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Quantifying Stream-Aquifer Interactions through the Analysis of Remotely Sensed Thermographic Profiles and In Situ Temperature Histories

机译:通过分析遥感热成像剖面和原位温度历史来定量流-水层相互作用

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摘要

The interaction between surface and subsurface waters through hyporheic exchange and baseflow is critical to maintaining ecological health in streams.During warm periods,groundwater-surface water interactions have two primary effects on stream temperature:(1)cool groundwater discharging as baseflow lowers stream temperature and (2)hyporheic exchange buffers diurnal stream temperature variations.We demonstrate,for the first time,how high-resolution,remotely sensed forward-looking infrared (FLIR)images and instream temperature data can be used to quantify detailed spatial patterns of groundwater discharge to a 1.7 km reach of Cottonwood Creek in Plumas National Forest,CA.We quantify the individual effects of baseflow and hyporheic exchange on stream temperatures by simulating the stream energy budget under different conceptual models of the stream-aquifer interaction.Observed spatial and temporal patterns of stream temperature are consistent with an increase in baseflow and hyporheic exchange within the middle,restored stream reach when compared to groundwater fluxes in the surrounding,unrestored reaches.One implication is that pond and plug stream restoration may improve the aquatic habitat by depressing maximum stream temperatures by >3 deg C (K).
机译:地表水与地下水之间的交换作用和基流之间的相互作用对于维持河流的生态健康至关重要。在温暖时期,地下水与地表水之间的相互作用对河流温度有两个主要影响:(1)冷却地下水排放,因为基流降低了河流温度; (2)疏水交换缓冲了昼夜河水的温度变化。我们首次展示了高分辨率,遥感的前瞻性红外(FLIR)图像和河道内温度数据如何可用于量化地下水排放的详细空间格局。在美国加利福尼亚州Plumas国家森林的卡顿伍德溪(Cottonwood Creek)的1.7公里处,我们通过模拟不同水流-水层相互作用概念模型下的水流能量收支,量化了基流和水交换对河水温度的个体影响。溪流温度与底流增加和低排泄率一致与周围未恢复河段的地下水通量相比,中间恢复河段的水位较高。其中一个暗示是,池塘和塞流恢复可通过将最高溪流温度降低> 3摄氏度(K)来改善水生生境。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第10期|p.3336-3341|共6页
  • 作者单位

    Department of Geological and Environmental Sciences,Stanford University,Stanford,CA 94305-2115;

    Department of Geological and Environmental Sciences,Stanford University,Stanford,CA 94305-2115;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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