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Current uses of ground penetrating radar in groundwater-dependent ecosystems research

机译:探地雷达在依赖地下水的生态系统研究中的当前用途

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摘要

Ground penetrating radar (GPR) is a high-resolution technique widely used in shallow groundwater prospecting. This makes GPR ideal to characterize the hydrogeological functioning of groundwater-dependent ecosystems (GDE). This paper reviews current uses of GPR in GDE research through the construction of a database comprising 91 worldwide GPR case studies selected from the literature and classified according to (1) geological environments favouring GDE; (2) hydrogeological research interests; and (3) field technical and (4) hydrogeological conditions of the survey. The database analysis showed that inland alluvial, colluvial, and glacial formations were the most widely covered geological environments. Water-table depth was the most repeated research interest. By contrast, weathered-marl and crystalline-rock environments as well as the delineation of salinity interfaces in coastal and inland areas were less studied. Despite that shallow groundwater propitiated GDE in almost all the GPR case studies compiled, only one case expressly addressed GDE research. Common ranges of prospecting depth, water-table depth, and volumetric water content deduced by GPR and other techniques were identified. Antenna frequency of 100 MHz and the common offset acquisition technique predominated in the database. Most of GPR case studies were in 30-50° N temperate latitudes, mainly in Europe and North America. Eight original radargrams were selected from several GPR profiles performed in 2014 and 2015 to document database classes and identified gaps, as well as to define experimental ranges of operability in GDE environments. The results contribute to the design of proper GPR surveys in GDE research.
机译:探地雷达(GPR)是一种高分辨率技术,广泛用于浅层地下水勘探中。这使得GPR非常适合表征依赖地下水的生态系统(GDE)的水文地质功能。本文通过建立一个数据库,回顾了GPR在GDE研究中的当前用途,该数据库包括从文献中选择并根据(1)有利于GDE的地质环境对全球GPR案例研究进行了分类。 (2)水文地质研究兴趣; (3)现场技术和(4)调查的水文地质条件。数据库分析表明,内陆冲积,冲积和冰川形成是最广泛覆盖的地质环境。地下水位深度是最重复的研究兴趣。相比之下,对沿海和内陆地区的风化泥灰岩和晶体岩石环境以及盐分界面的划分的研究较少。尽管在几乎所有GPR案例研究中,浅层地下水促进了GDE,但只有一个案例明确涉及GDE研究。确定了探矿深度,地下水位深度和通过GPR和其他技术推断的体积含水量的常见范围。数据库中主要使用100 MHz的天线频率和通用偏移量采集技术。 GPR的大多数案例研究都是在北纬30-50°的温带地区进行的,主要是在欧洲和北美。从2014年和2015年执行的几个GPR档案中选择了八个原始雷达图,以记录数据库类别和确定的差距,并定义GDE环境中可操作性的实验范围。结果有助于在GDE研究中设计适当的GPR调查。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|868-885|共18页
  • 作者单位

    Civil Engineering Research and Innovation for Sustainability (CERIS), Instituto Superior Técnico, University of Lisbon, Av. Rovisco Pais 1, 1049-001 Lisbon, Portugal;

    Department of Civil Engineering, Catholic University of Murcia, 30107 Murcia, Spain , Instituto de Ciencias Químicas Aplicadas, Facultad de Ingeniería, Universidad Autónoma de Chile, 7500138 Santiago, Chile;

    Department of Mining Engineering-CERENA Faculty of Engineering, University of Porto, 4200-465 Porto, Portugal;

    Civil Engineering Research and Innovation for Sustainability (CERIS), Instituto Superior Técnico, University of Lisbon, Av. Rovisco Pais 1, 1049-001 Lisbon, Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ground penetrating radar; Hydrogeology; Groundwater-dependent ecosystems;

    机译:探地雷达;水文地质;依赖地下水的生态系统;
  • 入库时间 2022-08-17 13:49:10

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