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Large Area Solid Radio chemistry (LASR) Collector at the National Ignition Facility

机译:国家点火设施的大面积固体无线电化学(LASR)收藏家

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The flux of neutrons and charged particles produced from inertial confinement fusion experiments at the National Ignition Facility (NIF) induces measurable concentrations of nuclear reaction products in various target materials. The collection and radiochemical analysis of the post-shot debris can be utilized as an implosion diagnostic to obtain information regarding fuel areal density and ablator-fuel mixing. Furthermore, assessment of the debris from specially designed targets, material doped in capsules or mounted on the external surface of the target assembly, can support experiments relevant to nuclear forensic research. To collect the shot debris, we have deployed the Large Area Solid Radiochemistry Collector (LASR) at NIF. LASR uses a main collector plate that contains a large collection foil with an exposed 20 cm diameter surface located ~50 cm from the NIF target. This covers ~0.12 steradians, or about 1% of the total solid angle. We will describe the design, analysis, and operation of this experimental platform as well as the initial results. To speed up the design process 3-dimensional printing was utilized. Design analysis includes the dynamic loading of the NIF target vaporized mass, which was modeled using LS-DYNA.
机译:在国家点火设施(NIF)的惯性监禁融合实验中产生的中子和带电粒子的磁通量(NIF)在各种靶材料中诱导可测量的核反应产物浓度。后射击后碎片的收集和放射化学分析可用作诊断诊断,以获得有关燃料面密度和烧蚀器 - 燃料混合的信息。此外,从专门设计的靶标的碎片,掺杂在胶囊中的材料或安装在目标组件的外表面上,可以支持与核法医研究相关的实验。要收集碎片碎片,我们已经部署了NIF的大面积固体放射化学集电极(LASR)。 LASR采用主集电极板,含有大型收集箔,距离NIF靶标〜50厘米的暴露20cm直径。这涵盖了〜0.12粒子,或占总实线角的约1%。我们将描述该实验平台的设计,分析和操作以及初始结果。为了加快设计过程,使用3维打印。设计分析包括使用LS-DYNA建模的NIF靶蒸发质量的动态负载。

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