Published 2010 | Version v1
Miscellaneous Restricted

European lead fast reactor (ELSY and LEADER projects)

  • 1. Ansaldo Nucleare Corso, Genova (Italy)
  • 2. JRC/IE (Netherlands)
  • 3. SCK.CEN, Mol (Belgium)
  • 4. Empresarios Agrupados (Spain)
  • 5. Del Fungo Giera Energia, Genova (Italy)
  • 6. fKIT-G (Germany)
  • 7. ENEA (IT)

Description

The conceptual design of the European Lead Fast Reactor is being developed starting from September 2006, in the frame of the ELSY project. The ELSY reference design is a 600 MWe pool-type reactor cooled by pure lead. The ELSY project demonstrates the possibility of designing a competitive and safe fast critical reactor using simple engineered technical features, whilst fully complying with the Generation IV goal of sustainability and minor actinide (MA) burning capability. Sustainability was a leading criterion for option selection for core design, focusing on the demonstration of the potential to be self sustaining in plutonium and to burn its own generated MAs. To this end, different core configurations have been studied. Economics was a leading criterion for primary system design and plant layout. The use of a compact and simple primary circuit with the additional objective that all internal components be removable, are among the reactor features intended to assure competitive electric energy generation and long-term investment protection. Low capital cost and construction time are pursued through simplicity and compactness of the reactor building (reduced footprint and height). The reduced plant footprint is one of the benefits coming from the elimination of the Intermediate Cooling System, the low reactor building height is the result of the design approach which foresees the adoption of short-height components and two innovative DHR systems. Among the critical issues, the impact of the large mass of lead has been carefully analyzed; it has been demonstrated that the high density of lead can be mitigated by compact solutions and adoption of seismic isolators. Safety has been one of the major focuses all over the ELSY development. In addition to the inherent safety advantages of lead coolant (high boiling point and no exothermic reactions with air or water) a high safety grade of the overall system has been reached. In fact the overall primary system has been conceived in order to minimize pressure drops and, as a consequence, to allow decay heat removal by natural circulation. Moreover two redundant, diverse and passive operated DHR systems have been developed and adopted. The ELSY project was organised into 6 technical plus one coordination work packages. The paper presents the overall work performed so far in the different areas. (author)

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Part of:
FISA 2009 - 7th European Commission conference on EURATOM research and training in reactor systems. Conference proceedings

Additional details

Publishing Information

Publisher
European Commission
Imprint Place
Brussels (European Commission (EC))
ISBN
13-978-92-79-13302-2
Imprint Title
FISA 2009 - 7th European Commission conference on EURATOM research and training in reactor systems. Conference proceedings
Imprint Pagination
744 p.
Journal Page Range
p. 353-369
ISSN
1018-5593
Report number
INIS-CZ--0123

Conference

Title
FISA 2009 - 7. European Commission conference on Euratom research and training in reactor systems
Dates
22-24 Jun 2009
Place
Prague (Czech Republic)

Optional Information

Notes
Presented in section Innovative nuclear systems including partitioning and transmutation; 6 tabs., 20 figs., 10 refs. ELSY website: http://www.elsy-lead.com/
Collaborations
ELSY Project; LEADER Project