首页> 外文期刊>Bulletin of engineering geology and the environment >Contrast of aquifer vulnerability and water quality indices between a unconfined aquifer and a deep aquifer in arid zones
【24h】

Contrast of aquifer vulnerability and water quality indices between a unconfined aquifer and a deep aquifer in arid zones

机译:在干旱区内无束含水层和深层含水层之间的含水层脆弱性和水质指标的对比

获取原文
获取原文并翻译 | 示例
       

摘要

The rapid population growth in urban areas stresses the underlying aquifers in both quantity and quality. The identification of aquifer vulnerability and quality characteristics help decision makers in managing groundwater resources and mitigating potential contamination pathways. For this purpose, the units composing complex aquifer systems should be evaluated separately due to their unique hydrogeological characteristics. In this study, two metrics were used to identify zones susceptible to groundwater pollution, these are the following: (1) aquifer vulnerability through DRASTIC; and (2) water quality using the water quality index (WQI) and the contamination index (C-d). These metrics were applied to a case study of an aquifer system in the Valley of San Luis Potosi (VSLP). The system consists of three units: (1) a unconfined aquifer; (2) a granular medium aquifer; and (3) a deep fractured aquifer. In this analysis, the granular medium and the deep fractured aquifer were grouped as one unit. Aquifer vulnerability in the unconfined aquifer has a high vulnerability in the urban area zone. Whereas, the middle-deep aquifer is classified as having a low to medium vulnerability. According to WQI andC(d)indices, the unconfined aquifer is highly polluted due to its proximity to the urban area. On the other hand, the middle-deep aquifer shows excellent groundwater quality. These results are consistent with the hypothesis of limited to no hydraulic connection between the middle-deep aquifer and the unconfined aquifer.
机译:城市地区的迅速增长强调了数量和质量的潜在含水层。含水层脆弱性和质量特征的识别有助于决策者管理地下水资源和减轻潜在的污染途径。为此,应由于其独特的水文地质特征而分别评估构成复杂含水层系统的单元。在这项研究中,两项指标用于识别易受地下水污染的区域,这些是以下:(1)通过急剧冒险漏洞; (2)水质使用水质指数(WQI)和污染指数(C-D)。这些指标应用于San Luis Potosi(VSLP)山谷中含水层系统的案例研究。该系统由三个单位组成:(1)一个无粉的含水层; (2)粒状含水层; (3)深骨折含水层。在该分析中,粒状培养基和深骨折含水层被分组为一个单位。无粉状含水层的含水层脆弱性在市区区具有高脆弱性。虽然,中深含水层被归类为较低的中等漏洞。根据WQI ANDC(d)指数,由于其对城市地区的靠近,因此不合适的含水层受到高度污染的。另一方面,中深含水层显示出优异的地下水质量。这些结果与中深含水层和无融合的含水层之间没有液压连接的假设一致。

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