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- W98881032 abstract "An extensive study was made of the energetics, equilibrium, and stability of two-component mirror systems. Collisional target plasmas are described by equilibrium fluid flow equations in the Marteni computer code. The Marteni code is coupled to a particle simulation code for application to an arc target plasma. The particle code determines the net transfer of directed beam energy to the plasma (typically 10 to 15 percent maximum) and this produces input for the power balance of the Marteni code that determines T/sub e/. For two- component systems supported by neutral injection, we couple the Marteni code to Fokker-Planck (MFP) codes that describe the collisional decay of the injected species. A radial transport code that gives information on the trapping fraction of the neutral beam and on volume erosion of the target plasma is included. In the simplest cases, the codes produce predictions of T/sub e/ that are a factor of 2 to 3 lower than previous estimates. Self-consistent magnetic field effects are calculated with a particle simulation code that shows long-lived reversed- field configurations are possible. The MFP codes predict that velocity space instabilities are definitely present during the build-up phase, will occur even in the steady state for lowmore » mirror ratios, R approximately 2, and can possibly be stabilized by high mirror ratios R greater than or equal to 10. Particle simulation codes predict a spreading of the hot-ion energy spectrum. (auth)« less" @default.
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- W98881032 date "1974-09-24" @default.
- W98881032 modified "2023-09-23" @default.
- W98881032 title "Computational studies of two-component mirror reactors" @default.
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