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Power and Gas Flow Models for Monoenergetic Neutral Beam Injectors

机译:单能中性束注射器的功率和气体流动模型

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Large, ignition tokamak reactors (ITR, EPR, and beyond will require supplemental heating to achieve ignition. In the earlier machines, at least, this heating will probably be provided by monoenergetic neutral beams. These beams, with energies approximately greater than 150 keV, will most likely be derived from D exp + or D exp - ions produced by direct extraction ion sources. A positive ion source will be followed by a bending magnet, a neutralizer, and a second bending magnet. The first magnet will remove molecular ions, and the second one atomic ions. Direct convertors will be used to recover energy from unused molecular and atomic ions. The first bending magnet may be omitted if D exp - ion sources are used. Models have been developed for power and gas flow in injectors which employ direct extraction D exp + or D exp - ion sources. The power flow model accounts explicitly for all beam losses in terms of line densities of gas along paths traversed by ions and neutrals and cross sections for dissociation and charge-changing collisions. The gas flow model uses the results of power flow calculations and known gas flows from sources and neutralizers to determine gas loads and pumping requirements in various parts of the injector. (ERA citation 03:022616)

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