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首页> 外文期刊>Hydrology and Earth System Sciences >A hierarchical approach on groundwater-surface water interaction in wetlands along the upper Biebrza River, Poland
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A hierarchical approach on groundwater-surface water interaction in wetlands along the upper Biebrza River, Poland

机译:波兰比布雷萨河上游湿地中地下水与地表水相互作用的分层方法

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摘要

As recognized in the European Water Framework Directive, groundwater-dependent wetlands and their diverse ecosystems have important functions which need to be protected. The vegetation in such habitats is often dependent on quality, quantity and patterns of river discharge and groundwater-surface water interaction on a local or reach scale. Since groundwater-surface water exchange studies on natural rivers and wetlands with organic soils are scarce, more functional analysis is needed. To this end we combined different field methods including piezometer nests, temperature as tracer and seepage meter measurements. Some of these measurements were used as inputs and/or as validation for the numerical 1-D heat transport model STRIVE. In transient mode the model was used to calculate spatially distributed vertical exchange fluxes from temperature profiles measured at the upper Biebrza River in Poland over a period of nine months. Time series of estimated fluxes and hydraulic head gradients in the hyporheic zone were used to estimate the temporal variability of groundwater-surface water exchange. This paper presents a hierarchical approach for quantifying and interpreting groundwater-surface water interaction in space and time. The results for the upper Biebrza show predominantly upward water fluxes, sections of recharge, however, exist along the reach. The fluxes depend more on hydraulic gradients than on riverbed conductivity. This indicates that the fluvio-plain scale is required for interpreting the exchange fluxes, which are estimated on a local scale. The paper shows that a conceptual framework is necessary for understanding the groundwater-surface water interaction processes, where the exchange fluxes are influenced by local factors like the composition of the riverbed and the position of the measurement on a local scale, and by regional factors like the hydrogeology and topography on a fluvio-plain scale. The hierarchical methodology increases the confidence in the estimated exchange fluxes and improves the process understanding. The accuracy of the measurements and related uncertainties, however, remain challenges for wetland environments. Gaining quantitative information on groundwater-surface water interaction can improve modeling confidence and as a consequence helps to develop effective procedures for management and conservation of valuable groundwater dependent wetlands.
机译:正如欧洲水框架指令所承认的那样,依赖地下水的湿地及其多样化的生态系统具有重要的功能,需要加以保护。这些生境中的植被通常取决于局部或范围尺度上河流的水质,数量和模式以及地下水与地表水的相互作用。由于缺乏对天然河流和有机土壤湿地进行地下水-地表水交换的研究,因此需要进行更多的功能分析。为此,我们结合了不同的现场方法,包括测压嵌套,温度示踪剂和渗漏计测量。这些测量中的一些用作数值一维传热模型STRIVE的输入和/或验证。在瞬态模式下,该模型用于根据在9个月内在波兰比伯扎河上游测得的温度曲线计算空间分布的垂直交换通量。在流变区估计的通量和水力压降梯度的时间序列用于估计地下水-地表水交换的时间变化。本文提出了一种在空间和时间上定量和解释地下水-地表水相互作用的分层方法。比比萨河上游的结果显示,水流主要是向上的,但是补给部分却沿着河段存在。通量更多地取决于水力梯度而不是河床电导率。这表明在解释交换通量时需要使用flupla-plain量表,该量是在局部范围内估计的。本文表明,一个概念框架对于理解地下水与地表水的相互作用过程是必要的,在该过程中,交换通量受到诸如河床组成和测量位置在局部范围内的局部因素以及诸如局部尺度等区域因素的影响。平原地区的水文地质和地形。分层方法提高了对估计交换通量的置信度,并提高了对过程的理解。然而,测量的准确性和相关的不确定性仍然是湿地环境的挑战。获得有关地下水与地表水相互作用的定量信息可以提高模型的置信度,因此有助于开发有效的程序来管理和保护宝贵的地下水相关湿地。

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