动,即使在向上的液压梯度下,河水也进入高于流域的区域迁移。被调查的环境示踪剂不能明显地显示出代表洪水的短时渗透速度,而均匀显示了过去几个月计算出的平均渗透速度。根据垂直温度曲线,即使经过长时间的排污条件并且距河岸200. m的距离,也可以观察到河水羽流的下降趋势。在近端区域内观察到高浓度的X射线造影剂和人造甜味剂,但在距河岸200.m处未检测到。使用温度作为流变带内的环境示踪剂可能会导致高估河水羽流中污染物的迁移,因为自然衰减的过程将被忽略。此外,温度不能显示下降的影响。稳定的同位素和氯化物被发现是预测环境变质带内有机污染物释放和去向的合适环境示踪剂。

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