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首页> 外文期刊>Energies >Close Nozzle Spray Characteristics of a Prefilming Airblast Atomizer
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Close Nozzle Spray Characteristics of a Prefilming Airblast Atomizer

机译:预成膜鼓风雾化器的近喷嘴喷雾特性

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摘要

The formation of pollutant emissions in jet engines is closely related to the fuel distribution inside the combustor. Hence, the characteristics of the spray formed during primary breakup are of major importance for an accurate prediction of the pollutant emissions. Currently, an Euler–Lagrangian approach for droplet transport in combination with combustion and pollutant formation models is used to predict the pollutant emissions. The missing element for predicting these emissions more accurately is well defined starting conditions for the liquid fuel droplets as they emerge from the fuel nozzle. Recently, it was demonstrated that the primary breakup can be predicted from first principles by the Lagrangian, mesh-free, Smoothed Particle Hydrodynamics (SPH) method. In the present work, 2D Direct Numerical Simulations (DNS) of a planar prefilming airblast atomizer using the SPH method are presented, which capture most of the breakup phenomena known from experiments. Strong links between the ligament breakup and the resulting spray in terms of droplet size, trajectory and velocity are demonstrated. The SPH predictions at elevated pressure conditions resemble quite well the effects observed in experiments. Significant interdependencies between droplet diameter, position and velocity are observed. This encourages to employ such multidimensional interdependence relations as a base for the development of primary atomization models.
机译:喷气发动机中污染物排放的形成与燃烧室内的燃料分布密切相关。因此,一次破碎过程中形成的喷雾的特性对于准确预测污染物的排放至关重要。目前,结合燃烧和污染物形成模型使用的Euler-Lagrangian液滴运输方法可预测污染物的排放。当液体燃料小滴从燃料喷嘴中喷出时,缺少明确定义这些排放的要素是定义明确的起始条件。最近,已证明可以通过拉格朗日,无网格,平滑粒子流体动力学(SPH)方法从第一原理预测一次破裂。在目前的工作中,提出了使用SPH方法的平面预成膜鼓风雾化器的2D直接数值模拟(DNS),它捕获了实验中已知的大多数破裂现象。在液滴的大小,轨迹和速度方面,韧带破裂与所产生的喷雾之间有很强的联系。高压条件下的SPH预测与实验中观察到的效果非常相似。观察到液滴直径,位置和速度之间的显着相互依赖性。这鼓励采用这种多维相互依存关系作为主要雾化模型发展的基础。

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