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DNS of spherically expanding turbulent premixed flames of pressurized lean methane/air mixtures in homogeneous isotropic turbulence

机译:DNS在均匀各向同性湍流中球体膨胀的湍流预混火焰的压力稀甲烷/空气混合物

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Turbulent premixed flames expanding in a vessel are a canonical flame configuration of practical interest. The confined geometry, well-defined characteristics of homogeneous isotropic turbulence, and symmetry of the statistics allow for detailed studies of the interplay between turbulence and flame propagation. In this work, we report recent results on the direct numerical simulation of turbulent premixed flames propagating in a lean mixture of methane and air at 4 bar and preheated at 800 K. The turbulent flow is such that 70 ≤ Re_λ ≤ 90, 2 ≤ u'/S_f ≤ 10, and l/δ_(th) ≈ 5, resulting in δ_(th) between 5 - 10. The flame is found to propagate at the laminar flame speed and the increase in burning rate is mostly due to the increase in the flame surface. Simulations are repeated for two different flow conditions and statistics of the flow field, burning rate, and turbulent flame speed are obtained and discussed. This work is a first step towards a comprehensive characterization of turbulent premixed flames over a wide range of turbulence conditions.
机译:在船舶中膨胀的湍流预混火焰是实际兴趣的规范火焰配置。狭窄的几何形状,均匀各向同性湍流的明确特征,以及统计的对称性允许对湍流和火焰传播之间的相互作用进行详细研究。在这项工作中,我们报告了近来在甲烷和空气的稀释混合物中传播的湍流预混火焰的直接数值模拟的结果,并在4巴下预热,并在800 k下预热。湍流使得70≤Re_λ≤90,2≤u '/s_f≤10,和l /Δ_(th)≈5,导致5-10之间的Δ_(th)。发现火焰在层状火焰速度下传播,并且燃烧速率的增加主要是由于增加在火焰表面。为两个不同的流动条件和流场的统计重复模拟,并获得燃烧率和湍流火焰速度。这项工作是迈向各种湍流条件下的湍流预混火焰综合表征的第一步。

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