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Comparison of DRASTIC and DC resistivity modeling for assessing aquifer vulnerability in the central Nile Delta, Egypt

机译:用于评估埃及尼罗河三角洲中部含水层脆弱性的DRASTIC和DC电阻率模型比较

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DRASTIC indexing and integrated electrical conductivity (IEC) modeling are approaches for assessing aquifer vulnerability to surface pollution. DRASTIC indexing is more common, but IEC modeling is faster and more cost-effective because it requires less data and fewer processing steps. This study aimed to compare DRASTIC indexing with IEC modeling to determine whether the latter is sufficient on its own. Both approaches are utilized to determine zones vulnerable to groundwater pollution in the Nile Delta. Hence, assessing the nature and degree of risk are important for realizing effective measures toward damage minimization. For DRASTIC indexing, hydrogeological factors such as depth to aquifer, recharge rate, aquifer media, soil permeability, topography, impact of the vadose zone, and hydraulic conductivity were combined in a geographical information system environment for assessing the aquifer vulnerability. For IEC modeling, DC resistivity data were collected from 36 surface sounding points to cover the entire area and used to estimate the IEC index. Additionally, the vulnerable zones identified by both approaches were tested using a local-scale resistivity survey in the form of 1D and 2D resistivity imaging to determine the permeable pathways in the vadose zone. A correlation of 0.82 was obtained between the DRASTIC indexing and IEC modeling results. For additional benefit, the obtained DRASTIC and IEC models were used together to develop a vulnerability map. This map showed a very high vulnerability zone, a high-vulnerability zone, and moderate-and low-vulnerability zones constituting 19.89, 41, 27, and 12%, respectively, of the study area. Identifying where groundwater is more vulnerable to pollution enables more effective protection and management of groundwater resources in vulnerable areas.
机译:DRASTIC索引和集成电导率(IEC)建模是评估含水层对表面污染的脆弱性的方法。 DRASTIC索引更常见,但是IEC建模更快,更具成本效益,因为它需要更少的数据和更少的处理步骤。这项研究旨在将DRASTIC索引与IEC建模进行比较,以确定后者是否足够。两种方法都用于确定尼罗河三角洲中容易受到地下水污染的区域。因此,评估风险的性质和程度对于实现将损害最小化的有效措施很重要。对于DRASTIC标引,在地理信息系统环境中综合了水文地质因素,例如含水层的深度,补给率,含水层介质,土壤渗透性,地形,渗流带的影响和水力传导率,以评估含水层的脆弱性。对于IEC建模,从36个表面探测点收集了DC电阻率数据以覆盖整个区域,并用于估计IEC指数。此外,使用局部电阻率调查以1D和2D电阻率成像的形式测试了通过两种方法确定的脆弱区域,以确定渗流带中的渗透途径。 DRASTIC索引编制和IEC建模结果之间的相关性为0.82。为了获得更多好处,将获得的DRASTIC和IEC模型一起使用以开发漏洞图。该图显示了分别位于研究区域的19.89%,41%,27%和12%的极高漏洞区域,高漏洞区域以及中低漏洞区域。确定地下水最容易受到污染的地方,可以在脆弱地区更有效地保护和管理地下水资源。

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