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首页> 外文期刊>Acta astronautica >Radiation heat transfer in particle-laden gaseous flame: Flame acceleration and triggering detonation
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Radiation heat transfer in particle-laden gaseous flame: Flame acceleration and triggering detonation

机译:含颗粒气体火焰中的辐射热传递:火焰加速和触发爆轰

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In this study we examine influence of the radiation heat transfer on the combustion regimes in the mixture, formed by suspension of fine inert particles in hydrogen gas. The gaseous phase is assumed to be transparent for the thermal radiation, while the radiant heat absorbed by the particles is then lost by conduction to the surrounding gas. The particles and gas ahead of the flame is assumed to be heated by radiation from the original flame. It is shown that the maximum temperature increase due to the radiation preheating becomes larger for a flame with lower velocity. For a flame with small enough velocity temperature of the radiation preheating may exceed the crossover temperature, so that the radiation heat transfer may become a dominant mechanism of the flame propagation. In the case of non-uniform distribution of particles, the temperature gradient formed due to the radiation preheating can initiate either deflagration or detonation ahead of the original flame via the Zel'dovich's gradient mechanism. The initiated combustion regime ignited in the preheat zone ahead of the flame depends on the radiation absorption length and on the steepness of the formed temperature gradient. Scenario of the detonation triggering via the temperature gradient mechanism formed due to the radiation preheating is plausible explanation of the transition to detonation in Supernovae Type la explosion. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们研究了辐射热传递对混合物中燃烧状态的影响,该混合物是由惰性气体细小颗粒悬浮在氢气中形成的。假定气相对于热辐射是透明的,而被颗粒吸收的辐射热随后通过与周围气体的传导而损失。假定火焰前的粒子和气体被原始火焰的辐射加热。结果表明,对于较低速度的火焰,由于辐射预热而导致的最大温度升高变得更大。对于速度足够小的火焰,辐射预热温度可能会超过交叉温度,因此辐射传热可能成为火焰传播的主要机制。在颗粒分布不均匀的情况下,由于辐射预热而形成的温度梯度可以通过Zel'dovich的梯度机制在原始火焰之前引发爆燃或爆燃。在火焰之前在预热区中点燃的启动燃烧方式取决于辐射吸收长度和所形成的温度梯度的陡度。通过辐射预热而形成的通过温度梯度机制触发爆轰的场景,可以合理地解释超新星1a型爆炸向爆轰过渡的过程。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

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