LIBRA–A light ion beam inertial confinement fusion reactor conceptual design

Author:

Moses G. A.,Kulcinski G. L.,Bruggink D.,Engelstad R.,Lovell E.,Macfarlane J.,Musicki Z.,Peterson R.,Sawan M.,Sviatoslavsky I.,Wittenberg L.,Kessler G.,Möllendorff U. Von,Stein E.,Smith I.,Corcoran P.,Nishimoto H.,Fockler J.,Cook D.,Olson R.

Abstract

The LIBRA light ion beam fusion commerical reactor study is a self-consistent conceptual design of a 330 MWe power plant with an accompanying economic analysis. Fusion targets are imploded by 4 MJ shaped pulses of 30 MeV Li ions at a rate of 3 Hz. The target gain is 80, leading to a yield of 320 MJ. The high intensity part of the ion pulse is delivered by 16 diodes through 16 separate z-pinch plasma channels formed in lOO torr of helium with trace amounts of lithium. The blanket is an array of porous flexible silicon carbide tubes with Li17Pb83 flowing downward through them. These tubes (INPORT units) shield the target chamber wall from both neutron damage and the shock overpressure of the target explosion. The target chamber is a right circular cylinder, 8·7 meters in diameter. The target chamber is ‘self-pumped’ by the target explosion generated overpressure into a surge tank partially filled with liquid that surrounds the target chamber. This scheme refreshes the chamber at the desired 3 Hz frequency without excessive pumping demands. The blanket multiplication is 1·2 and the tritium breeding ratio is 1·4. The direct capital cost of LIBRA is estimated to be $2200/kWe.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Reference12 articles.

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Light-Ion Accelerators for ICF;Nuclear Fusion by Inertial Confinement;2020-11-25

2. Review of light-ion driver development for inertial fusion energy;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2001-05

3. Deposition and drive symmetry for light ion ICF targets;Nuclear Fusion;1999-07

4. Numerical Simulation of Radiation-driven Targets for Light-ion Inertial Confinement Fusion;Laser and Particle Beams;1997-09

5. The Light Ion Beam Approach to ICF Energy Production;Fusion Technology;1994-11

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