UWFDM-959 Evolution of Light Ion Driven Fusion Power Plants Leading to the LIBRA-SP Design
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چکیده
The use of light ion or electron beams to compress matter to the densities required for fusion has been proposed for more than 20 years. In the past ten years, a series of light ion beam power plant conceptual designs have been published under the generic name LIBRA. Considerable advances in both physics and technology have allowed major improvements from the design performance of the earliest LIBRA 330 MWe power plant to the more recent 979 MWe LIBRA-LiTE, and the 1000 MWe LIBRA-SP reactors. The recent declassification of target designs allows more realistic target spectra, gains, and injection parameters to be analyzed. The pulsed power driver technology has matured to the point that Helia induction technology can be tested in the laboratory under single pulse conditions and confidently extrapolated to LIBRA repetition rates. New concepts for protecting the first structural wall of the reactor have been developed; the use of flexible INPORT (INhibited Flow in PORous Tube) and rigid PERIT (PErforated RIgid Tube) units allow the reflector and first wall to last the lifetime of the power plant. The use of PbLi eutectic alloy has greatly improved the safety features of these reactors and the economics of all three compare very favorably to the tokamak, laser, and heavy ion beam reactors.
منابع مشابه
UWFDM-1076 Three-Dimensional Neutronics Analysis for the LIBRA-SP Light Ion Fusion Power Reactor
Three-dimensional (3-D) neutron-gamma transport calculations have been performed for the LIBRA-SP chamber with detailed geometrical modeling and results were compared to results based on one-dimensional (1-D) calculations. The overall tritium breeding ratio is 1.396. This is only 3% lower than the value predicted from the 1D results. The overall reactor energy multiplication is 1.157 which is o...
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LIBRA-SP is a 1000 MWe light ion beam power reactor design study. The reactor structure is made of a low activation ferritic steel and uses LiPb as a breeder. The total activities in the blanket and reflector at shutdown are 721 MCi and 924 MCi, respectively. Hands-on maintenance is impossible anywhere inside the reactor chamber. The biological dose rates near the diode are too high at all time...
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LIBRA-SP is a 1000 MWe light ion beam driven inertial confinement fusion power reactor design study which utilizes a self-pinched mode for propagating ions to the target. It is driven by 7.2 MJ of 30 MeV Li ions of which 1.2 MJ is in prepulse and 6 MJ in the main pulse. There are 24 ion beams in a three tier geometry of 8 beams each. The chamber is an upright cylinder with a LiPb pool in the bo...
متن کاملUWFDM-804 Activation Analysis for the LIBRA Light Ion Beam Fusion Conceptual Design
Activation calculations have been performed for the LIBRA reactor. Replacing HT-9 by low activation modified HT-9 increases the activity by a factor of 2.5 at shutdown while the long term activity drops by a factor of 25. The reflector is classified as Class C low level waste when modified HT-9 is used. Using HT-9 will require deep geological burial for the LIBRA radwaste. The activity produced...
متن کاملUWFDM-1014 Nuclear Analysis for the Light Ion Fusion Power Reactor LIBRA-SP
A 1.2 m thick zone of blanket tubes is needed for the LIBRA-SP chamber wall to be a lifetime component. The roof should be located at 17 m from the target to be a lifetime component. The depth of the LiPb pool should be 0.6 m for the bottom plate to be a lifetime component. The required biological shield thickness is 2.5 m on the side and 2.6 m at the top. The overall TBR is 1.435 and the overa...
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تاریخ انتشار 2002