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Title: Estimates of potential radionuclide migration at the Bullion site

Technical Report ·
DOI:https://doi.org/10.2172/138468· OSTI ID:138468

The Bullion site in Area 20 of the Nevada Test Site has been selected for an intensive study of the hydrologic consequences of underground testing, including subsequent radionuclide migration. The bulk of the chimney and cavity lie in zeolitized tuffs of low hydraulic conductivity, while the base of the cavity may extend downward into more conductive rhyolite flows. A mathematical analog to the Bullion setting is used here to estimate expected radionuclide migration rates and concentrations. Because of a lack of hydrologic data at the site, two contrasting scenarios are considered. The first is downward-transport, in which downward hydraulic gradients flush chimney contents into the conductive underlying units, enhancing migration. The other is upward-transport, in which upward gradients tend to drive chimney contents into the low-conductivity zeolitized tuffs, discouraging migration. In the downward-transport scenario, radionuclide travel times and concentrations are predicted to be similar to those encountered at Cheshire, requiring approximately 10 years to reach a proposed well 300 m downgradient. The upward transport scenario yields predicted travel times on the order of 2,000 years to the downgradient well. The most likely scenario is a combination of these results, with vertical movement playing a limited role. Radionuclides injected directly into the rhyolites should migrate laterally very quickly, with travel times as in the downward-transport scenario. Those in the zeolitized tuff-walled portion of the chimney should migrate extremely slowly, as in the upward-transport scenario.

Research Organization:
Nevada Univ., Reno, NV (United States). Water Resources Center
Sponsoring Organization:
USDOE, Washington, DC (United States)
DOE Contract Number:
AC08-90NV10845
OSTI ID:
138468
Report Number(s):
DOE/NV/10845-15; ON: DE93003157; TRN: 92:038074
Resource Relation:
Other Information: PBD: Apr 1992
Country of Publication:
United States
Language:
English