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Iodine Transport Analysis in the ESBWR.


DE2009953728

Publication Date 2009
Personal Author Young, M. F.; Longmire, P.; Gauntt, R. O.; Kalinch, D. A.
Page Count 46
Abstract A simplified ESBWR MELCOR model was developed to track the transport of iodine released from damaged reactor fuel in a hypothesized core damage accident. To account for the effects of iodine pool chemistry, radiolysis of air and cable insulation, and surface coatings (i.e., paint) the iodine pool model in MELCOR was activated. Modifications were made to MELCOR to add sodium pentaborate as a buffer in the iodine pool chemistry model. An issue of specific interest was whether iodine vapor removed from the drywell vapor space by the PCCS heat exchangers would be sequestered in water pools or if it would be rereleased as vapor back into the drywell. As iodine vapor is not included in the deposition models for diffusiophoresis or thermophoresis in current version of MELCOR, a parametric study was conducted to evaluate the impact of a range of iodine removal coefficients in the PCCS heat exchangers. The study found that higher removal coefficients resulted in a lower mass of iodine vapor in the drywell vapor space.
Keywords
  • Nuclear reactors
  • Reactor accidents
  • Leaks
  • Iodine
  • Boiling water reactors
  • Containment
  • Economic Simplified Boiling Water Reactor
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Sandia National Labs., Albuquerque, NM.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200924
Contract Number
  • DE-AC04-94AL85000
Iodine Transport Analysis in the ESBWR.
Iodine Transport Analysis in the ESBWR.
DE2009953728

  • Nuclear reactors
  • Reactor accidents
  • Leaks
  • Iodine
  • Boiling water reactors
  • Containment
  • Economic Simplified Boiling Water Reactor
  • Technical Information Center Oak Ridge Tennessee
  • DE-AC04-94AL85000
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