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Simulation of baseflow accounting for the effect of bank storage and its implication in baseflow separation

机译:考虑库存储影响的基流会计模拟及其对基流分离的影响

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Most baseflow separation methods for measured streamflow discharge series are based on linear and non-linear solutions of the Dupuit-Boussinesq stream-aquifer model and do not take diverse geological, hydrological, and morphological factors into account. Therefore, a key issue in baseflow separation and drought flow estimation is to reveal baseflow variations related to these factors. This study analyzed the baseflow generated from the return of bank storage to the stream using a numerical groundwater model. Under different stream-aquifer hydrologic conditions in terms of river flood-wave shapes, hydraulic conductivities, stream-aquifer interconnection, recharge and evapotranspiration, and regional hydraulic gradients, baseflow was simulated in order to investigate the non-linearity in the baseflow recession process and to evaluate the baseflow separation methods for drought flow analysis. A comparison between flood recession derived from the Boussinesq equation and that from numerical models indicated that a linear aquifer system does not hold for bank storage effects. Analyses of numerically simulated baseflow discharge also demonstrate that values of power indices of the widely used storage-discharge functions which are derived from the single-valued power law are not constant but depend on hydraulic conductivities, stream-aquifer interconnection, and other surface hydrologic conditions. Bank storage due to the stream flood-stage fluctuation reduces groundwater discharge into the channel considerably in the flood stage rising period. Thus, neglecting the influence of bank storage on baseflow would result in a large error in baseflow separation for non-ideal stream-aquifer systems. (c) 2006 Elsevier B.V. All rights reserved.
机译:大多数用于测量水流排放量序列的基本流分离方法都是基于Dupuit-Boussinesq水流-含水层模型的线性和非线性解决方案,并且没有考虑各种地质,水文和形态因素。因此,基流分离和干旱流量估算中的关键问题是揭示与这些因素有关的基流变化。这项研究使用数值地下水模型分析了从银行存储返回到河流产生的基流。在河流洪水波形,水力传导率,水-水连通,补给和蒸散以及区域水力梯度等不同的水-含水层水文条件下,模拟了基流,以研究基流衰退过程中的非线性。评价用于干旱流分析的基流分离方法。从Boussinesq方程得出的洪水衰退与从数值模型得出的洪水衰退之间的比较表明,线性蓄水层系统不能满足河岸蓄水的影响。数值模拟基流流量的分析还表明,从单值功率定律推导的广泛使用的存储-排放函数的功率指数值不是恒定的,而是取决于水力传导率,流水-含水层互连以及其他地表水文条件。由于洪水泛洪期的波动而引起的河岸蓄水在洪水泛滥期的上升过程中大大减少了地下水向河道的排放。因此,对于非理想的流水含水层系统,如果忽略库存储对基准流的影响,将导致基准流分离中的较大误差。 (c)2006 Elsevier B.V.保留所有权利。

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