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Giles, J.R.; Dooley, K.J.
Idaho National Engineering Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Restoration and Waste Management, Washington, DC (United States)1997
Idaho National Engineering Lab., Idaho Falls, ID (United States). Funding organisation: USDOE Office of Environmental Restoration and Waste Management, Washington, DC (United States)1997
AbstractAbstract
[en] A Gamma Spectroscopy Logging System (GSLS) has been developed to study sub-surface radionuclide contamination. The absolute counting efficiencies of the GSLS detectors were determined using cylindrical reference sources. More complex borehole geometries were modeled using commercially available shielding software and correction factors were developed based on relative gamma-ray fluence rates. Examination of varying porosity and moisture content showed that as porosity increases, and as the formation saturation ratio decreases, relative gamma-ray fluence rates increase linearly for all energies. Correction factors for iron and water cylindrical shields were found to agree well with correction factors determined during previous studies allowing for the development of correction factors for type-304 stainless steel and low-carbon steel casings. Regression analyses of correction factor data produced equations for determining correction factors applicable to spectral gamma-ray well logs acquired under non-standard borehole conditions
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1997; 17 p; 4. international conference on methods and applications of radioanalytical chemistry; Kona, HI (United States); 6-11 Apr 1997; CONF-970424--8; CONTRACT AC07-94ID13223; Also available from OSTI as DE97052973; NTIS; US Govt. Printing Office Dep
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