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Cryogenic hydrogen fuel for controlled inertial confinement fusion (formation of reactor-scale cryogenic targets)

机译:用于受控惯性约束融合的低温氢燃料(反应堆级低温靶的形成)

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摘要

In inertial fusion energy research, considerable attention has recently been focused on low-cost fabrication of a large number of targets by developing a specialized layering module of repeatable operation. The targets must be free-standing, or unmounted. Therefore, the development of a target factory for inertial confinement fusion (ICF) is based on methods that can ensure a cost-effective target production with high repeatability. Minimization of the amount of tritium (i.e., minimization of time and space at all production stages) is a necessary condition as well. Additionally, the cryogenic hydrogen fuel inside the targets must have a structure (ultrafine layers-the grain size should be scaled back to the nanometer range) that supports the fuel layer survivability under target injection and transport through the reactor chamber. To meet the above requirements, significant progress has been made at the Lebedev Physical Institute (LPI) in the technology developed on the basis of rapid fuel layering inside moving free-standing targets (FST), also referred to as the FST layering method. Owing to the research carried out at LPI, unique experience has been gained in the development of the FST-layering module for target fabrication with an ultrafine fuel layer, including a reactor- scale target design. This experience can be used for the development of the next-generation FST-layering module for construction of a prototype of a target factory for power laser facilities and inertial fusion power plants.
机译:在惯性融合能源研究中,最近一直关注通过开发可重复操作的专业分层模块的大量目标的低成本制造。目标必须是独立的或未卸下的。因此,用于惯性监禁融合(ICF)的目标工厂的发展是基于可以确保具有高可重复性的经济有效的目标生产的方法。最小化氚的量(即,所有生产阶段的时间和空间最小化)也是必要的条件。另外,靶内的低温氢燃料必须具有结构(超细层 - 晶粒尺寸应缩回到纳米范围),其支持目标注射和通过反应室输送的燃料层存活性。为满足上述要求,在基于快速燃料层内开发的技术的自由站目标(FST)的技术开发的技术中,已经在lebedev的物理研究所(LPI)中取得了重大进展,也称为FST分层方法。由于在LPI的研究中进行了研究,在FST层模块的开发中获得了独特的经验,用于使用超细燃料层的目标制造,包括反应堆靶设计。这种经验可用于开发下一代FST层模块,用于构建电力激光设施和惯性融合电厂的目标工厂的原型。

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