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Fusion Breeding for Mid-Century Sustainable Power

机译:融合育种为世纪中叶的可持续能源

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This article is an editorial, which makes the case that fusion breeding (that is using fusion neutrons to breed nuclear fuel for use in conventional nuclear reactors) is the best objective for the fusion program. To make the case, it reviews a great deal of plasma physics and fusion data. Fusion breeding could potentially play a key role in delivering large-scale sustainable carbon-free commercial power by mid-century. There is almost no chance that pure fusion can do that. The leading magnetic fusion concept, the tokamak, is subject to well-known constraints, which we have called conservative design rules, and review in this paper. These constraints will very likely prevent to-kamaks from ever delivering economical pure fusion. Inertial fusion, in pure fusion mode, may ultimately be able to deliver commercial power, but the failure to date of the leading inertial fusion experiment, the National Ignition Campaign, shows that there are still large gaps in our understanding of laser fusion. Fusion breeding, based on either magnetic fusion or inertial fusion, greatly relaxes the requirements on the fusion reactor. It is also a much better fit to today's and tomorrow's nuclear infrastructure than is its competitor, fission breeding. This article also shows that the proposed fusion and fission infrastructure, 'The Energy Park', reviewed here, is sustainable, economically and environmentally sound, and poses little or no proliferation risk.
机译:本文是一篇社论,这使得聚变育种(即使用聚变中子繁殖用于常规核反应堆的核燃料)是聚变计划的最佳目标。为此,它回顾了大量等离子体物理和聚变数据。到本世纪中叶,融合育种可能在提供大规模可持续的无碳商业电力中发挥关键作用。纯融合几乎不可能做到这一点。领先的磁聚变概念托卡马克受制于众所周知的约束条件,我们称之为保守设计规则,本文对此进行了回顾。这些限制很可能会阻止托卡马克人进行经济的纯融合。纯融合模式下的惯性融合最终可能能够提供商业力量,但是迄今为止领先的惯性融合实验“国家点火运动”的失败表明,我们对激光聚变的理解仍然存在很大差距。基于磁聚变或惯性聚变的聚变育种极大地放松了对聚变反应堆的要求。与竞争对手和裂变繁殖相比,它更适合当今和未来的核基础设施。本文还显示,本文中讨论的拟议的聚变核裂变基础设施“能源公园”具有可持续性,经济和环境方面的优势,几乎没有扩散风险。

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