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首页> 外文期刊>Hydrogeology journal >Spatial multi-criteria analysis for selecting potential sites for aquifer recharge via harvesting and infiltration of surface runoff in north Jordan
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Spatial multi-criteria analysis for selecting potential sites for aquifer recharge via harvesting and infiltration of surface runoff in north Jordan

机译:空间多准则分析,通过在约旦北部收获和渗透地表径流来选择含水层补给的潜在地点

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摘要

In (semi-)arid regions, available water resources are scarce and groundwater resources are often overused. Therefore, the option to increase available water resources by managed aquifer recharge (MAR) via infiltration of captured surface runoff was investigated for two basins in northern Jordan. This study evaluated the general suitability of catchments to generate sufficient runoff and tried to identify promising sites to harvest and infiltrate the runoff into the aquifer for later recovery. Large sets of available data were used to create regional thematic maps, which were then combined to constraint maps using Boolean logic and to create suitability maps using weighted linear combination. This approach might serve as a blueprint which could be adapted and applied to similar regions. The evaluation showed that non-committed source water availability is the most restricting factor for successful water harvesting in regions with < 200 mm/a rainfall. Experiences with existing structures showed that sediment loads of runoff are high. Therefore, the effectiveness of any existing MAR scheme will decrease rapidly to the point where it results in an overall negative impact due to increased evaporation if maintenance is not undertaken. It is recommended to improve system operation and maintenance, as well as monitoring, in order to achieve a better and constant effectiveness of the infiltration activities.
机译:在(半)干旱地区,可用水资源稀缺,地下水资源经常被过度利用。因此,在约旦北部的两个盆地,研究了通过捕获的地表径流的渗透来通过有管理的含水层补给(MAR)增加可用水资源的选择。这项研究评估了集水区产生足够径流量的一般适用性,并试图确定有希望的地点来收集和渗入径流到含水层中以供以后恢复。使用大量可用数据来创建区域主题图,然后使用布尔逻辑将其组合为约束图,并使用加权线性组合来创建适用性图。该方法可以用作可被修改并应用于相似区域的蓝图。评估表明,在降水量小于200 mm / a的地区,无承诺的水源可获得性是成功集水的最大限制因素。现有结构的经验表明,径流的泥沙量很高。因此,如果不进行维护,现有的MAR方案的有效性将迅速下降,以至于由于蒸发增加而导致总体负面影响。建议改善系统的操作和维护以及监控,以实现渗透活动的更好和持续的有效性。

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