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Hyperthermal Environments Simulator for Nuclear Rocket Engine Development

机译:用于核火箭发动机开发的超高温环境模拟器

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An arc-heater driven hyperthermal convective environments simulator was recently developed and commissioned for long duration hot hydrogen exposure of nuclear thermal rocket materials. This newly established non-nuclear testing capability uses a high-power, multi-gas, wall-stabilized constricted arc-heater to produce high-temperature pressurized hydrogen flows representative of nuclear reactor core environments, excepting radiation effects, and is intended to serve as a low-cost facility for supporting non-nuclear developmental testing of high-temperature fissile fuels and structural materials. The resulting reactor environments simulator represents a valuable addition to the available inventory of non-nuclear test facilities and is uniquely capable of investigating and characterizing candidate fuel/structural materials, improving associated processing/fabrication techniques, and simulating reactor thermal hydraulics. This paper summarizes facility design and engineering development efforts and reports baseline operational characteristics as determined from a series of performance mapping and long duration capability demonstration tests. Potential follow-on developmental strategies are also suggested in view of the technical and policy challenges ahead.
机译:最近开发了电弧加热器驱动的高温对流环境模拟器,并已投入运行,以长时间持续暴露核热火箭材料的热氢。这种新近建立的无核试验能力使用大功率,多气体,壁稳定的狭窄弧形加热器来产生代表核反应堆堆芯环境的高温加压氢气流(辐射效应除外),并且旨在用作一种低成本的设备,用于支持高温易裂变燃料和结构材料的非核发展测试。所得的反应堆环境模拟器是对无核试验设施可用库存的宝贵补充,并且具有独特的能力来研究和表征候选燃料/结构材料,改进相关的加工/制造技术以及模拟反应堆热液压。本文总结了设施设计和工程开发的成果,并报告了根据一系列性能映射和长期能力演示测试确定的基准运行特性。考虑到未来的技术和政策挑战,还建议了潜在的后续发展策略。

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