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Analyzing streamflow changes: irrigation-enhanced interaction between aquifer and streamflow in the Republican River basin

机译:分析水流变化:共和河流域中含水层与水流之间的灌溉增强相互作用

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摘要

Groundwater-fed irrigation has altered surface and groundwater interactions in the Republic River basin (RRB) in the midwestern United States, where agriculture heavily depends on irrigation. The decreasing flow trend recorded at the RRB gauging station since the 1950s reflects the synthetical effect of dynamic interactions between surface water and groundwater systems, which has been enhanced by groundwater pumping and irrigation return flow. This study uses a systematic modeling approach to analyze the conjunctive effects of pumping and return flow on streamflow. A watershed management model, the Soil and Water Assessment Tool (SWAT), is modified and established for the Frenchman Creek basin (FCB), a subbasin of RRB, to examine the causes of streamflow changes. The baseflow component in SWAT is linked to aquifer storage so that the model can simulate the combined effects of groundwater pumping and irrigation return flow on natural streamflow. Results show that irrigation has not only depleted streamflow but also changed the flow pattern and seasonal variability. The changes can be decomposed into decrease in the slow component (baseflow) and increase in the fast components (surface and subsurface flow). Since the fast components are subject to higher variability than the slow component, the annual streamflow variability is amplified. Agricultural water use in this region also has changed the groundwater storage seasonal regime from the pattern of "summer recharge and winter discharge" in the past to "summer discharge and winter recharge" at present. This challenges the existing groundwater modeling, which usually assumes fixed recharge pattern and rates.
机译:地下水灌溉已经改变了美国中西部共和国河盆地(RRB)的地表水和地下水相互作用,那里的农业严重依赖灌溉。自1950年代以来,在RRB监测站记录的流量下降趋势反映了地表水与地下水系统之间动态相互作用的综合效应,而地下水的泵送和灌溉回流又增强了这种相互作用。这项研究使用系统的建模方法来分析泵送和回流对水流的联合影响。修改并建立了流域管理模型,即土壤和水评估工具(SWAT),用于RRB的次流域弗朗西曼克里克盆地(FCB),以检查水流变化的原因。 SWAT中的基流组件与含水层存储相关联,因此该模型可以模拟地下水泵送和灌溉回流对自然流的综合影响。结果表明,灌溉不仅耗尽了水流,而且改变了水流模式和季节变化。这些变化可以分解为慢速分量的减少(基流)和快速分量的增加(地表和地下流量)。由于快组分比慢组分具有更高的可变性,因此年流量变化性被放大了。该地区的农业用水也已将地下水存储的季节性方式从过去的“夏季补给和冬季补给”模式改变为目前的“夏季补给和冬季补给”。这对现有的地下水模型提出了挑战,该模型通常采用固定的补给模式和补给率。

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