A Study of the Issues and Experiments for Fusion Nuclear Technology
- 1 November 1985
- journal article
- research article
- Published by Taylor & Francis in Fusion Technology
- Vol. 8 (3) , 2595-2645
- https://doi.org/10.13182/fst85-a24685
Abstract
The operating environment to be experienced by the nuclear components of a fusion reactor is unique and leads to a number of new phenomena and effects. New experimental knowledge is necessary to resolve many of fusion’s remaining issues. Investigation of the required experiments reveals the importance of simulating multiple interactions among physical elements of components and combined effects of a number of operating environmental conditions. Some experiments require neutrons not only as a source of radiation damage effects but as a practical economical means for bulk heating and producing specific nuclear reactions. The evaluation of required facilities suggests important conclusions. Present fission reactors and accelerator-based neutron sources are useful and their use should be maximized worldwide, but they have serious limitations. Obtaining adequate data for fusion nuclear technology over the next 15 years requires a number of new nonneutron test facilities in addition to the use of fission reactors. Experiments in the fusion environment will then be required for integrated tests and concept verification. The key nuclear needs for a fusion facility are 20 MW of deuterium-tritium fusion neutron power over 10 m2 of experimental surface area with long (100 MW are shown to be undesirable because of high cost and high risk. The analysis favors fusion devices that are able to operate at low total power and high power density. For fusion devices with large minimum power, e.g., conventional tokamaks, results indicate strong incentives for two separate test devices: one for plasma physics experiments and the other for fusion engineering research experiments.Keywords
This publication has 10 references indexed in Scilit:
- FINESSE: study of the issues, experiments and facilities for fusion nuclear technology research and development. Interim report. Volume IPublished by Office of Scientific and Technical Information (OSTI) ,1984
- Spallation radiation damage and the radiation damage facility at the LAMPF A-6 target stationJournal of Nuclear Materials, 1984
- A Long-Pulse Ignited Test Experiment - (LITE)Nuclear Technology - Fusion, 1983
- Fusion Materials Irradiation Test Facility a Facility for Fusion Materials QualificationNuclear Technology - Fusion, 1983
- Status of the Frankfurt Zero-Mode Proton RFQIEEE Transactions on Nuclear Science, 1983
- A technology demonstration facilityJournal of Fusion Energy, 1983
- FED-R: a fusion engineering device utilizing resistive magnetsPublished by Office of Scientific and Technical Information (OSTI) ,1983
- Tandem-mirror technology demonstration facilityPublished by Office of Scientific and Technical Information (OSTI) ,1981
- A 14 MeV intense neutron source facilityNuclear Instruments and Methods, 1977
- Conceptual design of a mirror reactor for a fusion engineering research facility (FERF)Published by Office of Scientific and Technical Information (OSTI) ,1974