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FLAME SPREAD ALONG FREE EDGES OF THERMALLY THIN SAMPLES IN MICROGRAVITY

机译:沿着微耕地的热薄样品的自由边缘沿着自由边缘传播

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The effects of imposed flow velocity on flame spread along open edges of a thermally thin cellulosic sample in microgravity were studied experimentally and theoretically. In this study, the sample was ignited locally at the middle of the 4 cm wide sample, and subsequent flame spread reached both open edges of the sample along the direction of the flow. The following flame behaviors were observed in the experiments and predicted by the numerical calculation, in order of increased imposed flow velocity: (1) ignition but subsequent flame spread was not attained, (2) flame spread upstream (opposed mode) without any downstream flame, and (3) the upstream flame and two separate downstream flames traveled along the two open edges (concurrent mode). Generally, the upstream and downstream edge flame spread rates were faster than the central flame spread rate for an imposed flow velocity of up to 5 cm/s. This was due to greater oxygen supply from the outer free stream to the edge flames and more efficient heat transfer from the edge flames to the sample surface than the central flames. For the upstream edge flame, flame spread rate was nearly independent of, or decreased gradually with, the imposed flow velocity. The spread rate of the downstream edge, however, increased significantly with the imposed flow velocity.
机译:强加的流速上沿着在微重力热薄的纤维素样本的开口边缘的火焰传播的影响进行了实验和理论研究。在这项研究中,将样品在宽4厘米试样的中间局部点燃,和随后的火焰蔓延达到沿流动方向上的样品的两个开口边缘。在实验中观察到以下火焰行为和预测由数值计算,在增加施加的流速的顺序:(1)点火,但随后的火焰蔓延,无法得到,(2)火焰蔓延的上游(相对模式)而没有任何下游的火焰,和(3)上游的火焰并沿所述两个开口边缘(并发模式)行驶两个单独的下游的火焰。一般地,上游和下游边缘的火焰传播速率比中心火焰蔓延速度最多的强加的流速至5cm / s的速度更快。这是由于更大的氧供给从外自由流至边缘火焰和更有效的热传递从边缘火焰比中央火焰样品表面。对于上游边缘的火焰,火焰蔓延速度几乎无关的,或者与所施加的流速逐渐降低。下游边缘的扩散率,然而,与所施加的流速显著增加。

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