首页> 外文期刊>Hydrological Processes >Improved understanding of spatio-temporal controls on regional scale groundwater flooding using hydrograph analysis and impulse response functions
【24h】

Improved understanding of spatio-temporal controls on regional scale groundwater flooding using hydrograph analysis and impulse response functions

机译:利用水文图分析和脉冲响应函数更好地理解区域尺度地下水驱的时空控制

获取原文
获取原文并翻译 | 示例
           

摘要

Controls on the spatio-temporal extent of groundwater flooding are poorly understood, despite the long duration of groundwater flood events and distinct social and economic impacts. We developed a novel approach using statistical analysis of groundwater level hydrographs and impulse response functions (IRFs) and applied it to the 2013/2014 Chalk groundwater flooding in the English Lowlands. We proposed a standardized index of groundwater flooding which we calculated for monthly groundwater levels for 26 boreholes in the Chalk. We grouped these standardized series using k-means cluster analysis and cross-correlated the cluster centroids with the Standardized Precipitation Index accumulated over time intervals between 1 and 60months. This analysis reveals 2 spatially coherent groups of standardized hydrographs that responded to precipitation over different timescales. We estimated IRF models of the groundwater level response to effective precipitation for 3 boreholes in each group. The IRF models corroborate the Standardized Precipitation Index analysis showing different response functions between the groups. We applied identical effective precipitation inputs to each of the IRF models and observed differences between the hydrographs from each group. It is suggested this is due to the hydrogeological properties of the Chalk and of overlying relatively low permeability superficial deposits (recent unconsolidated sediments overlying the bedrock, such as clays and tills), which are extensive over 1 of the groups. The overarching controls on groundwater flood response are concluded to be a complex combination of antecedent conditions, rainfall, and catchment hydrogeological properties. These controls should be taken into consideration when anticipating and managing future groundwater flood events. The approach presented is generic and parsimonious and can be easily applied where sufficient groundwater level and rainfall data are available.
机译:尽管地下水泛滥事件持续时间长,社会和经济影响显着,但对地下水泛滥的时空范围的控制知之甚少。我们开发了一种利用地下水水位图和冲激响应函数(IRF)的统计分析的新方法,并将其应用于2013/2014年英国低地的Chalk地下水洪水。我们提出了一个标准的地下水泛滥指数,该指数是根据粉笔中26个钻孔的每月地下水位计算得出的。我们使用k均值聚类分析将这些标准化序列分组,并将聚类质心与在1到60个月之间的时间间隔内累积的标准化降水指数相互关联。这项分析揭示了2个空间连贯的标准化水文图组,它们在不同的时间尺度上响应降水。我们估算了每组中3个井眼的地下水位对有效降水响应的IRF模型。 IRF模型证实了标准化降水指数分析,显示了各组之间不同的响应函数。我们对每个IRF模型应用了相同的有效降水输入,并观察了每组水文图之间的差异。有人认为这是由于白垩的水文地质性质和相对较低的渗透率表层沉积物(上覆基岩的近期未固结沉积物,如粘土和耕层)所致,其分布范围超过其中的一组。结论是对地下水洪水响应的总体控制是先决条件,降雨和集水区水文地质特性的复杂组合。在预期和管理未来的地下水洪灾事件时,应考虑这些控制措施。提出的方法是通用且简单的,可以在有足够的地下水位和降雨量数据的地方轻松应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号