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Large-eddy simulation of ethanol spray combustion using a SOM combustion model and its experimental validation

机译:基于SOM燃烧模型的乙醇喷雾燃烧大涡模拟及其实验验证

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In this paper, large-eddy simulation of ethanol spray-air combustion was made by using an Eulerian-Lagrangian approach, a sub-grid-scale kinetic energy stress model, and a filtered finite-rate combustion model with a sub-grid scale reaction rate, called second-order moment (SOM) combustion model, proposed by our research group. The simulation accounts for the sub-grid turbulence-spray-combustion interactions and the coupling between the temperature fluctuations and species concentrations fluctuations. The simulation results are validated in detail by experiments. It is found that the LES-SOM statistical results are in better agreement with the experimental results than those obtained by LES accounting for only the filtered finite-reaction rate (LES-FA) neglecting the SGS reaction rate, and are in much better agreement than those obtained by RANS modeling using the most complex PDF equation combustion model with detailed chemistry. The instantaneous LES results show the earlier production of the coherent structures in the two-phase jet combustion than that in the single-phase jet combustion. The instantaneous temperature map indicates the existence of small flame islands, expressing the droplet-group combustion, which is not observed in single-phase jet combustion.
机译:本文利用欧拉-拉格朗日方法,亚网格规模动能应力模型和带亚网格规模反应的过滤有限速率燃烧模型对乙醇喷雾空气燃烧进行大涡模拟。由我们的研究小组提出的速率,称为二阶矩(SOM)燃烧模型。该模拟考虑了亚栅湍流-喷雾-燃烧相互作用以及温度波动与物种浓度波动之间的耦合。通过实验对仿真结果进行了详细验证。发现LES-SOM统计结果与实验结果更好地吻合,而不是仅考虑过滤的有限反应速率(LES-FA)而忽略了SGS反应速率的LES获得的结果,并且与LES-SOM统计结果相比,一致性更好。通过使用最复杂的PDF方程燃烧模型和详细化学信息通过RANS建模获得的结果。 LES瞬时结果表明,相态结构在两相喷射燃烧中比在单相喷射燃烧中更早地产生。瞬时温度图表明存在小火焰岛,表示小滴群燃烧,这在单相射流燃烧中没有观察到。

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