首页> 外文会议>第53回宇宙科学技術連合講演会講演集 >導線被覆材上火炎燃え拡がり現象の地上ベース微小重力実験施設における検討と長時間微小重力実験への展開
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導線被覆材上火炎燃え拡がり現象の地上ベース微小重力実験施設における検討と長時間微小重力実験への展開

机译:在地面微重力实验设备上检查金属包覆材料上的火焰燃烧蔓延现象,并发展到长期微重力实验

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Ground-based, microgravity experiments attained by aircraft parabolic flight and drop tower on flame spreading phenomenon over electric wire are performed. These are the preliminary tests for expected long-term microgravity experiments by sub-orbital or on orbit microgravity experiment. The main objectives of this study are (1) to confirm the apparatus can be work properly in microgravity and (2) to show the necessity of long-term microgravity experiments in order to observe the unsteady phenomenon. The flame spread rate and the total soot volume are important items as fundamental characteristics of the spreading flame. From the parabolic flight test, which can provide relatively long microgravity period, it is confirmed that the apparatus can work properly in microgravity. On the other hand, the quality of microgravity provided by aircraft is fair including G-jitters, and dependable data around the extinction limit (e.g, slow velocity regime) is hardly expected. Flame spread rate and the total soot volume are measured by drop tower, which can provide 10^-4G microgravity environment. Although, in some conditions, the flame spread phenomenon seems to reach steady-state within the available microgravity time with the drop tower (~ five seconds), the phenomenon includes periodical change in flame shape in reality. Consequently, to confirm the actual steadiness of the spread phenomenon, at least 10^-4G microgravity environment and long-term microgravity environment is necessary.
机译:通过飞机抛物线飞行和落塔对电线上的火焰蔓延现象进行了基于地面的微重力实验。这些是通过亚轨道或在轨微重力实验对预期的长期微重力实验的初步测试。这项研究的主要目的是(1)确认该设备可以在微重力下正常工作;以及(2)显示长期微重力实验的必要性,以观察不稳定现象。火焰蔓延速率和烟灰总量是作为蔓延火焰的基本特征的重要项目。通过可以提供相对较长的微重力周期的抛物线飞行试验,证实了该装置可以在微重力下正常工作。另一方面,飞机所提供的微重力质量是合理的,包括G-jitters,几乎没有可预期的关于灭绝极限的可靠数据(例如,慢速状态)。火焰扩散速率和烟灰总体积通过落塔测量,可提供10 ^ -4G的微重力环境。尽管在某些情况下,火焰蔓延现象似乎在滴落塔的可用微重力时间内(约5秒)达到稳态,但该现象实际上包括火焰形状的周期性变化。因此,为了确认扩散现象的实际稳定性,至少需要10 ^ -4G微重力环境和长期微重力环境。

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