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Technical Meeting on SP1 DESIGN of IP EUROTRANS FZK December 16, 2003

Technical Meeting on SP1 DESIGN of IP EUROTRANS FZK December 16, 2003. Presentation of SP1 DESIGN Structure and Contents Up-dates H. Aït Abderrahim.

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Technical Meeting on SP1 DESIGN of IP EUROTRANS FZK December 16, 2003

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  1. Technical Meeting on SP1 DESIGN of IP EUROTRANSFZKDecember 16, 2003 Presentation of SP1 DESIGN Structure and Contents Up-dates H. Aït Abderrahim

  2. The objective of the DESIGN SP is to develop a reference design for a European Transmutation Demonstrator (ETD) with a power of few 100’s MWth. In this updated approach we will be developing a two step strategy for the ETD realisation: The ETD/EFIT (European Facility for Industrial-scale Transmutation) on the long term The ETD/XT-ADS (eXperimental Transmuter based on ADS) on a shorter term and being a sort of a first-of-kind of the ETD. Coolant for the XT-ADS core and the spallation target is a heavy liquid metal (Pb-Bi) Gas or Pb cooling are to be considered the core cooling of the EFIT. The most promising design options within the FP5 PDS-XADS Designs will be serving for the design of the ETD The design parameters initially considered for the XADS should be revisited in the light of the new objective of the ETD to be a large scale transmutation machine Objectives of SP1 DESIGN

  3. Objectives of the IP-EUROTRANS as stated Results of the Euratom 5th Framework Programme PDS-XADS FUETRA Cluster TESTRA Cluster BASTRA Cluster Question sheets outcome from PDS-XADS Feed-back from our community after the 1st TIEM on IP EUROTRANS of Karlsruhe on Nov. 6, 2003 Sources for the preparation of the SP1 DESIGN proposal:

  4. European Transmutation Demonstration short-term demonstration long-term demonstration ETD / XT-ADS 120 - 150 MW(th) 250 - 300 W/cm multi batch loading ETD / EFIT Several 100 MW(th) 250 - 300 W/cm multi batch loading IP EUROTRANS: ETD Development Scheme FP Design Concepts Objectives FP5 MYRRHA (Pb-Bi) 50 MW(th) 500 W/cm multi batch loading XADS Demonstration of technologicalfeasibility of an ADS system XADS (Pb-Bi) 80 MW(th) 110 W/cm single batch loading XADS (Gas) 80 MW(th) 250 W/cm single batch loading FP6 XT-ADS Short-term Demonstration of transmutation on a sizable scale and of the ADS behaviour EFIT Long-term Transmutation on an industrial scale

  5. WP2: Development and Assessment of ETD/EFIT and ETD/XT-ADS Designs WP2a: EFIT Design WP2b: XT-ADS Design WP5: Safety WP5a: EFIT Safety WP5b: XT-ADS Safety WP6: Remote Handling Design Criteria Catalogue WP6a: EFIT Remote Handling WP6b: XT-ADS Remote Handling WP Structure of SP1 DESIGN WP1: Reference Design Specifications WP3: Accelerator WP4: Spallation Target WP7: Cost Assessment, Transmutation Deployment, R&D Needs

  6. WP Structure of SP1 DESIGN SP1 DESIGN • Input data: • Results coming from FP5 • PDS-XADS • BASTRA • TESTRA/DEMETRA • FUETRA/AFTRA • Question sheets • Feedback of the community after TEIM of 6.11.2003 • Continuous interaction with • SP4: DEMETRA • SP3: FUETRA • Consultancy with SCK-CEN Mgt for accepting the XT-ADS instead of MYRRHA WP1: Reference Design Specifications • Output data: • Advanced design file of the XT-ADS • Pre-design file of the EFIT • Proof of principal of Spallation target • Proof of principal of accelerator components • Safety reference catalogue for the ETD and licensing • ETD R&D programme • XT-ADS and EFIT cost assessment WP2: ETD/EFITand ETD/ XT-ADS Designs WP3: Accelerator WP4: Spallation Target WP5: Safety WP6: Remote Handling Nat. / Intern. Programmes Nat. / Intern. Programmes WP7: Costs and Deployment

  7. WP2: Development and Assessment of ETD/EFIT and ETD/XT-ADS Designs WP2a: EFIT Design WP2b: XT-ADS Design WP5: Safety WP5a: EFIT Safety WP5b: XT-ADS Safety WP6: Remote Handling Design Criteria Catalogue WP6a: EFIT Remote Handling WP6b: XT-ADS Remote Handling SP1 DESIGN Expression of interest WP1: Reference Design Specifications WP3: Accelerator WP4: Spallation Target WP7: Cost Assessment, Transmutation Deployment, R&D Needs

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