Published 1994 | Version v1
Report Open

Status of EC solid breeder blanket designs and R and D for demo fusion reactors

  • 1. CEA Centre d'Etudes de Saclay, 91 - Gif-sur-Yvette (France). Dept. de Mecanique et de Technologie
  • 2. Kernforschungszentrum Karlsruhe GmbH (Germany)
  • 3. ENEA, Frascati (Italy). Centro Ricerche Energia
  • 4. Netherlands Energy Research Foundation (ECN), Petten (Netherlands)
  • 5. Centre d'Etude de l'Energie Nucleaire, Mol (Belgium)

Description

Within the European Community Fusion Technology Program two solid breeder blankets for a DEMO reactor are being developed. The two blankets have various features in common: helium as coolant and as tritium purge gas, the martensitic steel MANET as structural material and beryllium as neutron multiplier. The configurations of the two blankets are however different: in the B.I.T. (Breeder Inside Tube) concept the breeder materials are LiAlO2 or Li2ZrO3 in the form of annular pellets contained in tubes surrounded by beryllium blocks, the coolant helium being outside the tubes, whereas in the B.O.T. (Breeder out of Tube) the breeder and multiplier material are Li4SiO4 and beryllium pebbles forming a mixed bed placed outside the tubes containing the coolant helium. The main critical issues for both blankets are the behavior of the breeder ceramics and of beryllium under irradiation and the tritium control. Other issues are the low temperature irradiation induced embrittlement of MANET, the mechanical effects caused by major plasma disruptions, and safety and reliability. The R and D work concentrate on these issues. The development of martensitic steels including MANET is part of a separate program. Breeder ceramics and beryllium irradiations have been so far performed for conditions which do not cover the peak values injected in the DEMO blankets. Further irradiations in thermal reactors and in fast reactors, especially for beryllium, are required. An effective tritium control requires the development of permeation barriers and/or of methods of oxidation of the tritium in the main helium cooling systems. First promising results have been obtained also in field of mechanical effects from plasma disruptions and safety and reliability, however further work is required in the reliability field and to validate the codes for the calculations of the plasma disruption effects. (authors). 8 figs., 2 tabs., 53 refs

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MF available from INIS under the Report Number.

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Additional details

Publishing Information

Imprint Pagination
36 p.
Report number
CEA-CONF--12018

Conference

Title
3. International Symposium of Fusion Nuclear Technology.
Dates
27 Jun - 1 Jul 1994.
Place
Los Angeles, CA (United States).