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A MULTI-SECTION DROPLET COMBUSTION MODEL FOR SPRAY COMBUSTION SIMULATION

机译:喷雾燃烧模拟的多部分液滴燃烧模型

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Since 1960s, from experimental observation, there are several stages for liquid droplets in multi-phase combustion: pure heating, pure evaporation without individual droplet combustion, and individual droplet combustion (burning) with individual flame around which enhances evaporation. As for individual burning droplets, they have envelope flame or wake flame regimes. From experimental and theoretical research, in liquid fuel combustion chambers, according to the space between the droplets, there are four typical droplet group combustion modes. Generally, the external group combustion mode and the internal group combustion mode are the two main modes, and there are individual burning droplets in multiphase combustion. Up to now, based on the literature information, no matter in Reynolds Averaged Navier Stokes (RANS) method, Large Eddy Simulation (LES) method or Point Direct Numeral Simulation (PDNS) method, droplets in multi-phase combustion are treated as pure evaporation points, corresponding to the bright blue flame condition, i.e., small droplets in hot gas mixture with the pure evaporation stage, so in species equation and energy equation, the droplet points are mass source and heat sink. As for the individual droplets burning mode, in point source simulation method, corresponding to the big droplet in cold gas phase mixture with yellow trail flame condition, the source terms in the species equation and energy equation should be the mass sink and heat source. The individual burning droplets affects the NO formation because the flame around the droplet has higher temperature than the local gas phase mixture mostly for the quasi-stoichiometric ratio reaction in individual droplet flame. In this paper, a new spray combustion model with the consideration of individual droplets combustion mode is brought forward. The existing modeling approach is extended with an ignition criterion and a droplet combustion correlation. The ignition criterion, which judges the droplet stage between pure evaporation and burning, and the droplet combustion correlation, which integrates the micro-scales droplet burning effects into point source term frame, are both selected from pioneer's experimental work and added to the present existing widely used multi-phase combustion model. Then a jet spray flame is tested by the new model with RANS and LES method. The prediction results are compared with the literature experimental results. New model gives better simulation results in downstream regions. According to the results, this model added the individual droplet combustion mode in multi-phase combustion model, while its combustion correlations are quite rough at present. More verify studies should be carried in the future.
机译:从1960年代开始,从实验观察到,多相燃烧中的液滴有多个阶段:纯加热,不进行单个液滴燃烧的纯蒸发,以及围绕单个火焰的单个液滴燃烧(燃烧),从而增强了蒸发。至于单个燃烧的液滴,它们具有包络火焰或尾流火焰制度。从实验和理论研究来看,在液体燃料燃烧室中,根据液滴之间的空间,存在四种典型的液滴组燃烧模式。通常,外部群燃烧模式和内部群燃烧模式是两个主要模式,并且在多相燃烧中存在单独的燃烧液滴。到目前为止,根据文献资料,无论采用雷诺平均纳维斯托克斯(RANS)方法,大涡模拟(LES)方法还是点直接数值模拟(PDNS)方法,多相燃烧中的液滴均被视为纯蒸发。点,对应于明亮的蓝色火焰条件,即热气混合物中具有纯蒸发阶段的小液滴,因此在物种方程和能量方程中,液滴点为质量源和散热器。对于单个液滴的燃烧方式,在点源模拟方法中,对应于带有黄色拖尾火焰条件的冷气相混合物中的大液滴,种类方程和能量方程中的源项应为质量汇和热源。单独燃烧的液滴影响NO的形成,因为液滴周围的火焰具有比局部气相混合物更高的温度,这主要是因为单个液滴火焰中的准化学计量比反应。本文提出了一种考虑单个液滴燃烧方式的喷雾燃烧新模型。现有的建模方法扩展了点火标准和液滴燃烧相关性。从先驱者的实验工作中选出判断纯蒸发和燃烧之间的液滴阶段的点火标准,以及将微尺度的液滴燃烧效果整合到点源项框架中的液滴燃烧相关性,两者均是从先驱的实验工作中选出的,并被添加到目前已有的广泛应用中。使用了多相燃烧模型。然后,使用RANS和LES方法,通过新模型对喷射火焰进行测试。将预测结果与文献实验结果进行比较。新模型在下游区域提供了更好的仿真结果。根据结果​​,该模型在多相燃烧模型中添加了单独的液滴燃烧模式,而目前其燃烧相关性还很粗略。将来应该进行更多的验证研究。

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