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- W2313000703 abstract "We propose an innovative nuclear power generation system design using dusty radioactive (flssile or not) material plasma as a fuel. The flssion fragments or decay products accelerated during the disintegration process to velocities of 3{5% of the speed of light are trapped and collected in a simple combination of electric and magnetic flelds resulting in a highly e‐cient (90%), non-Carnot, DC power supply. In a conventional nuclear reactor this high kinetic energy of the flssion fragments is dissipated by collisions to generate heat, which is converted to electrical power with e‐ciencies of no more than 50%. Alternatively, the flssion fragments produced in our dusty plasma reactor can be used directly for providing thrust. The highly directional flssion fragment exhaust can produce a speciflc impulse of one million seconds resulting in burnout velocities several thousand times those attainable today. Previous concepts sufiered from impractical or inadequate methods to cool the flssion fuel. In this work the heating problem is overcome by dividing the solid fuel into small dust particles and thereby increasing the surface to volume ratio of the fuel. The small size of the fuel particle allows adequate cooling to occur by the emission of thermal radiation. I. Introduction" @default.
- W2313000703 created "2016-06-24" @default.
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- W2313000703 date "2005-07-10" @default.
- W2313000703 modified "2023-10-14" @default.
- W2313000703 title "Dusty Plasma Based Fission Fragment Nuclear Reactor" @default.
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- W2313000703 doi "https://doi.org/10.2514/6.2005-4460" @default.
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