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Simulation of the impact of managed aquifer recharge on the groundwater system in Hanoi, Vietnam

机译:越南河内地下水系统对地下水系统影响的模拟

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A transient numerical groundwater flow model using MODFLOW-NWT was set up and calibrated for Hanoi city, Vietnam, to understand the local groundwater flow system and to suggest solutions for sustainable water resource management. Urban development in Hanoi has caused a severe decline of groundwater levels. The present study evaluates the actual situation and investigates the suitability of managed aquifer recharge (MAR) to stop further depletion of groundwater resources. The results suggest that groundwater is being overexploited, as vast cones of depression exist in parts of the study area. Suitable locations to implement two MAR techniquesriverbank filtration and injection wellswere identified using multi-criteria decision analysis based on geographic information system (GIS). Three predictive scenarios were simulated. The relocation of pumping wells towards the Red River to induce riverbank filtration (first scenario) demonstrates that groundwater levels can be increased, especially in the depression cones. Groundwater levels can also be improved locally by the infiltration of surplus water into the upper aquifer (Holocene) via injection wells during the rainy season (second scenario), but this is not effective to raise the water table in the depression cones. Compared to the first scenario, the combination of riverbank filtration and injection wells (third scenario) shows a slightly raised overall water table. Groundwater flow modeling suggests that local overexploitation can be stopped by a smart relocation of wells from the main depression cones and the expansion of riverbank filtration. This could also avoid further land subsidence while the city's water demand is met.
机译:使用Modflow-NWT的瞬态数值地下水流量模型为越南河内市设立和校准,了解当地地下水系统,并建议可持续水资源管理的解决方案。河内城市发展导致地下水位严重下滑。本研究评估了实际情况,并调查了管理含水层充值(MAR)以阻止地下水资源进一步消耗的适用性。结果表明,地下水正在过度开放,因为抑郁症存在于研究区域的部分存在。利用基于地理信息系统(GIS)的多标准决策分析确定了使用多标准决策分析来实现两个MAR TechniqueSriverbank过滤和注射健康的位置。模拟了三种预测场景。将泵送井的迁移朝向红河诱导河岸过滤(第一场景)证明了地下水位可以增加,特别是在凹陷锥体中。在雨季(第二场景)期间,通过注射井渗透到上层含水层(第二场景)中,在地下水位也可以通过渗透到上层含水层(全新世),但这对抑郁锥中的水桌升高,这是无效的。与第一场景相比,河岸过滤和注射井(第三场景)的组合显示了略微凸起的整个水位。地下水流动建模表明,通过来自主要凹陷锥的井型井的智能搬迁和河岸过滤的扩展,可以停止局部过度浮夸。这也可以避免进一步的土地沉降,而城市的需求则满足。

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