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Modeling groundwater/surface-water interactions in an Alpine valley (the Aosta Plain, NW Italy): the effect of groundwater abstraction on surface-water resources

机译:高山谷地下水/地表 - 水相互作用(澳大略省北北北北北北方意大利):地下水抽取对地表水资源的影响

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A groundwater flow model of the Alpine valley aquifer in the Aosta Plain (NW Italy) showed that well pumping can induce river streamflow depletions as a function of well location. Analysis of the water budget showed that similar to 80% of the water pumped during 2 years by a selected well in the downstream area comes from the baseflow of the main river discharge. Alluvial aquifers hosted in Alpine valleys fall within a particular hydrogeological context where groundwater/surface-water relationships change from upstream to downstream as well as seasonally. A transient groundwater model using MODFLOW2005 and the Streamflow-Routing (SFR2) Package is here presented, aimed at investigating water exchanges between the main regional river (Dora Baltea River, a left-hand tributary of the Po River), its tributaries and the underlying shallow aquifer, which is affected by seasonal oscillations. The three-dimensional distribution of the hydraulic conductivity of the aquifer was obtained by means of a specific coding system within the database TANGRAM. Both head and flux targets were used to perform the model calibration using PEST. Results showed that the fluctuations of the water table play an important role in groundwater/surface-water interconnections. In upstream areas, groundwater is recharged by water leaking through the riverbed and the well abstraction component of the water budget changes as a function of the hydraulic conditions of the aquifer. In downstream areas, groundwater is drained by the river and most of the water pumped by wells comes from the base flow component of the river discharge.
机译:Aosta Plain(NW Italy)中高山谷含水层的地下水流量模型表明,泵送良好的泵送可以作为井位置的函数诱导河流流耗尽。水预算分析显示,在下游地区的选定井中的2年内泵出的80%的水分来自主要河流排放的源泉。在阿尔卑斯山谷中举办的艾滋病含水层落在特定的水文地质背景范围内,地下水/地表 - 水关系从上游变为下游以及季节性。这里介绍了使用MODFOLF2005和Stream流程路由(SFR2)封装的瞬态地下水模型,旨在调查主要区域河流(Dora Baltea River,Po River的左手支流)之间的水交换,其支流和潜在的潜在浅含水层,受季节性振荡的影响。通过数据库达巴朗内的特定编码系统获得含水层的水力导电性的三维分布。用于使用害虫进行头部和磁通靶标进行模型校准。结果表明,水表的波动在地下水/地表 - 水互连中发挥着重要作用。在上游区域,地下水通过河床泄漏通过河床和水预算的良好抽象分量作为含水水液的液压条件的速度来充电。在下游地区,地下水被河流排出,大部分水泵都来自河流排放的基础流量分量。

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