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SPENT NUCLEAR FUEL TRANSPORTATION PACKAGE SEALS IN BEYOND DESIGN BASIS TEMPERATURE EXCURSIONS

机译:超越设计基础温度波动的核燃料运输包装密封

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The US Nuclear Regulatory Commission (NRC) is studying the performance of seals in spent nuclear fuel (SNF) transportation packages exposed to fires that could exceed the hypothetical accident condition fire described in Title 10 of the Code of Federal Regulations, Part 71, such as the Baltimore Tunnel Fire that occurred in 2001, or the MacArthur Maze fire that occurred in 2007. The performance of package seals is important for determining the potential for release of radioactive material from a package during a beyond-design-basis accident. Seals generally have lower temperature limits than other package components and are the containment barrier between the environment and the radioactive package contents. The NRC Office of Nuclear Regulatory Research contracted the National Institute of Standards and Technology to conduct small-scale thermal testing to obtain experimental data of the performance of seals during extreme temperature exposures. The experimental testing consisted of several small-scale pressure vessels fabricated with a modified ASME flange design and tested metallic and polymeric seals, similar to those that might be used on an actual SNF transportation package. The vessels were heated in an electrical oven to temperatures as high as 800°C (1472°F), exceeding the rated temperatures of the seals in question. This paper will provide a summary of the testing conducted and present test results and conclusions.
机译:美国核监管委员会(NRC)正在研究暴露于火中的乏核燃料(SNF)运输包装中的密封件的性能,其火势可能超过《联邦规章法典》第71部分第10部分所述的假设事故工况,例如: 2001年发生的巴尔的摩隧道火灾或2007年发生的麦克阿瑟迷宫火灾。包装封条的性能对于确定超出设计基准的事故中从包装中释放放射性物质的可能性非常重要。密封通常比其他包装组件具有更低的温度极限,并且是环境与放射性包装内容物之间的密闭屏障。 NRC核监管研究办公室与美国国家标准技术研究院签约,以进行小规模热测试,以获取暴露于极端温度下密封件性能的实验数据。实验测试包括几个采用改进的ASME法兰设计制造的小型压力容器,并测试了金属和聚合物密封,与实际SNF运输包装上可能使用的密封类似。将这些容器在电烤箱中加热到高达800°C(1472°F)的温度,超过了上述密封件的额定温度。本文将提供进行的测试的摘要,并提供测试结果和结论。

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