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首页> 外文期刊>Flow, Turbulence and Combustion >Impact of Volume Viscosity on the Structure of Turbulent Premixed Flames in the Thin Reaction Zone Regime
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Impact of Volume Viscosity on the Structure of Turbulent Premixed Flames in the Thin Reaction Zone Regime

机译:薄反应区条件下体积黏度对湍流预混火焰结构的影响

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Direct Numerical Simulations (DNS) of turbulent premixed flames burning hydrogen, synthetic gas and methane have been performed, relying on detailed chemical and transport models and taking into account volume viscosity. In this manner, it becomes possible to quantify the impact of this last contribution. It is shown that laminar flames are not modified by volume viscosity, while the local structure of turbulent flames may differ considerably when taking it into account. A noticeable impact is even observed on global flame properties. The modifications induced by the volume viscosity transport term are extremely small at first, but are sufficient to lead to completely different realizations at a later time due to the chaotic nature of turbulence. Noticeable modifications induced by volume viscosity are found for syngas as well as for hydrogen flames. For such hydrogen-containing fuels, the differences appear to remain unchanged when increasing the turbulent Reynolds number. On the other hand, turbulent flames burning methane show no significant impact due to volume viscosity. Since an accurate computation of the volume viscosity transport term is possible on available supercomputers, it is thus recommended to take it into account for detailed studies of turbulent flames burning hydrogen-containing fuels, in particular for DNS, while this term can be safely neglected for higher hydrocarbon flames.
机译:依靠详细的化学和运输模型并考虑了体积粘度,已经对燃烧氢气,合成气和甲烷的湍流预混火焰进行了直接数值模拟(DNS)。以这种方式,可以量化该最后贡献的影响。结果表明,层状火焰不受体积粘度的影响,而湍流火焰的局部结构在考虑时可能会显着不同。甚至观察到对整体火焰特性的显着影响。起初,由体积粘度传输项引起的变化很小,但由于湍流的混沌性质,足以在以后导致完全不同的实现。对于合成气以及氢火焰,发现由体积粘度引起的明显变化。对于此类含氢燃料,当增加湍流雷诺数时,差异似乎保持不变。另一方面,由于体积粘度,燃烧甲烷的湍流火焰没有明显的影响。由于可以在可用的超级计算机上精确计算体积粘度传输项,因此建议在燃烧含氢燃料的湍流火焰(特别是DNS)的详细研究中考虑到这一点,而对于该术语,可以安全地忽略更高的碳氢化合物火焰。

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