Published November 1995 | Version v1
Report Open

The Chernobyl reactor accident source term: development of a consensus view

  • 1. Studsvik Eco and Safety AB, Nykoping (Sweden)
  • 2. Paul Scherrer Inst. (PSI), Villigen (Switzerland)
  • 3. Sandia National Labs., Albuquerque, NM (United States)

Description

Ten years after the reactor accident at Chernobyl, a great deal more data is available concerning the events, phenomena, and processes that took place. The purpose of this document is to examine what is known about the radioactive materials released during the accident, a task that is substantially more difficult than it might first appear to be. The Chernobyl station, like other nuclear power plants, was not instrumented to characterize a disastrous accident. The accident was peculiar in the sense that radioactive materials were released, at least initially, in an exceptionally energetic plume and were transported far from the reactor site. Release of radioactivity from the plant continued for several days. Characterization of the contamination caused by the releases of radioactivity has had a much lower priority than remediation of the contamination. Consequently, an assessment of the Chernobyl accident source term must rely to a significant extent on inferential evidence. The assessment presented here begins with an examination of the core inventories of radioactive materials. In subsequent sections of the report, the magnitude and timing of the releases of radioactivity are described. Then, the composition, chemical forms, and physical forms of the releases are discussed. A number of more recent publications and results from scientists in Russia and elsewhere have significantly improved the understanding of the Chernobyl source term. Because of the special features of the reactor design and the peculiarities of the Chernobyl accident, the source term for the Chernobyl accident is of limited applicability to the safety analysis of other types of reactors

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Additional details

Publishing Information

Imprint Pagination
32 p.
Report number
NEA-CSNI-R--1995-24

Optional Information

Notes
40 refs.
Secondary number(s)
OCDE-GD--1996-12