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The critical flow velocity for radiative extinction in opposed-flow flame spread in a microgravity environment: A comparison of experimental, computational, and theoretical results

机译:在微重力环境中在逆流火焰中辐射消光的临界流速:实验,计算和理论结果的比较

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The effect of opposing flow on flame spread rate over thin solid fuel is investigated with the help of scaling theory, a comprehensive computational model, and experiments conducted aboard the International Space Station. While spread rate over thin fuels is independent of the opposing flow velocity in the thermal regime, in the microgravity regime, where the opposing flow can be very mild or even completely absent in the absence of buoyancy induced flow, the spread rate is known to decrease as the opposed flow is reduced. Under certain conditions, this can lead to flame extinguishment at a low enough flow velocity. This paper combines scaling arguments with computational results to predict a critical flow velocity for such flame extinction. Results from the recently conducted limited number of space based tests, presented in this paper, seem to confirm the prediction validating the closed-form formula for the critical extinction velocity. (C) 2015 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:利用比例理论,综合计算模型以及在国际空间站上进行的实验,研究了逆流对稀薄固体燃料上火焰扩散速率的影响。虽然稀薄燃料上的扩散速率与热态下的反向流速无关,但在微重力状态下,在没有浮力引起的流动的情况下,对流可能非常温和甚至完全不存在,但已知扩散速率会降低因为减少了对流。在某些条件下,这可能导致以足够低的流速熄灭火焰。本文将比例论证与计算结果相结合,以预测这种火焰熄灭的临界流速。本文提出的最近进行的有限数量的基于空间的测试的结果似乎证实了这一预测,该预测验证了临界灭绝速度的闭合形式公式。 (C)2015年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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