CSAMT exploration at Sellafield: Characterization of a potential radioactive waste disposal site

Author:

Unsworth Martyn J.1,Lu Xinyou1,Watts M. Don2

Affiliation:

1. University of Washington, Geophysics Program, ATG-220, Box 351650, Seattle, Washington 98195-1650.

2. Geosystem, Viale Abruzzi, 17, Milan, Italy.

Abstract

The long term disposal of radioactive waste in an underground repository requires the detailed geological evaluation of a potential site. Owing to their inherent sensitivity to the presence of fluids in rocks, electromagnetic (EM) methods have an important role in this assessment. Controlled‐source EM techniques are especially useful in strong anthropogenic noise environments such as industrial locations. However the complexity of modeling and inversion can limit the quantitative interpretation of controlled‐source EM data. A potential radioactive waste disposal site at Sellafield in Great Britain has been investigated using a variety of EM exploration techniques. Controlled‐source audio‐frequency magnetotelluric (CSAMT) data have given the best subsurface information in an environment that has a high level of cultural noise. One‐dimensional inversions of the Sellafield CSAMT data were found to be inadequate; 2.5-D forward modeling and inversion were used to interpret the data. The resulting resistivity models show good agreement with well log data collected at the site. These resistivity models show the presence of a large zone of hypersaline groundwater extending 1 km inland towards the potential repository and indicate the effect of faults on the hydrogeology.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference16 articles.

1. Bartel, L. C., 1990, Results from a controlled source audio‐frequency magnetotelluric survey to characterize an aquifer, in Ward, S. H., Ed., Geotechnical and environmental geophysics: Soc. Expl. Geophys. 2, 219–234.

2. Results of a controlled‐source audiofrequency magnetotelluric survey at the Puhimau thermal area, Kilauea Volcano, Hawaii

3. Groundwater chemistry in the Sellafield area: a preliminary interpretation

4. Efficient calculation of the electromagnetic fields of an extended source

5. Tensor CSAMT studies at the Buchans Mine in central Newfoundland

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