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Conceptual Design of a Fast-Ignition Laser Fusion Reactor FALCON-D

机译:快燃激光聚变反应堆FALCON-D的概念设计

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摘要

A new conceptual design of the laser fusion power plant FALCON-D (Fast ignition Advanced Laser fusion reactor CONcept with a Dry wall chamber) has been proposed. The fast ignition method can achieve the sufficient fusion gain for a commercial operation (~100) with about 10 times smaller fusion yield than the conventional central ignition method. FALCON-D makes full use of this property and aims at designing with a compact dry wall chamber (5~6m radius). 1-D/2-D hydrodynamic simulations showed the possibility of the sufficient gain achievement with a 40 MJ target yield. The design feasibility of the compact dry wall chamber and solid breeder blanket system was shown through the thermomecanical analysis of the dry wall and neutronics analysis of the blanket system. A moderate electric output (~400MWe) can be achieved with a high repetition (30Hz) laser. This dry wall concept not only reduces some difficulties accompanied with a liquid wall but also enables a simple cask maintenance method for the replacement of the blanket system, which can shorten the maintenance time. The basic idea of the maintenance method for the final optics system has also been proposed. Some critical R&D issues required for this design are also discussed.
机译:提出了激光聚变动力装置FALCON-D(带有干壁室的快速点火先进激光聚变反应堆概念)的新概念设计。快速点火方法可以实现商业运行所需的足够的融合增益(〜100),其融合率比传统的中央点火方法小约10倍。 FALCON-D充分利用了这一特性,旨在设计紧凑的干壁腔(半径5〜6m)。 1-D / 2-D流体动力学模拟显示了以40 MJ目标产量实现足够增益的可能性。通过干壁的热力学分析和毯系统的中子学分析,证明了紧凑的干壁室和固体育种毯系统的设计可行性。高重复频率(30Hz)的激光可以实现中等的电输出(〜400MWe)。这种干壁概念不仅减少了伴随着液体壁的一些麻烦,而且使得能够采用简单的桶式维护方法来更换橡皮布系统,从而可以缩短维护时间。还提出了最终光学系统维护方法的基本思想。还讨论了此设计所需的一些关键R&D问题。

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