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Parameterization and quantification of recharge in crystalline fractured bedrocks in Galicia-Costa (NW Spain)

机译:加利西亚-哥斯达黎加(西班牙西北部)结晶裂隙基岩中补给的参数化和量化

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摘要

Quantifying groundwater recharge in crystalline rocks presents great difficulties due to the high heterogeneity of the underground medium (mainly, due to heterogeneity in fracture network, which determines hydraulic parameters of the bedrock like hydraulic conductivity or effective porosity). Traditionally these rocks have been considered to have very low permeability, and their groundwater resources have usually been neglected; however, they can be of local importance when the bedrock presents a net of well-developed fractures. The current European Water Framework Directive requires an efficient management of all groundwater resources; this begins with a proper knowledge of the aquifer and accurate recharge estimation. In this study, an assessment of groundwater resources in the Spanish hydrologic district of Galicia-Costa, dominated by granitic and metasedimentary rocks, was carried out. A water-balance modeling approach was used for estimating recharge rates in nine pilot catchments representatives of both geologic materials. These results were cross-validated with an independent technique, i.e. the chloride mass balance (CMB). A relation among groundwater recharge and annual precipitation according to two different logistic curves was found for both granites and metasedimentary rocks, thus allowing the parameterization of recharge by means of only a few hydrogeological parameters. Total groundwater resources in Galicia-Costa were estimated to be 4427 hm3 yr?? 1. An analysis of spatial and temporal variability of recharge was also carried out.
机译:由于地下介质的高度非均质性(主要是由于裂缝网络中的非均质性决定了基岩的水力参数,如水力传导率或有效孔隙度),因此对结晶岩中的地下水补给进行量化存在很大困难。传统上,这些岩石被认为渗透率非常低,通常忽略了它们的地下水资源。但是,当基岩呈现出发育良好的裂缝网时,它们可能具有局部重要性。当前的《欧洲水框架指令》要求对所有地下水资源进行有效管理;首先要有对含水层的正确认识和准确的补给估算。在这项研究中,对加利西亚-哥斯达黎加西班牙水文区的地下水资源进行了评估,该地区以花岗岩和准沉积岩为主。水平衡建模方法用于估算两种地质材料的九个试点集水区的补给率。使用独立技术,即氯化物质量平衡(CMB),对这些结果进行了交叉验证。根据花岗岩和准沉积岩的两条逻辑曲线,发现了地下​​水补给量与年降水量之间的关系,因此仅通过几个水文地质参数就可以对补给量进行参数化。加利西亚-哥斯达黎加的地下水总资源估计为4427 hm3年。 1.还进行了补给的时空变化分析。

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