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The role of radiative losses in self-extinguishing and self-wrinkling flames

机译:辐射损耗在自熄和起皱火焰中的作用

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We have developed a general theory of non-adiabatic premixed flames that is valid for flames of arbitrary shape that fully accounts for the hydrodynamic and diffusive-thermal processes, and incorporates the effects of volumetric heat losses. The model is used to describe aspects of experimentally observed phenomena of self-extinguishing (SEFs) and self-wrinkling flames (SWFs), in which radiative heat losses play an important role. SEFs are spherical flames that propagate considerable distances in sub-limit conditions before suddenly extinguishing. Our results capture many aspects of this phenomenon including an explicit determination of flame size and propagation speed at quenching. SWFs are hydrodynamically unstable flames in which cells spontaneously appear on the flame surface once the flame reaches a critical size. Our results yield expressions of the critical flame size at the onset of wrinkling and expected cell size beyond the stability threshold. The various possible burning regimes are mapped out in parameter space.
机译:我们已经开发了非绝热预混火焰的一般理论,该理论对于任意形状的火焰均有效,该火焰充分考虑了流体动力和扩散热过程,并考虑了体积热损失的影响。该模型用于描述实验观察到的自熄(SEF)和自皱火焰(SWF)现象的各个方面,其中辐射热损失起着重要作用。 SEF是球形火焰,在突然熄灭之前,会在次极限条件下传播相当远的距离。我们的结果涵盖了该现象的许多方面,包括明确确定火焰大小和淬火时的传播速度。 SWF是流体动力学不稳定的火焰,一旦火焰达到临界尺寸,其中的细胞会自发出现在火焰表面。我们的结果产生了起皱时临界火焰尺寸的表达式,以及超出稳定度阈值的预期单元尺寸。在参数空间中映射出各种可能的燃烧方式。

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