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Groundwater Modeling as an Alternative Approach to Limited Data in the Northeastern Part of Mt. Hermon (Syria), to Develop a Preliminary Water Budget

机译:地下水模型作为山东北部有限数据的替代方法。赫尔蒙(叙利亚),拟定初步水预算

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In developing countries such as Syria, the lack of hydrological data affects groundwater resource assessment. Groundwater models provide the means to fill the gaps in the available data in order to improve the understanding of groundwater systems. The study area can be considered as the main recharge area of the eastern side of Barada and Awaj basin in the eastern part of Mt. Hermon. The withdrawal for agricultural and domestic purposes removes a considerable amount of water. The steady-state three-dimensional (3D) groundwater model (FEFLOW which is an advanced finite element groundwater flow and transport modeling tool), was used to quantify groundwater budget components by using all available data of hydrological year 2009–2010. The results obtained may be considered as an essential tool for groundwater management options in the study area. The calibrated model demonstrates a good agreement between the observed and simulated hydraulic head. The result of the sensitivity analysis shows that the model is highly sensitive to hydraulic conductivity changes and sensitive to a lesser extent to water recharge amount. Regarding the upper aquifer horizon, the water budget under steady-state condition indicates that the lateral groundwater inflow from the Jurassic aquifer into this horizon is the most important recharge component. The major discharge component from this aquifer horizon occurs at its eastern boundary toward the outside of the model domain. The model was able to produce a satisfying estimation of the preliminary water budget of the upper aquifer horizon which indicates a positive imbalance of 4.6 Mm3·y−1.
机译:在叙利亚等发展中国家,缺乏水文数据会影响地下水资源评估。地下水模型提供了填补现有数据空白的方法,以增进对地下水系统的了解。该研究区可被视为山东部Barada和Awaj盆地东侧的主要补给区。黑门用于农业和家庭用途的取水会去除大量的水。稳态三维(3D)地下水模型(FEFLOW是一种先进的有限元地下水流量和运输建模工具),用于通过使用2009-2010年水文年的所有可用数据来量化地下水预算组成部分。获得的结果可能被认为是研究区域地下水管理选择的必要工具。校准后的模型表明,观察到的和模拟的液压头之间有很好的一致性。敏感性分析的结果表明,该模型对水力传导率变化高度敏感,对水补给量的敏感性较小。关于上层含水层,在稳态条件下的水量预算表明,从侏罗系含水层流入该层的地下水是最重要的补给成分。来自该含水层层的主要排放分量发生在其东部边界处,朝向模型域的外部。该模型能够对含水层上层水平的初步水预算产生令人满意的估计,表明4.6 Mm 3 ·y -1 为正失衡。

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