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首页> 外文期刊>Environmental geology and water sciences >Groundwater Vulnerability And Risk Mapping In A Geologically Complex Area By Using Stable Isotopes, Remote Sensing And Gis Techniques
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Groundwater Vulnerability And Risk Mapping In A Geologically Complex Area By Using Stable Isotopes, Remote Sensing And Gis Techniques

机译:利用稳定同位素,遥感和GIS技术在地质复杂地区的地下水脆弱性和风险图

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Groundwater vulnerability and risk mapping is a relatively new scientific approach for facilitating planning and decision making processes in order to protect this valuable resource. Pan European methodology for aquifers vulnerability has recently been developed by assessing all the existing relevant techniques and emphasizing on kar-stic environments. In the particular study, state-of-the-art methods and tools have been implemented such as remote sensing, isotopic investigations and GIS to map the ground-water vulnerability and pollution risk in a geologically complex area of W. Greece. The updated land use map has been developed from a Landsat 7 + TM image elaborated with image analysis software, while the detailed hydrogeologic properties of the area have been recorded with an intensive isotopic study. The local groundwater vulnerability map has been produced following the aforementioned Pan European method, in a GIS environment while the risk map, which was the final product of the study, has been developed after combining the vulnerability and the land use maps. The results indicated that the areas comprised of highly tectonized calcareous formations represented high vulnerability and risk zones while forested areas away from the karstic aquifer illustrated moderate to low vulnerability. Moreover, human activities increase the pollution risk in lowland areas consisting of sedimentary deposits that have been classified as moderate vulnerability. The particular methodology operated efficiently in this study and due to its accuracy and relatively easy implementation can be used as a decision support tool for local authorities.
机译:地下水脆弱性和风险测绘是一种相对较新的科学方法,可促进规划和决策过程,以保护这一宝贵资源。最近,通过评估所有现有的相关技术并强调岩溶环境,开发了泛欧洲的含水层脆弱性方法。在特定的研究中,已采用了最先进的方法和工具,例如遥感,同位素调查和GIS,以绘制W. Greece地质复杂地区的地下水脆弱性和污染风险图。更新后的土地利用图是从Landsat 7 + TM影像中开发出来的,该影像使用图像分析软件进行了细化,而该区域的详细水文地质特性已通过深入的同位素研究得以记录。当地的地下水脆弱性图是在GIS环境中按照上述泛欧洲方法绘制的,而风险图(是研究的最终产品)是在将脆弱性图和土地利用图结合起来后开发的。结果表明,由高构造钙质岩层组成的区域代表着高脆弱性和高风险区,而远离岩溶含水层的林区则显示出中等至低脆弱性。此外,人类活动增加了由被分类为中度脆弱性的沉积物组成的低地地区的污染风险。在这项研究中有效运行的特定方法,由于其准确性和相对容易实施的方法,可以用作地方当局的决策支持工具。

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