Revaporisation of fission product deposits in the primary circuit and its impact on accident source term

Author:

Bottomley P.D.W.,Knebel K.,Van Winckel S.,Haste T.,Souvi S.M.O.,Auvinen A.,Kalilainen J.,Kärkelä T.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference37 articles.

1. Anderson, A.B., Auvinen, A., Bottomley, P.D., Bryan, C.J., Freemantle, N.E., Hieraut, J.P., Jokiniemi, J.K., Kingsbury, A.F., Tuson, A.T., 2001. Revaporisation Tests on Samples from Phébus Fission Products: Final Report. AEAT/R/NS/0124 – Issue 2. September 2000 & Summary Final Report ST: RVP (00)-P30/Rev. 1, January 2001.

2. Study of oxidation of alloy 1.4306S (SS-304L) in air and steam at 1200 °C using the Moessbauer technique;Arshed;J. Radioanal. Nucl. Chem.,1997

3. Auvinen, A., 2010. Main Outcomes of the Source Term work (WP8) in SARNET 1st Phase and an overview of work in SARNET2. In: 4th European Review Meeting on Severe Accident Research (ERMSAR 2010) –Bologna, Italy, 11–12 May 2010.

4. Examination of melted fuel rods and released core material from the first Phebus-FP reactor accident experiment;Bottomley;J. Nucl. Mater.,2000

5. Fission product and actinide release from the debris bed test Phébus FPT4: synthesis of the post-test analyses and of the revaporisation testing of the plenum samples, nuclear;Bottomley;Eng. Technol.,2006

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