Published December 2011 | Version v1
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Effects of bedrock fractures on radionuclide transport near a vertical deposition hole for spent nuclear fuel

  • 1. VTT Technical Research Centre of Finland, Espoo (Finland)

Description

Effects of bedrock fractures on radionuclide transport near a vertical deposition hole for spent nuclear fuel are studied computationally. The studied fractures are both natural and excavation damage fractures. The emphasis is on the detailed modelling of geometry in 3D in contrast to the traditional radionuclide transport studies that often concentrate on chain decays, sorption, and precipitation at the expense of the geometry. The built computer model is used to assess the significance of components near a deposition hole for radionuclide transport and to estimate the quality of previously used modelling techniques. The results show nearly exponential decrease of radionuclide mass in the bentonite buffer when the release route is a thin natural fracture. The results also imply that size is the most important property of the tunnel section for radionuclide transport. In addition, the results demonstrate that the boundary layer theory can be used to approximate the release of radionuclides with certain accuracy and that a thin fracture in rock can be modelled, at least to a certain limit, by using a fracture with wider aperture but with same flow rate as the thin fracture. (orig.)

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Additional details

Publishing Information

ISBN
978-951-652-180-3
Imprint Pagination
80 p.
Report number
POSIVA--11-03

Optional Information

Notes
25 refs.