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首页> 外文期刊>Journal of African earth sciences >Groundwater vulnerability mapping using the Susceptibility Index (SI) method: Case study of Takelsa aquifer, Northeastern Tunisia
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Groundwater vulnerability mapping using the Susceptibility Index (SI) method: Case study of Takelsa aquifer, Northeastern Tunisia

机译:地下水脆弱性映射使用敏感性指数(SI)方法:突尼斯东北部Takelsa Aquifer的案例研究

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The Takelsa phreatic aquifer currently shows stress signs and the contamination risk of groundwater by different chemical elements and pesticides is a likely concern. Here we assessed the aquifer vulnerability using the Susceptibility Index (SI) method, considered as a specific vulnerability method that takes into consideration the impact of land uses chemical fertilizers, anthropogenic activities and natural factors as a source of contaminants in groundwater. WetSpass and MODFLOW models were applied to quantify groundwater recharge and water table depth, the two of the most important parameters in groundwater vulnerability mapping.The obtained recharge map for 2015 showed values ranging between 0 and 342 mm/year with an average value of 111 mm/yr, corresponding to about 16% of the annual average rainfall. Regarding the groundwater flow model and for a steady and transient state, a reasonable correlation between the observed and simulated values was obtained confirming that results can be used to establish the vulnerability map.The Susceptibility Index (SI) results showed that the groundwater vulnerability of the studied aquifer ranges from low to very high. Most of the area (90%) has moderate to very high pollution susceptibility mainly due to low slope, agricultural land, high recharge rate, sandy soil dominance and low water table depth. The validation of the obtained map was undertaken through a comparison of areas of high salinity hazard with their relative vulnerability index. For most wells, the different salinity hazard parameters matched with areas of moderate to high vulnerability.The integration between the SI method and WetSpass and MODFLOW models for the study area is a valuable and applicable approach for the assessment of the groundwater vulnerability.
机译:Takelsa Proleatic Aquifer目前显示压力标志,不同化学元素和杀虫剂的地下水的污染风险是一个可能的令人担忧。在这里,我们使用易感性指数(Si)方法评估了含水层脆弱性,被认为是考虑到土地的影响的特定脆弱性方法,该方法使用化肥,人为活动和自然因素作为地下水污染物的来源。应用WetSpass和Modflow模型来量化地下水充电和水位深度,地下水漏洞测绘中最重要的两个参数。在2015年获得的再充电地图显示出0至342毫米/年之间的值,平均值为111毫米/ Yr,对应于年平均降雨的约16%。关于地下水流模型和稳态和瞬态的状态,获得了观察和模拟值之间的合理相关性,确认结果可用于建立漏洞图。易感性指数(Si)结果表明,地下水脆弱性学习含水层的范围从低到很高。该地区大部分(90%)具有中度至非常高的污染易感性,主要原因是低矮,农业用地,高充电率,砂土优势和低水位深度。通过对其相对漏洞指标的高盐度危害的区域进行了所获得的地图的验证。对于大多数井,不同的盐度危险参数与中度到高漏洞的区域匹配。SI方法和Wetspass与研究区域的Modflow模型之间的集成是评估地下水脆弱性的有价值和适用的方法。

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