Up today, two hyper research projects to achieve nuclear fusion energy exist; inertial confinement fusion (ICF) driven by laser, called national ignition facility (NIF) and magnetic confinement fusion the international thermonuclear experimental reactor (ITER) project. In reaching the required temperature and pressure, to ignite nuclear fusion reactor, is technologically complex and economically expensive. Thus, a breakthrough and a short cut, other alternative methods should be considered. Pulsed power ICF driver with repetitive pulse operation, mainly dense plasma focus (DPF) machines for high yield fusion neutrons could be taken as drivers for the fission blanket operation. The setup can be a cost-effective and efficient. In this article, we consider a set of two medium energy sizes DPF to produce simultaneously dense plasma columns, operating as thermonuclear plasma driver, to pierce the pellet target for external nuclear fusion reactions. These DPFs produce sufficient fast neutrons for the fission process in the neutral uranium or thorium and/or weak enriched uranium blanket. The drive systems and the concept for delivering thermonuclear plasma to pellets target in the magnetic free zone of central region will be presented. The feasibility of such fusion–fission hybrid reactor will be discussed.
机构:
Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
王新华
郭海萍
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
郭海萍
牟云峰
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
牟云峰
郑普
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
郑普
刘荣
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
刘荣
杨小飞
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
杨小飞
阳剑
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Institute of Nuclear Physics and Chemistry, Chinese Academy of Engineering PhysicsInstitute of Nuclear Physics and Chemistry, Chinese Academy of Engineering Physics
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Univ of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, JpnUniv of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, Jpn
Furuta, Kazuo
Oka, Yoshiaki
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Univ of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, JpnUniv of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, Jpn
Oka, Yoshiaki
An, Shigehiro
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Univ of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, JpnUniv of Tokyo, Nuclear Engineering, Research Lab, Tokyo, Jpn, Univ of Tokyo, Nuclear Engineering Research Lab, Tokyo, Jpn
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Fed State Unitary Enterprise, Zababakhin All Russia Res Inst Tech Phys, Russian Fed Nucl Ctr, Moscow 456770, RussiaTomsk Polytech Univ, Tomsk 634050, Russia
Shmakov, Vladimir M.
Modestov, Dmitry G.
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Fed State Unitary Enterprise, Zababakhin All Russia Res Inst Tech Phys, Russian Fed Nucl Ctr, Moscow 456770, RussiaTomsk Polytech Univ, Tomsk 634050, Russia
Modestov, Dmitry G.
Vega-Carrillo, Hector Rene
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Autonomous Univ Zacatecas, Acad Unit Nucl Studies, C Cipres 10, Zacatecas 98068, Zac, MexicoTomsk Polytech Univ, Tomsk 634050, Russia