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Effect of propagation behaviour of expanding spherical flames on the blast wave generated during unconfined gas explosions

机译:球形膨胀火焰的传播特性对无限制瓦斯爆炸过程中爆炸波的影响

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摘要

In the present study, the flame propagation behaviour and a blast wave of homogeneous premixed combustible gas/air mixtures in unconfined areas were experimentally investigated. The tests of hydrogen/ air, methane/air, propane/air and hydrogen/methane/air mixtures conducted using a soap bubble method at room temperature and atmospheric pressure. The results demonstrate that the flame for an Le < 1 mixture was wrinkled by diffusional-thermal instability, accelerating the flame speed and consequently increasing the overpressure with time. The flame for rich mixtures was intensively wrinkled and accelerated in the later stage by the non-uniformity of the concentration distribution, which was induced by the bursting of a soap bubble. This result indicates that rich mixtures have the potential for severe explosion because this phenomenon can generate flame acceleration. The results from the experiments with hydrogen addition in methane/air mixtures indicate the flames were intensively wrinkled and accelerated with the hydrogen addition, and consequently, the overpressure also increased. The results demonstrate that the overpressure increases with the absolute value of the burning velocity, as well as the acceleration of the burning velocity, due to diffusional-thermal instability and heterogeneous concentration areas for rich mixtures.
机译:在本研究中,通过实验研究了均匀密闭的可燃气体/空气混合物在密闭区域内的火焰传播行为和爆炸波。使用肥皂泡法在室温和大气压下进行氢气/空气,甲烷/空气,丙烷/空气和氢气/甲烷/空气混合物的测试。结果表明,Le <1混合物的火焰由于扩散热不稳定性而起皱,从而加快了火焰速度,并因此随时间增加了超压。浓混合物的火焰在后期由于浓度分布的不均匀而剧烈起皱并加速,这是由于肥皂泡破裂而引起的。该结果表明,浓混合气有可能引起严重爆炸,因为这种现象会产生火焰加速。在甲烷/空气混合物中添加氢气的实验结果表明,随着氢气的加入,火焰剧烈起皱并加速燃烧,因此,超压也会增加。结果表明,由于浓混合气的扩散热不稳定性和集中区域的不均匀性,超压随着燃烧速度的绝对值以及燃烧速度的加快而增加。

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