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首页> 外文期刊>Hydrology >Highlighting the Role of Groundwater in Lake– Aquifer Interaction to Reduce Vulnerability and Enhance Resilience to Climate Change
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Highlighting the Role of Groundwater in Lake– Aquifer Interaction to Reduce Vulnerability and Enhance Resilience to Climate Change

机译:强调地下水在湖水层相互作用中的作用,以减少脆弱性并增强对气候变化的适应力

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method is presented to analyze the interaction between groundwater and Lake Linlithgow (Australia) as a case study. A simplistic approach based on a “node” representing the groundwater component is employed in a spreadsheet of water balance modeling to analyze and highlight the effect of groundwater on the lake level over time. A comparison is made between the simulated and observed lake levels over a period of time by switching the groundwater “node “on and off. A bucket model is assumed to represent the lake behaviour. Although this study demonstrates the understanding of Lake Linlithgow’s groundwater system, the current model reflects the contemporary understanding of the local groundwater system, illustrates how to go about modeling in data-scarce environments, and provides a means to assess focal areas for future data collection and model improvements. Results show that this approach is convenient for getting first‐hand information on the effect of groundwater on wetland or lake levels through lake water budget computation via a node representing the groundwater component. The method can be used anywhere and the applicability of such a method is useful to put in place relevant adaptation mechanisms for future water resources management, reducing vulnerability and enhancing resilience to climate change within the lake basin.
机译:提出了一种方法来分析地下水与林里斯哥湖(澳大利亚)之间的相互作用。在水平衡模型电子表格中,采用了一种基于代表地下水成分的“节点”的简化方法,以分析和突出地下水随时间推移对湖泊水位的影响。通过打开和关闭地下水“节点”,可以比较一段时间内的模拟湖泊水位和观测湖泊水位。假设使用桶模型来表示湖泊行为。尽管此研究证明了对Linlithgow湖地下水系统的理解,但当前模型反映了当代对本地地下水系统的理解,说明了如何在数据稀缺的环境中进行建模,并提供了评估未来数据收集重点领域的方法。模型改进。结果表明,该方法可方便地通过代表地下水成分的节点通过湖泊水预算计算来获得有关地下水对湿地或湖泊水位影响的第一手信息。该方法可以在任何地方使用,这种方法的适用性对于为未来的水资源管理建立适当的适应机制,减少脆弱性和增强对湖盆内的气候变化的适应力是有用的。

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