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Dependency of hydrologic responses and recharge estimates on water-level monitoring locations within a small catchment

机译:小流域内水位监测位置的水文响应和补给估算的依赖性

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摘要

Estimation of groundwater recharge is essential for planning sustainable groundwater development. In this study, recharge ratios were estimated using the groundwater hydrographs obtained from monitoring wells located in a small catchment (0.256 km2). The catchment area is a triangular alluvial plain bounded by gentle hills and a large stream. For the recharge estimation, the modified water-table fluctuation (WTF) method was used. Although the study area is very small, the groundwater hydrographs were very different depending on the thickness of the unsaturated zone and the distance of the monitoring well from the main stream. Where the unsaturated zone is thick, the groundwater level changes smoothly in response to rainfall and resulting amplitude is small. In addition, the hydrographs closer to the stream showed quicker responses and larger fluctuations. Resultant recharge estimates showed a very wide variation between 2.5 and 20.1%. Compared with 12.7% estimated by other study mainly based on the water budget analyses, the recharge ratios were underestimated in upgradient area (hills) while they were overestimated in downgradient area (stream). Therefore, for representative and appropriate recharge estimation based on the groundwater hydrographs, it appears that the monitoring location is most important.
机译:估算地下水补给对于规划可持续的地下水开发至关重要。在这项研究中,补给率是使用从位于小流域(0.256 km2 )的监测井获得的地下水水位图估算的。集水区是一个三角形的冲积平原,周围是平缓的丘陵和大溪流。对于补给估算,使用了改进的地下水位波动(WTF)方法。尽管研究区域很小,但地下水水位图却有很大不同,这取决于非饱和带的厚度和监测井与主流之间的距离。在非饱和带较厚的地方,地下水位随降雨而平稳变化,因此幅度很小。另外,更靠近水流的水文图显示出更快的响应和更大的波动。最终的补给估算显示出2.5%和20.1%之间的很大差异。与其他研究(主要基于用水预算分析)估计的12.7%相比,回灌率在坡度较高的区域(丘陵)被低估,而在坡度较低的区域(河流)则被高估。因此,对于基于地下水水位图的代表性且适当的补给估算,似乎监测位置最为重要。

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