Groundwater management of a highly dynamic karst by assessing baseflow and quickflow with a rainfall-discharge model (Dardennes springs, SE France)

IF 2.6 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Bulletin de la Societe Geologique de France Pub Date : 2017-01-01 DOI:10.1051/BSGF/2017203
C. Baudement, B. Arfib, N. Mazzilli, Johan Jouves, T. Lamarque, Y. Guglielmi
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引用次数: 24

Abstract

This paper aims at characterizing the groundwater flow in a highly dynamic karst aquifer using a global modeling approach based on rainfall and spring discharge time series. The Dardennes aquifer (SE France) was studied as it is used for drinking water supply and it also produces karst flash floods that increase the flood hazard downstream in urban areas. Three years of data were available, including a normal rainy year, a wet year and a dry year. Modeling was performed with the new platform KarstMod, a rainfall-discharge model with calibration tools. The Dardennes aquifer model was structured with three interconnected reservoirs: Epikarst, Matrix, and Conduit. Using this modeling approach, we were able to determine the groundwater hydrograph separation of the karst spring discharge, at the annual scale and at the event scale (flood). This gives insight into the low flow (Matrix) available for the drinking water demand and the fast flow (Conduit) that generates flash floods. In such a dynamic aquifer, part of the water budget cannot be accounted for by water resources as fast flow is not stored within the aquifer and is not available for the drinking water demand. The results were compared with the current groundwater management to determine whether the withdrawal is sustainable. Depending on whether it is a wet or a dry year, the proportion of slow flow ranges from 27 to 61% of the total discharge, respectively. During floods in high water periods, the proportion of quickflow increases drastically up to more than 90% of the spring discharge. In the case of a 300 mm/d simulated Mediterranean rainfall event, the mean daily peak value may reach 74 m3 /s. This discharge can be reduced if the aquifer is previously depleted, which increases the storage within the aquifer. Coupling the geological context and the model results opens up future perspectives for the active management of the karst aquifer.
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基于降雨-排放模型评估基流和快流的高动态喀斯特地下水管理(法国东南部达登斯泉)
本文旨在利用基于降雨和泉水流量时间序列的全球建模方法来表征高动态喀斯特含水层的地下水流动。研究了法国东南部的达登含水层,因为它用于饮用水供应,也产生喀斯特山洪,增加了城市地区下游的洪水风险。三年的数据是可用的,包括一个正常的多雨年,一个多雨年和一个干旱年。建模使用新的平台KarstMod,这是一个带有校准工具的降雨-流量模型。Dardennes含水层模型由三个相互连接的储层构成:Epikarst、Matrix和Conduit。利用这种建模方法,我们能够确定岩溶泉流量在年尺度和事件尺度(洪水)下的地下水水文分离。这让我们了解到低流量(矩阵)可用于饮用水需求和快速流量(导管)产生山洪暴发。在这种动态含水层中,由于快速流动的水没有储存在含水层中,不能用于饮用水需求,因此部分水预算不能用水资源来解释。研究结果与目前的地下水管理进行了比较,以确定抽取是否可持续。根据干湿年份的不同,慢流量占总流量的比例分别从27%到61%不等。在洪涝高潮期,快速流量的比例急剧增加,可达春流量的90%以上。在模拟300 mm/d的地中海降雨事件中,平均日峰值可达74 m3 /s。如果含水层先前已耗尽,则可以减少这种排放,从而增加含水层内的储水量。将地质背景和模型结果结合起来,为岩溶含水层的主动管理开辟了未来的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: BSGF - Earth Sciences Bulletin publie plusieurs types de contributions : 1. des articles originaux, couvrant tous les champs disciplinaires des Géosciences, à vocation fondamentale mais également à vocation plus appliquée (risques, ressources); 2. des articles de synthèse, faisant le point sur les avancées dans un domaine spécifique des Géosciences, qu''elles soient méthodologiques ou régionales ; 3. des monographies sur la géologie d’une région donnée, assorties d’informations supplémentaires, cartes, coupes, logs, profils sismiques … publiées en ligne en annexe de l’article ; 4. des articles courts de type « express letter » ; 5. des livrets-guides d’excursion (qui suivront le même processus d’examen éditorial que les articles plus classiques) ; 6. des comptes rendus de campagnes à la mer ; 7. des articles de données géodésiques, géophysiques ou géochimiques, pouvant devenir des articles de référence pouvant conduire à des interprétations ultérieures. BSGF - Earth Sciences Bulletin constitue également un forum pour les discussions entre spécialistes des Sciences de la Terre, de type comment-reply ou autre. Tous les articles publiés, quelle que soit leur forme, seront accessibles sans frais (articles en Open Access) sur le site de la SGF et sur celui de Geosciences World dans la mesure où les auteurs se seront acquittés d’une contribution de (Article Processing Charges – APC) de 300€ pour les membres de la SGF et 500€ pour les non-membres.
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