首页> 外文期刊>Journal of Contaminant Hydrology >Evaluating LNAPL contamination using GPR signal attenuation analysis and dielectric property measurements: Practical implications for hydrological studies
【24h】

Evaluating LNAPL contamination using GPR signal attenuation analysis and dielectric property measurements: Practical implications for hydrological studies

机译:使用GPR信号衰减分析和介电性能测量评估LNAPL污染:对水文研究的实际意义

获取原文
获取原文并翻译 | 示例
       

摘要

Groundwater and sub-surface contamination by Light Non-Aqueous Phase Liquids (LNAPLs) is one of the industrial world's most pressing environmental issues and a thorough understanding of the hydrological, physical and bio-chemical properties of the sub-surface is key to determining the spatial and temporal development of any particular contamination event. Non-invasive geophysical techniques (such as electrical resistivity, electromagnetic conductivity, Ground-Penetrating Radar, etc.) have proved to be successful sub-surface investigation and characterisation tools with Ground-Penetrating Radar (GPR) being particularly popular. Recent studies have shown that the spatial/temporal variation in GPR signal attenuation can provide important information on the electrical properties of the sub-surface materials that, in turn, can be used to assess the physical and hydrological nature of the pore fluids and associated contaminants. Unfortunately, a high percentage of current LNAPL-related GPR studies focus on contaminant mapping only, with little emphasis being placed on characterising the hydrological properties (e.g., determining contaminant saturation index, etc.). By comparing laboratory-based, dielectric measurements of LNAPL contaminated materials with the GPR signal attenuation observed in both contaminated and 'clean' areas of an LNAPL contaminated site, new insights have been gained into the nature of contaminant distribution/saturation and the likely signal attenuation mechanisms. The results show that, despite some practical limitations of the analysis technique, meaningful hydrological interpretations can be obtained on the contaminant properties, saturation index and bio-degradation processes. A generalised attenuation/saturation model has been developed that describes the physical and attenuation enhancement characteristics of the contaminated areas and reveals that the most significant attenuation is related to smeared zone surrounding the seasonally changing water table interface. It is envisaged that the model will provide a basis for the interpretation of GPR data from analogous LNAPL contaminated sites and provide investigators with an appreciation of the merits and limitations of GPR-based, attenuation analysis techniques for hydrological applications.
机译:轻质非水相液体(LNAPL)对地下水和地下表面的污染是工业界最紧迫的环境问题之一,对地下表面的水文,物理和生化特性的透彻了解是确定该问题的关键。任何特定污染事件的时空发展。非侵入性地球物理技术(例如电阻率,电磁导率,探地雷达等)已被证明是成功的地下调查和特征化工具,探地雷达(GPR)尤其受欢迎。最近的研究表明,GPR信号衰减的时空变化可以提供有关地下材料电学特性的重要信息,进而可以用来评估孔隙流体和相关污染物的物理和水文性质。 。不幸的是,当前与LNAPL相关的GPR研究中有很大一部分只关注污染物分布图,而很少侧重于表征水文特性(例如确定污染物饱和指数等)。通过将基于实验室的LNAPL污染材料的介电测量值与在LNAPL污染场所的污染区域和“干净”区域中观察到的GPR信号衰减进行比较,人们对污染物分布/饱和度的本质以及可能的信号衰减有了新的认识。机制。结果表明,尽管分析技术存在一些实际限制,但在污染物性质,饱和指数和生物降解过程方面仍可以获得有意义的水文解释。已开发出一个通用的衰减/饱和度模型,该模型描述了受污染区域的物理特征和衰减增强特征,并揭示出最显着的衰减与季节性变化的地下水位界面周围的涂抹区域有关。可以设想,该模型将为解释来自类似LNAPL污染地点的GPR数据提供基础,并使研究人员对基于GPR的水文衰减分析技术的优缺点有所了解。

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