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Titlebook: Safety, Environmental Impact, and Economic Prospects of Nuclear Fusion; Bruno Brunelli,Heinz Knoepfel Book 1990 Plenum Press, New York 199

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First Wall and Blanket Safetyno serious threat of power runaway transients. On the other hand, the impact of undercooling transients will depend on the design of the fusion reactor, particularly on the first wall load and blanket materials.
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Book 1990n", which was held at Erice, August 6-12, 1989. In selecting the contributions to this 9th meeting held by the International School of Fusion Reactor Technology at the E. Majorana Center for Scientific Cul­ ture in Erice, we tried to provide a comprehensive coverage of the many interre­ lated and in
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General Methodology of Safety Analysis/Evaluation for Fusion Energy Systems (GEMSAFE) and Its Applicing large potential hazards. In the process of introduction and deployment of the fusion system to the human society, therefore, it is desirable to demonstrate the societal acceptability from the early stage of the system development.
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Special Materials for Fusion Reactorsum, intense neutron fluxes, pulsed operation, thermal gradients and stresses, are a few of the specific features of the fusion environment. The materials required to operate in this field must provide the best performance, the maximum safety and their cost must be acceptable.
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Feasibility, Safety and Environmental Aspects of D-He3 Fusion (maybe steady-state Tokamaks for D-T, and Field-Reversed Configurations for D-He.), the respective engineering, safety and environmental features and the aspect of dependence on a lunar resource have to be carefully evaluated.
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Fusion Reactor Economic, Safety, and Environmental Prospectshe first regime of MHD stability (ß ≤ 3.5 I/aB) is closest to present experimental achievement. Directions to further improve economic and technological performance include the development of higher magnetic fields to lower the required plasma current and reactor size, improvement in the beta value
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