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Fire safety in space - beyond flammability testing of small samples

机译:太空中的消防安全-超出小样本的可燃性测试

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摘要

An international research team has been assembled to reduce the uncertainty and risk in the design of spacecraft fire safety systems by testing material samples in a series of flight experiments (Saffire 1, 2, and-3) to be conducted in an Orbital Science Corporation Cygnus vehicle after it has undocked from the International Space Station (ISS). The tests will be fully automated with the data downlinked at the conclusion of the test before the Cygnus vehicle re-enters the atmosphere. The unmanned, pressurized environment in the Saffire experiments allows for the largest sample sizes ever to be tested for material flammability in microgravity, which will be based on the characteristics of flame spread over the surface of the combustible material. Furthermore, the experiments will have a duration that is unmatched in scale compared to earth based microgravity research facilities such as drop towers (about 5 s) and parabolic flights (about 20 s). In contrast to sounding rockets, the experiments offer a much larger volume, and the reduction in the oxygen concentration during the Saffire experiments will be minimal. The selection of the experimental settings for the first three Saffire experiments has been based on existing knowledge of scenarios that are relevant, yet challenging, for a spacecraft environment. Given that there is always airflow in the space station, all the experiments are conducted with flame spread in either concurrent or opposed flow, though with the flow being stopped in some tests, to simulate the alarm mode environment in the ISS and thereby also to study extinguishment. The materials have been selected based on their known performance in NASA STD-6001Test-1, and with different materials being classified as charring, thermally thin, and thermally thick. Furthermore, materials with non-uniform surfaces will be investigated.
机译:已组建了一个国际研究小组,以在轨道科学公司天鹅座进行的一系列飞行实验(Saffire 1、2和3)中测试材料样本,以减少航天器防火系统设计中的不确定性和风险。从国际空间站(ISS)停靠后的飞行器。在天鹅座汽车重新进入大气层之前,测试将在测试结束时下行数据自动进行。 Saffire实验中的无人加压环境允许测试有史以来最大样本量的材料在微重力下的可燃性,这将基于火焰在可燃材料表面的扩散特性。此外,与基于地球的微重力研究设施(如下降塔(约5 s)和抛物线飞行(约20 s))相比,实验的持续时间在规模上是无与伦比的。与探空火箭相反,该实验提供的体积要大得多,而在Saffire实验过程中氧气浓度的降低将是最小的。前三个Saffire实验的实验设置选择是基于与航天器环境相关但具有挑战性的场景的现有知识。考虑到空间站中始终有气流,所有实验都是在火焰同时传播或逆向传播的情况下进行的,尽管在某些测试中气流已停止,以模拟国际空间站的警报模式环境,从而进行研究灭火。这些材料是根据其在NASA STD-6001Test-1中的已知性能进行选择的,并且将不同的材料分类为炭化,热薄和热厚。此外,将研究具有不均匀表面的材料。

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