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Uncertainty and urban water recharge for managing groundwater availability using decision support

机译:利用决策支持管理地下水可用性的不确定性和城市水补给

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Quantifying groundwater availability depends upon sound methods and the use of integrated models. To determine availability or sustainable yield, the influence of scientific uncertainty from key sources, such as anthropogenic recharge, must be considered. This study evaluates uncertainty in recharge interpretations on the modeled available water balance for an urban case in Texas, USA. Analyses are completed using the Groundwater Decision Support System, which is a research code-base for an integrated modeling. The case study develops spatially and temporally resolved recharge interpretations based on NEXRAD precipitation and detailed land use data. Results demonstrate the implications of scientific uncertainty as it influences recommendations for policy and urban water management decisions that are based on modeled outputs. Geospatial methods account for spatial and temporal components and can be replicated for other systems. These methods are also useful for resolving uncertainty in relation to the influence of urbanization on recharge through land use change.
机译:地下水可用性的量化取决于合理的方法和综合模型的使用。为了确定可用性或可持续产量,必须考虑来自关键来源(例如人为补给)的科学不确定性的影响。本研究评估了美国德克萨斯州城市案例中模拟可用水平衡的补给解释的不确定性。使用地下水决策支持系统完成分析,该系统是集成建模的研究代码库。该案例研究基于 NEXRAD 降水和详细的土地利用数据开发了空间和时间分辨率的补给解释。结果表明,科学不确定性的影响在于,它会影响基于模型产出的政策和城市水管理决策建议。地理空间方法考虑了空间和时间因素,可以复制到其他系统。这些方法也有助于解决城市化对土地利用变化对补给影响的不确定性。

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