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Simulation of aquifer-peatland-river interactions under climate change

机译:气候变化下含水层-农田-河流相互作用的模拟

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摘要

Wetlands play an important role in preventing extreme low flows in rivers and groundwater level drawdowns during drought periods. This hydrological function could become increasingly important under a warmer climate. Links between peatlands, aquifers, and rivers remain inadequately understood. The objective of this study was to evaluate the hydrologic functions of the Lanoraie peatland complex in southern Quebec, Canada, under different climate conditions. This peatland complex has developed in the beds of former fluvial channels during the final stages of the last deglaciation. The peatland covers a surface area of ~76 km~2 and feeds five rivers. Numerical simulations were performed using a steady-state groundwater flow model. Results show that the peatland contributes on average to 77% of the mean annual river base flow. The peatland receives 52% of its water from the aquifer. Reduced recharge scenarios (-20 and -50% of current conditions) were used as a surrogate of climate change. With these scenarios, the simulated mean head decreases by 0.6 and 1.6 m in the sand. The mean river base flow decreases by 16 and 41% with the two scenarios. These results strongly underline the importance of aquifer-peatland-river interactions at the regional scale. They also point to the necessity of considering the entire hydrosystem in conservation initiatives.
机译:在干旱期间,湿地在防止河流极低流量和地下水位下降方面起着重要作用。在温暖的气候下,这种水文功能可能变得越来越重要。对泥炭地,含水层和河流之间的联系仍然知之甚少。这项研究的目的是评估在不同气候条件下加拿大魁北克南部的Lanoraie泥炭地综合体的水文功能。在最后一次冰消的最后阶段,这个泥炭地复合体在以前的河道河床中形成。泥炭地覆盖〜76 km〜2的表面积,并养育了五条河流。使用稳态地下水流模型进行了数值模拟。结果表明,泥炭地平均贡献了年均河基流量的77%。泥炭地从含水层中吸收了52%的水。减少补给的情景(当前条件的-20%和-50%)被用来替代气候变化。在这些情况下,沙子中的模拟平均水头分别降低了0.6和1.6 m。在这两种情况下,平均河底流量分别减少了16%和41%。这些结果强烈强调了在区域范围内含水层-草原-河流相互作用的重要性。他们还指出有必要在保护计划中考虑整个水系。

著录项

  • 来源
    《Nordic hydrology》 |2014年第3期|425-440|共16页
  • 作者单位

    Departement des sciences de la Terre et de l'atmosphere - Universite du Quebec a Montreal, C.P. 8888, succ.Centre-Ville, Montreal (QC), Canada H3C 3P8, ESCER (Etude et simulation du climat a l'echelle regionale) and GEC3 (Global Environment and Climate Change Center) Research Centers;

    Departement des sciences de la Terre et de l'atmosphere - Universite du Quebec a Montreal, C.P. 8888, succ.Centre-Ville, Montreal (QC), Canada H3C 3P8, ESCER (Etude et simulation du climat a l'echelle regionale) and GEC3 (Global Environment and Climate Change Center) Research Centers, GEOTOP Research Center in geochemistry and geodynamics;

    Departement des sciences de la Terre et de l'atmosphere - Universite du Quebec a Montreal, C.P. 8888, succ.Centre-Ville, Montreal (QC), Canada H3C 3P8, GEOTOP Research Center in geochemistry and geodynamics;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aquifer; climate change; Lanoraie (Quebec; Canada); peatland; river;

    机译:含水层气候变化;Lanoraie(加拿大魁北克);泥炭地河;
  • 入库时间 2022-08-18 03:34:23

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