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Advances in Surface-Groundwater Modelling in Lagoon Environment with Airborne Electromagnetics and High Resolution Seismic: Example from the Venice Lagoon

机译:利用机载电磁学和高分辨率地震对泻湖环境进行地表 - 地下水模拟研究进展 - 以威尼斯泻湖为例

摘要

Lagoon environments are very important for groundwater modeling in costal areas, they are delicate and in rapid evolution due to global climatic changes. Airborne electromagnetics (AEM)is a very valuable methodology that can provide high density, high quality data to produce 3D hydrogeological models to depths in excess of hundred meters below surface water column. We present the results from the SkyTEM Venice lagoon survey of 2009, integrated with data from very high resolution seismic survey. The AEM data results enhance greatly the understanding of the hydrogeology and surface-groundwater interactions in the lagoon area, where indirect measurements abound but wells are missing. For example, there is clear evidence of fresh water aquifers underneath the central part of the lagoon, at depth of about 40 m. The near surface part of the AEM data compare well with seismic data, showing that main reflectors come from the interface between the superficial Late Pleistocene looser, saline water saturated sediments and the deeper, more compact and fresher Holocene sediments. There is also clear evidence of submarine groundwater discharge in the lagoon, of paleorivers, and a possible indication of gas seepage trough shallow sediments. Seismic and AEM provide complimentary datasets to discriminate between pore water salinity, lithology and gas. Seismic horizons can actually be included during inversion of AEM data, producing more robust output. AEM data from the southern part of the survey that crosses the shore line and continued also onshore allow a clear mapping of the saline water intrusion inland, and highlight the relationship between pore water salinity of the lagoon sediments and spatial distribution of salt marshes. The latter seem to act like salt sinks, increasing sediments electrical conductivity.
机译:泻湖环境对于沿海地区的地下水建模非常重要,由于全球气候的变化,它们的环境微妙且发展迅速。机载电磁(AEM)是一种非常有价值的方法,可以提供高密度,高质量的数据,以生成3D水文地质模型,深度超过地表水柱以下几百米。我们介绍了2009年SkyTEM威尼斯泻湖调查的结果,并结合了超高分辨率地震调查的数据。 AEM数据结果极大地增进了对泻湖地区水文地质学和地表-地下水相互作用的理解,那里的间接测量比比皆是,但缺少井。例如,有明显证据表明在泻湖中心部分下方约40 m的深度有淡水含水层。 AEM数据的近地表部分与地震数据具有很好的对比,表明主要的反射器来自表层晚更新世疏松的,盐水饱和的沉积物与更深,更紧凑和更新鲜的全新世沉积物之间的界面。也有明显的证据表明泻湖,古河道中的海底地下水被排放,并且可能表明有气体渗漏穿过浅层沉积物。地震和AEM提供了补充数据集,以区分孔隙水盐度,岩性和气体。在AEM数据反演过程中实际上可以包括地震层,从而产生更可靠的输出。来自调查南部的AEM数据横穿海岸线并继续沿岸航行,可以清晰地绘制出盐水侵入内陆的地图,并突出了泻湖沉积物的孔隙水盐度与盐沼空间分布之间的关系。后者似乎起着盐槽的作用,增加了沉积物的电导率。

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