Engineering Problems of Laser-Driven Fusion Reactors
- 1 April 1979
- journal article
- research article
- Published by Taylor & Francis in Nuclear Technology
- Vol. 43 (1) , 5-21
- https://doi.org/10.13182/nt79-a16170
Abstract
The University of Wisconsin fusion reactor study group has completed a study of laser fusion reactor problems incorporated into a self-consistent reactor design, SOLASE. The purpose of the SOLASE study is to identify and quantitatively analyze the major technological features posed by laser fusion reactors, to assess the relative advantages and prospective problems, and to guide further research. The engineering problems examined in the SOLASE study include first wall design and protection, radiation damage and materials constraints, compatibility of first wall and pellet materials, placement and protection of the last optical elements, pellet injection requirements, tritium breeding and blanket design concepts, vacuum pumping requirements, heat removal and power cycle considerations, recirculating power requirements, and shielding and primary containment considerations. Other conceptual reactor designs have also been examined and critically compared.Keywords
This publication has 9 references indexed in Scilit:
- Tritium Pathways and Handling Problems in a Laser Fusion ReactorNuclear Technology, 1978
- Assessment of Surface-Heating Problems in Laser-Fusion ReactorsJournal of Heat Transfer, 1978
- Possible Reduction of Laser-Fusion Target Illumination by Enhanced Stimulated Raman Plasmon ScatteringPhysical Review Letters, 1977
- Bismuth Germanate: A High-Z Gamma-Ray and Charged Particle DetectorIEEE Transactions on Nuclear Science, 1975
- Theory of laser-induced gas ionizationFoundations of Physics, 1974
- CENTRAL STATION POWER GENERATION BY LASER-DRIVEN FUSION.Published by Office of Scientific and Technical Information (OSTI) ,1972
- ANALYTICAL APPROXIMATIONS FOR X-RAY CROSS SECTIONS. [PART] II.Published by Office of Scientific and Technical Information (OSTI) ,1971
- Two-Photon Ionization of Cesium and Sodium VaporsJournal of the Physics Society Japan, 1970
- Optical breakdown in metal vapoursBritish Journal of Applied Physics, 1966