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The application of magnetic gradiometry and electromagnetic induction at a former radioactive waste disposal site

机译:磁梯度法和电磁感应法在以前的放射性废物处置场的应用

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摘要

A former radioactive waste disposal site is surveyed with two non-intrusive geophysical techniques, including magnetic gradi-ometry and electromagnetic induction. Data were gathered over the site by towing the geophysical equipment mounted to a non-electrically conductive and non-magnetic fibre-glass cart. Magnetic gradiometry, which detects the location of ferromagnetic material, including iron and steel, was used to map the existence of a previously unknown buried pipeline formerly used in the delivery of liquid waste to a number of surface disposal trenches and concrete vaults. The existence of a possible pipeline is reinforced by historical engineering drawing and photographs. The electromagnetic induction (EMI) technique was used to map areas of high and low electrical conductivity, which coincide with the magnetic gradiometry data. The EMI also provided information on areas of high electrical conductivity unrelated to a pipeline network. Both data sets demonstrate the usefulness of surface geophysical surveillance techniques to minimize the risk of exposure in the event of future remediation efforts.
机译:使用两种非侵入式地球物理技术(包括磁梯度法和电磁感应法)对以前的放射性废物处置场进行了调查。通过拖曳安装在非导电和非磁性玻璃纤维推车上的地球物理设备,在现场收集数据。磁力梯度仪可检测包括铁和钢在内的铁磁材料的位置,用于绘制以前未知的地下管道的存在图,该管道以前用于将废液输送到许多表面处理沟槽和混凝土拱顶。历史工程图和照片加强了可能的管道的存在。电磁感应(EMI)技术用于绘制高和​​低电导率区域,这些区域与磁梯度法数据一致。 EMI还提供了与管道网络无关的高电导率区域的信息。这两个数据集都证明了地面地球物理监视技术在将来进行补救工作时最大程度地降低暴露风险的有用性。

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