Technical analysis of an early fusion neutron source based on the enhancement of the IFMIF/EVEDA accelerator prototype

Author:

Heidinger R.,Ibarra A.,Barabaschi P.,Cara P.,Mosnier A.,Mota F.,Nitti F.S.

Publisher

Elsevier BV

Subject

Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering

Reference21 articles.

1. IFMIF, a fusion relevant neutron source for material irradiation – current status;Knaster,2013

2. IFMIF: the intense neutron source to qualify materials for fusion reactors;Moeslang;C. R. Phys.,2008

3. IFMIF specifications from the users point of view;Garin;Fus. Eng. Des.,2011

4. IFMIF/EVEDA: adjustment of scope and recent technical achievements;Garin;Fus. Sci. Technol.,2011

5. Progress in IFMIF engineering validation and engineering design activities;Heidinger;Fus. Eng. Des.,2013

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1. Development of an electrochemical sensor for hydrogen detection in liquid lithium for IFMIF-DONES;Fusion Engineering and Design;2019-09

2. Engineering challenges for accelerated fusion demonstrators;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2019-02-04

3. Assessing Component Suitability and Optimizing Fusion Plant Design—Alternative Approaches to TRLs;IEEE Transactions on Plasma Science;2018-05

4. Design, integration and manufacturing of the MEBT and DPlate support frames for IFMIF LIPAc;Fusion Engineering and Design;2017-11

5. Japanese Fusion Materials Development Path to DEMO;Fusion Science and Technology;2017-06-19

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