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Stable isotopic fingerprint of a hyporheic-hypolentic boundary in a reservoir

机译:储层中低渗-低渗边界的稳定同位素指纹

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Stable isotopes of H2O are used to de. ne the hyporheic-hypolentic boundary in Ledbetter Creek as it discharges to Kentucky Lake, a constructed reservoir in western Kentucky, USA. High-resolution (centimeter-scale) sample collection and analysis were utilized to determine one-dimensional variations in delta H-2 and delta O-18 of H2O and chloride (Cl-) across the boundary. During reservoir low stand in winter, the hyporheic-hypolentic zone contains water from Ledbetter Creek and groundwater separated by an interface at similar to 10 cm below the channel bottom. Following reservoir-stage increase in spring and summer, water from Kentucky Lake infiltrates into the hyporheic-hypolentic zone to a depth of at least 18 cm below the channel bottom. Reservoir-stage decline in autumn causes source-water mixing, largely obscuring the hyporheic-hypolentic boundary. Stable isotopes provide an effective complement to conventional tracers for delineation of water masses within the hyporheic-hypolentic zone.
机译:H 2 O的稳定同位素被用来定义。在Ledbetter Creek的流变-低渗边界处,向美国肯塔基州西部的人工水库肯塔基湖排放。高分辨率(厘米级)样本收集和分析被用来确定H2O和氯化物(Cl-)的H-2和H-18的一维变化。在冬季水库低水位期间,低渗-低渗带包含Ledbetter Creek的水和地下水,该水通过界面分开,位于通道底部下方约10 cm。在春季和夏季的水库蓄水量增加之后,来自肯塔基湖的水渗透到水流-低渗带中,到达水道底部至少18 cm的深度。秋季水库阶段的下降导致水源混合,很大程度上掩盖了流变-低渗边界。稳定的同位素为常规示踪剂提供了有效的补充,以勾勒出流变-低渗带内的水团。

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