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Modeling for Inter-Basin Groundwater Transfer Identification: The Case of Upper Rift Valley Lakes and Awash River Basins of Ethiopia

机译:流域间地下水转移识别模型:埃塞俄比亚上裂谷湖泊和阿瓦什河流域

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Groundwater movement beneath watershed divide is one component of the hydrological cycle that is typically ignored due to difficulty in analysis. Numerical ground-water models, like TAGSAC, have been used extensively for predicting aquifer responses to external stresses. In this paper TAGSAC code was developed to identify the inter-basin groundwater transfer (IBGWT) between upper Awash River basin (UARB) and upper rift valley lakes basin (URVLB) of Ethiopia. For the identification three steady state groundwater models (for UARB, URVLB and for the two combined basins) were first created and calibrated for the 926 inventoried wells. The first two models are conceptualized by considering the watershed divide between the two basins as no-flow. The third model avoids the surface water divide which justifies IBGWT. The calibration of these three models was made by changing the recharge and hydrogeologic parameters of the basins. The goodness of fit indicators (GoFIs) obtained was better for the combined model than the model that describes the URVLB. Furthermore, the hydraulic head distribution obtained from the combined model clearly indicates that there is a groundwater flow that doesn’t respect the surface water divide. The most obvious effect of IBGWT observed in these two basins is that it diminishes surface water discharge from URVLB, and enhances discharge in the UARB. Moreover, the result of this study indicates potential for internal and cross contamination of the two adjacent groundwater.
机译:流域划分以下的地下水运动是水文循环的一个组成部分,由于分析困难,通常被忽略。像TAGSAC这样的地下水数值模型已被广泛用于预测含水层对外部应力的响应。本文开发了TAGSAC代码,以识别埃塞俄比亚上阿瓦什河流域(UARB)和上裂谷湖流域(URVLB)之间的流域间地下水转移(IBGWT)。为了进行识别,首先创建了三个稳态地下水模型(分别针对UARB,URRVB和两个联合流域),并针对926个清单井进行了校准。前两个模型通过将两个流域之间的分水岭划分视为无水流来概念化。第三种模型避免了证明IBGWT合理的地表水分。通过改变盆地的补给量和水文地质参数对这三个模型进行校准。与描述URRVB的模型相比,组合模型获得的拟合指标(GoFI)更好。此外,从组合模型获得的水压头分布清楚地表明存在地下水流量不符合地表水水位分配的情况。在这两个盆地中观察到的IBGWT最明显的效果是,它减少了URVLB的地表水排放,并增强了UARB的排放。此外,这项研究的结果表明,潜在的内部和交叉污染的两个相邻的地下水。

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