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Monitoring temporal variations in groundwater levels in urban areas using ground penetrating radar

机译:使用地面渗透雷达监测城市地区地下水位水平的时间变化

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摘要

Monitoring temporal variations in groundwater levels provides a key to sustainable freshwater resource utilization and management, sustainable land use, and sustainable crop acreage, yield, and production. This study used ground penetrating radar (GPR) to monitor temporal variations in groundwater levels in urban areas, and to define the factors that control these variations. The city of Ismailia, Egypt, was selected as a test site because it is experiencing a rise in groundwater levels that poses potential environmental risks, and it lacks the groundwater wells necessary for monitoring and mitigation. Three main GPR profiles were collected in summer (July 2017) and winter (March 2018) using a 100-MHz antenna. On the collected GPR data, water table was defined as a continuous linear reflector of high amplitude. The water table appeared at 8.6 m and 9.5 m (below ground surface) in the summer and the winter surveys, respectively. The depths to the water table, as extracted from GPR surveys, are identical to those measured at a nearby water supply. The higher depth to the water table in the winter is related to excessive groundwater extraction and/or exceptional drought conditions and associated baseflow recession. Results highlight the importance of using GPR in urban areas as a unique, significant, practical, comprehensive, and cost-effective tool to image the subsurface and map the temporal variations in depth to the water table.
机译:监测地下水位的时间变化提供可持续淡水资源利用和管理,可持续土地利用以及可持续的作物面积,产量和生产的关键。本研究使用地面穿透雷达(GPR)来监测城市地区地下水位的时间变化,并定义控制这些变化的因素。埃及伊斯梅里亚市被选为测试现场,因为它正在经历地下水位上升,这些水平造成潜在的环境风险,并且缺乏监测和减缓所需的地下水井。使用100 MHz天线在夏季(2017年7月)和冬季(2018年3月)收集了三个主要的GPR型材。在收集的GPR数据上,水表被定义为高振幅的连续线性反射器。夏季和冬季调查分别出现在8.6米和9.5米(地面以下)上出现8.6米和9.5米。从GPR调查中提取的水位的深度与在附近供水时测量的深度相同。冬季水桌的深度较高涉及过度地下水提取和/或特殊的干旱条件和相关的源泉衰退。结果突出了在城市地区使用GPR作为一种独特,重要的,实用,全面,经济高效的工具来介绍地下室的重要性,并将深度深度的时间变化映射到水位。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|134986.1-134986.10|共10页
  • 作者单位

    Department of Geology Suez Canal University Ismailia 41522 Egypt;

    Department of Geology Suez Canal University Ismailia 41522 Egypt Department of Physical and Environmental Sciences Texas A&M University-Corpus Christi 6300 Ocean Drive Corpus Christi TX 78412. USA;

    Department of Geology Suez Canal University Ismailia 41522 Egypt;

    Department of Geology Suez Canal University Ismailia 41522 Egypt;

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

    GPR; Urban areas; Water table; Temporal variations; Egypt;

    机译:GPR;城市地区;水桌;时间变异;埃及;

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